Conclusion
The characterization of FF and its molecular profile opens a window of opportunity to further understand PCOS. The FF is a biological matrix that is in intimate contact with the oocyte and contains a variety of bioactive molecules, which contribute for follicle development and maturation. The identification of molecular shifts within the FF harbors the potential of understanding the pathways involved in the ovarian dysfunction observed in women with PCOS. In conclusion FF can be a promising tool to identify novel biomarkers for the PCOS diagnosis as well to the development of targeted therapeutics for the treatment of PCOS.
Table 1 Summary of studies comparing oxidative stress markers in follicular fluid of PCOS and non-PCOS women First Author Publication Year Experimental Design Population IVF/ICSI Treatment Ovarian Induction Outcome Measures Results Groups Age (years) BMI (kg/m 2 ) Oxidative stress markers Chattopadhayay, R. 2010 [ 22 ] Prospective cohort PCOS (n=35) Ovulatory non-PCOS (n=32) 29.9 ± 2.0 29.9 ± 2.2 23.3 ± 1.2 23.0 ± 1.2 ICSI GnRH agonist, rFSH FF: ROS, LPO and TAC Serum: TSH, PRL ICSI outcomes: MII oocytes (n), FR (%), Pregnancy rate (%), Miscarriage rate (%), Grade I + II embryo formation (%), Meiotic spindle present (%) PCOS: ↑ROS, LPO ↓TAC FF ROS and LPO levels were higher* and TAC levels lower* in oocytes without meiotic spindle (vs. oocytes with meiotic spindle) from both PCOS and control groups. Fertilization rate and the number of embryos were lower* in oocytes without meiotic spindle (vs. oocytes with meiotic spindle) among women with PCOS. Seleem, A. K. 2014 [ 25 ] Case-control PCOS (n=20) Ovulatory non-PCOS (n=20) 31.2 ± 1.1 29.4 ± 2.1 31.3 ± 3.2 29.2 ± 3.6 ICSI GnRH agonist, rFSH FF: SOD Serum: SOD ICSI outcomes: FR (%), Embryo quality (n), Transferred embryo (n), Pregnancy (n) PCOS: ↓SOD The mean Cu/Zn-SOD mRNA expression in FF cells was lower* in women with PCOS. FF SOD activity and SOD mRNA expression were not significantly between fertilized and non-fertilized oocytes in both groups. SOD activity in FF had no effects on fertilization rate or embryo quality. Yilmaz, 2016 [ 9 ] Prospective cross-sectional PCOS (n=22) Ovulatory non-PCOS (n=41) 30.0 (25-34) 32.0 (25-34) 24.7 ± 2.9 23.8 ± 1.4 IVF GnRH agonist protocol, rFSH FF: TAC IVF outcomes: peak E 2 , endometrial thickness, retrieved oocytes (n), MII oocytes (n), FR (%), clinical pregnancy rate (%) FF TAC levels, fertilization and clinical pregnancy rates were not significantly different between groups. N. of MII oocytes were higher* in women with PCOS. FF TAC was positively correlated* with clinical pregnancy rate in the whole group. Tola, E. N. 2018 [ 26 ] Cross-sectional PCOS (n=22) Ovulatory non-PCOS (n=20) 28.5 ± 3.6 30.6 ± 4.4 27.9 ± 5.9 25.9 ± 4.4 ICSI GnRH antagonist, rFSH FF: thiol/disulphide parameters IVF outcomes: Retrieved oocytes (n), GV/MI/MII oocytes (n), FR (%), Embryo (n) PCOS: ↑disulphide levels, disulphide/native thiol and disulphide/total thiol ratios ↓native thiol levels and native thiol/total thiol ratio FR among women with PCOS was positively correlated with native thiol levels and total thiol in FF. Native thiol levels are positive predictors of FR in PCOS. Gongadashetti, K. 2021 [ 24 ] Cross-sectional PCOS (n=43) Ovulatory non-PCOS (n=57) 30.5 ± 3.8 (22-39) 32.2 ± 3.8 (23-40) 25.3 ± 4.1 25.8 ± 3.7 IVF GnRH antagonist FF: ROS, TAC and 8-IP IVF outcomes: Oocytes retrieved (n), Oocytes fertilized (n), Cleavage rate (%), Embryos (n) Grade I, II, III, IV embryos (n), Pregnancy (n), Miscarriage (n) PCOS: ↑8-IP The 8-IP levels were higher* in women with PCOS who had a miscarriage. Naigaonkar, A. 2021 [ 23 ] Cohort PCOS (n=50) Ovulatory non-PCOS (n=71) 31.0 (27.0–33.0) 28.0 (26.5–31.0) 25.7 (22.68–29.87) 24.7 (22.5–26.5) IVF GnRH agonist, hMG FF: SOD, CAT, PON1, GR, GSH, GSSG, GPx, TAC, AOPP, LPO, total thiol levels, SHBG, E 2 , P 4, TT, and fasting insulin Serum: SHBG, E 2 , P 4, TT, fasting glucose, fasting insulin. IVF outcomes: Follicles (n), Oocytes (n), MII oocyte (n, %), Fertilized MII oocyte (n), Grade I embryos (%), FR (%), Pregnancy rate per embryo transfer (%) PCOS: ↑TT, FAI, LPO, GSSG, AOPP ↓P 4 , SHBG, SOD, PON1, GSH, GPx, GR, total thiols, TAC Transcript levels of SOD, GPX, GR, and GCL in GCs were lower* in women with PCOS. PON1 was positively correlated with pregnancy outcome, and total glutathione with % grade I embryos and pregnancy outcome in control group. PON1 activity showed a positive correlation with n. of fertilized oocytes and % grade I embryos, in women with PCOS. AOPP advanced oxidation protein products, BMI body mass index, CAT catalase, Cu/Zn-SOD copper, zinc superoxide dismutase, E 2 oestradiol, FAI free androgen index, FF follicular fluid, FR fertilization rate, GnRH gonadotropin-releasing hormone, GPx glutathione peroxidase, GR glutathione reductase, GSH glutathione, GSSG oxidized glutathione, GV germinal vesical, hMG human menopausal gonadotropin, ICSI intracytoplasmic sperm injection, 8-IP 8-isoprostane, IVF in vitro fertilization, LPO lipid peroxidation, MI metaphase I, MII metaphase II, mRNA messenger ribonucleic acid, n number, P 4 progesterone, PCOS polycystic ovarian syndrome, PON1 paraoxonase 1, rFSH recombinant follicle stimulating hormone, ROS reactive oxygen species, SHBG sex hormone-binding globulin, SOD superoxide dismutase, TT testosterone, TAC total antioxidant capacity, TSH thyroid stimulating hormone Table 2 Summary of studies comparing inflammatory markers in follicular fluid of PCOS and non-PCOS women First Author Publication Year Experimental Design Population Ovarian Induction IVF/ICSI Outcome Measures Results Groups Age (years) BMI (kg/m 2 ) Inflammatory markers Kahyaoglu, I. 2015 [ 37 ] Case-control PCOS (n=22) Ovulatory non-PCOS (n=22) 27.6 ± 0.9 28.3 ± 0.7 26.1 ± 1.3 24.4 ± 2.3 IVF GnRH agonist long protocol, rFSH FF: G-CSF Serum: G-CSF IVF outcomes: endometrial thickness, retrieved oocytes (n), MII oocytes (n), FR (%), clinical pregnancy rate (%) PCOS: ↑G-CSF Neutrophil count and neutrophil/leukocyte ratio were both significantly higher in women with PCOS than in controls. N. of retrieved and MII oocytes were higher in PCOS group. Wang, B. 2016 [ 27 ] Prospective cohort PCOS (n=39) Ovulatory non-PCOS (n=35) 27.6 ± 3.2 28.4 ± 2.9 21.0 ± 2.1 21.0 ± 1.6 IVF GnRH agonist, rFSH FF: TNF-α, IL-6, CRP, VEGF and sRAGE IVF outcomes: oocytes retrieved (n), fertilization rate (%), high quality embryos rate (%) PCOS: ↑TNF-α, IL-6, CRP and VEGF ↓sRAGE FF sRAGE was inversely correlated* with gonadotropin dose and total in PCOS. After adjusting for age and Gn dose, FF sRAGE protein levels, inversely related to VEGF, TNF-α, IL-6 and CRP. Garg, D. 2017 [ 35 ] Prospective cohort PCOS (n=12) Ovulatory non-PCOS (n=13) 31.5 [29.2-34.5] 35.0 [21.0-37.5] 24.5 [22.5-33.7] 25.0 [21.5-29.0] IVF/ICSI GnRH antagonist protocol FF: sRAGE, CML, 25-hydroxy-vitamin D Serum: AMH, TSH IVF/ICSI outcomes: oocytes retrieved (n), MII oocytes (n), fertilized oocytes (n), clinical pregnancy rate (%) PCOS: ↓sRAGE FF sRAGE positively correlated* with 25-hydroxy-vitamin D (in each group and in the whole group). FF sRAGE positively correlated* with CML, in control group. Niu, Z. 2017 [ 30 ] Cohort PCOS (n=30) PCOS with MS (n=30) Ovulatory non-PCOS (n=30) 30.2 ± 3.9 30.6 ± 3.5 29.4 ± 3.7 22.6 ± 2.9 32.1 ± 3.6 22.3 ± 2.6 IVF GnRH antagonist FF: TNF-α, IL-1b, IL-2, IL-4, IL-5, IL-6, IL-7, IL-8, IL-10, IL-12, IL-13, IL-17, IL-18, TC, TG, LDL, HDL IFN-γ, MCP-1, G-CSF, and RANTES Serum: FSH, LH, E 2 , P 4 , TC, TG, LDL and HDL IVF outcomes: 2PN (%), Embryos (%), top-quality embryos (%) PCOS MS: ↑TNF-α The percentage of top-quality embryo was lower* in the women with PCOS and MS than in the other two groups. The FF G-CSF showed a trend toward negative relationship with TG and TC. TNF-α concentration was positively associated with TG. Wang, B. 2017 [ 36 ] Prospective cohort PCOS (n=39) Ovulatory non-PCOS (n=35) 27.7 ± 3.3 28.4 ± 3.0 22.1 ± 2.2 21.0 ± 1.7 IVF GnRH agonist protocol, rFSH FF: sRAGE and VEGF IVF outcomes: total gonadotropin dose, duration of stimulation, oocytes retrieved (n), fertilization rate (%), high-quality embryos rate (%) PCOS: ↑VEGF ↓sRAGE FF sRAGE levels were positively correlated with the number of oocytes retrieved in the control group. FF sRAGE protein levels in women with PCOS were negatively related to the total dose of Gn. The treatment of human GCs (PCOS) with recombinant sRAGE decreased VEGF and SP1 mRNA and protein expression and pAKT levels in a dose-dependent manner. Zhou, D. 2017 [ 31 ] Cohort PCOS (n=39) BMI < 25 (n=24) BMI ≥ 25 (n=15) ovulatory non-PCOS (n=53) BMI < 25 (n=35) BMI ≥ 25 (n=18) 29.7 ± 3.5 31.2 ± 3.8 31.6 ± 4.7 31.2 ± 2.9 22.3 ± 1.4 27.8 ± 1.6 20.4 ± 2.0 26.0 ± 1.3 IVF/ICSI GnRH agonist, rFSH FF: PGRN, TNF-α, IL-6 and MCP-1 Serum: E 2 , LH, FSH, TT, fasting blood glucose IVF/ICSI outcomes: Retrieved oocytes(n), Oocyte’s Fertilization(n), Grade I/II embryos(n) PCOS: ↑PGRN, TNF-α FF PGRN levels and GCs mRNA expression of PGRN were higher* in women with PCOS than in controls, and higher* in overweight than in the normal-weight women. FF TNF-α levels were higher in women with PCOS than controls; and higher rate of overweight than normal-weight controls. In women with PCOS, FF PGRN was positively correlated* with TT and FF TNF-α, but negatively correlated* with n. of retrieved oocytes. Artimani, T. 2018 [ 21 ] Cross-sectional PCOS (n=21) Ovulatory non-PCOS (n=21) 28.8 ± 4.9 28.6 ± 4.7 28.2 ± 5.3 29.2 ± 4.5 ICSI GnRH agonist, rFSH FF: thiol groups TAC, MDA, TOS, TNF-α, IL-6, IL-8, and IL-10 l. ICSI outcomes: Oocyte (n), MII oocyte (n), Fertilization rate (%), Embryo (n) PCOS: ↑MDA, TOS, TNF-α, IL-6 and IL-8 ↓TAC, thiol groups and IL-10 TNF-α levels were positively correlated* with MDA and TOS and negatively correlated* with TAC and thiol groups. IL-6 and MDA levels were positively correlated with IL-10 levels and TAC. IL-8 and IL-10 were negatively correlated* with TAC and TOS levels, respectively. The n. of retrieved oocytes was higher* in women with PCOS. Li, Z. 2018 [ 33 ] Case-control PCOS (n=40) Ovulatory non-PCOS (n=40) 28.4 ± 3.7 30.2 ± 4.2 26.7 ± 3.0 25.2 ± 2.3 IVF GnRH long agonist, rFSH FF: LIF, E 2 and P 4 Serum: LIF, E 2, FSH, LH, P 4 , TT, and PRL IVF outcomes: pregnancy rate (%) PCOS: ↓LIF Serum and FF LIF levels were negatively correlated with E 2 in women with PCOS. LIF concentrations in embryo culture medium were higher* in women who achieved pregnancy in both groups. Wang, Y. 2019 [ 28 ] Cohort PCOS (n=30) Ovulatory non-PCOS (n=23) 27.4 ± 4.0 27.7 ± 3.3 21.2 ± 1.9 20.2 ± 1.6 IVF GnRH antagonist protocol FF: CRP, chemerin FSH, LH, TT, E 2 , P 4 Serum: FSH, LH, TT, E 2 , P 4 , PRL, AMH and TSH IVF outcomes: oocytes retrieved (n), oocyte utilization rate and high-quality embryo rate PCOS: ↑ LH, TT, CRP, chemerin The mRNA expression of chemerin and its receptors in granulosa cells from women with PCOS were higher* than those from non-PCOS. FF chemerin was positively correlated with TT and LH in FF. Zhang, H. 2020 [ 29 ] Cohort PCOS (n=60) Ovulatory non-PCOS (n=60) 29.5 ± 3.9 30.5 ± 3.7 24.5 ± 2.6 22.5 ± 2.3 IVF GnRH antagonist, rFSH and HMG FF: IL-18 and IL-18BP Serum: E 2 , TT, LH, FSH, IL-18 and IL-18BP IVF outcomes: oocytes retrieved (n), MII oocytes (n), embryos transferred (n), Top-quality embryo (%), fertilization rate (%), Pregnancy rate (%) PCOS: ↑IL-18 ↓IL-18BP FF IL-18 levels were higher* than in serum in women with PCOS. FF IL-18 was higher* in overweight women with PCOS compared to normal weight women with PCOS. FF IL-18 levels in women with PCOS were positively* correlated with TT and negatively correlated with E 2 levels. In women with PCOS women, FF IL-18 was positively correlated* with the n. of oocytes retrieved, and negatively correlated* with the n. of MII oocytes and top-quality embryos. AMH antimüllerian hormone, BMI body mass index, CML N-carboxymethyl-lysine, CRP C-reactive protein, E 2 oestradiol, FF follicular fluid, FR fertilization rate, FSH follicle stimulating hormone, G-CSF granulocyte colony-stimulating factor, GnRH gonadotropin-releasing hormone, GCs granulosa cells, GV germinal vesical, HDL high-density lipoprotein, hMG human menopausal gonadotrophins, ICSI intracytoplasmic sperm injection, IL interleukin, IFN-γ Interferon gamma, IVF in vitro fertilization, LIF leukemia inhibitory factor, LH luteinizing hormone, LDL low-density lipoprotein, MCP-1 Monocyte chemoattractant protein-1, MDA malondialdehyde, MI metaphase I, MII metaphase II, mRNA messenger ribonucleic acid, MS metabolic syndrome, n number, P 4 progesterone, PCOS polycystic ovarian syndrome, PGRN progranulin, PRL prolactin, 2PN two pronuclei (fertilized oocytes), RANTES Regulated on activation, normal T expressed and secreted, rFSH recombinant follicle stimulating hormone, SHBG sex hormone-binding globulin, sRAGE soluble receptor for advanced glycation end products, TAC total antioxidant capacity, TNF-α tumor necrosis factor alpha, TOS total oxidant status, TC total cholesterol, TG triglycerides, TT testosterone, VEGF vascular endothelial growth factor Table 3 Summary of studies comparing growth factors in follicular fluid of PCOS and non-PCOS women First Author Publication Year Experimental Design Population Ovarian Stimulation IVF/ICSI Outcome Measures Results Groups Age (years) BMI (kg/m 2 ) Growth factors Savchev, S. I. 2010 [ 39 ] Prospective cohort study PCOS (n=6) Ovulatory non-PCOS (n=11) 27.6 (25-31) 26.6 (22-30) 29.5 (17-51) 22.0 (19-29) ICSI GnRH agonist or antagonist protocols, rFSH FF: VEGF 121 , VEGF 165 and sFlt-1 ICSI outcomes: oocytes retrieved (n), FR (%), embryos transferred (n) Higher FF VEGF 165 levels* in women with PCOS, BMI > 30 and age > 40 years. Lower FF VEGF 165 levels were associated* clinical pregnancy. Şahin, N. 2013 [ 47 ] Prospective cohort study PCOS (n=21) Ovulatory non-PCOS (n=38) 29.3 ± 0.9 31.7 ± 0.8 24.5 ± 0.7 24.4 ± 0.5 ICSI GnRH agonist protocol, rFSH FF: HGF Serum: FSH, LH, P 4 , E 2 , TT, DHEAS, A ICSI Outcomes: total FSH dose, oocytes retrieved (n), MII oocytes (n), FR (%), clinical pregnancy rate (%) No significant differences were found in serum and FF HGF levels between groups. Higher c-Met expression* in GCs of fertilized oocytes (vs. non-fertilized oocytes) Higher FF HGF levels* in the grade 1 embryos (vs. grades 2-4 embryos). Tal, R. 2014 [ 40 ] Prospective cohort PCOS (n=14) Ovulatory non-PCOS (n=14) 30.1 ± 4.4 30.8 ± 3.7 25.5 ± 5.6 24.9 ± 3.9 IVF/ICSI GnRH agonist (n=8 for each group) or GnRH antagonist (n=6 for each group) protocols, combination of rFSH and hMG FF: PIGF and sFlt-1 Serum: AMH, PIGF and sFlt-1 IVF/ICSI outcomes: oocytes retrieved (n), FR (%), pregnancy rate (%) PCOS: ↑FF PIGF ↓FF sFlt-1 FF PIGF was positively correlated* with n. of oocytes retrieved and serum AMH and negatively correlated* with age. PlGF bioavailability (PlGF/sFlt-1 ratio) in FF was greater in PCOS women compared with non-PCOS controls. Kudsy, M. 2016 [ 38 ] Prospective cross-sectional PCOS (n=40) Ovulatory non-PCOS (n=40) 28.6 ± 4.3 28.4 ± 5.9 27.2 ± 5.7 26.1 ± 4.3 IVF/ICSI GnRH long agonist protocol, rFSH or hMG FF: VEGF Serum: VEGF IVF/ICSI outcomes: retrieved oocyte (n), MII oocyte (n and %), fertilized oocyte (n), embryos (n), FR (%) PCOS: ↑VEGF FF VEGF levels were lower* in women who achieved pregnancy vs. non-pregnant both in PCOS and control. Liu, Y. 2018 [ 48 ] Cross-sectional PCOS (n=43) Ovulatory non-PCOS (n=32) 28 (23.0-33.0) 27 (25.0-30.0) 22.6 (20.2-24.0) 20.3 (19.0-23.5) IVF/ICSI GnRH antagonist protocol FF: FGF13 and FGF21, IL-6, TT, E 2 , P 4 , LH, FSH and SHBG IVF/ICSI outcomes: oocytes retrieved (n), MII oocytes rate (%), FR (%), high-quality embryo rate (%) FF FGF13 levels were positively correlated with FF TT levels in women with PCOS. FF FGF13 levels in women with PCOS was negatively associated* with MII oocyte rate. Fang, L. 2020 [ 41 ] Prospective cohort PCOS (n=40) Ovulatory non-PCOS (n=40) 29.3 ± 0.6 29.3 ± 0.6 24.4 ± 0.5 22.2 ± 0.5 IVF GnRH agonist protocol, rFSH FF: GDF-8 Serum: FSH, LH, E 2 , P 4 , TT, PRL, GDF-8 IVF outcomes: oocytes retrieved (n), MII oocytes (n), pregnancy outcomes PCOS: ↑GDF-8 Serum and FF GDF-8 levels were lower* in women with PCOS who achieved pregnancy vs non-pregnant. GDF-8 resulted in greater inhibition of StAR expression in granulosa-lutein cells from women with PCOS than without-PCOS. Low serum P 4 levels were associated with poor pregnancy outcomes in women with PCOS. A androstenedione, AMH antimüllerian hormone, BMI body mass index, c-Met mesenchymal epithelial transition factor, DHEAS dehydroepiandrosterone sulfate, E 2 oestradiol, FF follicular fluid, FGF13 fibroblast growth factor 13, FGF21 fibroblast growth factor 21, FR fertilization rate, FSH follicle stimulating hormone, GDF-8 growth differentiation factor 8, GnRH gonadotropin-releasing hormone, HGF hepatocyte growth factor, hMG human menopausal gonadotrophins, ICSI intracytoplasmic sperm injection, IL interleukin, IVF in vitro fertilization, LH luteinizing hormone, MI metaphase I, MII metaphase II, mRNA messenger ribonucleic acid, n number, P 4 progesterone, PCOS polycystic ovarian syndrome, PIGF placental growth factor, PRL prolactin, rFSH recombinant follicle stimulating hormone, sFlt-1 soluble Fms-like tyrosine kinase-1, SHBG sex hormone-binding globulin, StAR steroidogenic acute regulatory, TT testosterone, VEGF vascular endothelial growth factor Table 4 Summary of studies comparing hormones in follicular fluid of PCOS and non-PCOS women First Author Publication Year Experimental Design Population IVF/ICSI Treatment Ovarian Induction Outcome Measures Results Groups Age(years) BMI (kg/m 2 ) Hormones Li, M. G. 2007 [ 51 ] Case-control PCOS (n=31) Ovulatory non-PCOS (n=79) 28 (22–35) 29 (23–37) 23.4 (19.8-30.6) 21.4 (16.7-28.5) IVF GnRH agonist protocol, rFSH FF: leptin Serum: LH, FSH, E 2 , P 4 , TT, leptin levels IVF outcomes: oocytes retrieved (n), FR (%), good quality embryo (%), implantation rate (%), pregnancy rate (%) PCOS: ↑leptin The p-STAT3 expression was lower* in PCOS compared with control, whereas there were no significant differences in SOCS3 expression in GCs. Serum and FF leptin levels were higher in the failed pregnancy PCOS subgroup vs. successful pregnancy PCOS subgroup. Nafiye, Y. 2010 [ 70 ] Cross-sectional PCOS (n=36) non-PCOS with infertile male partners (n=23) non-PCOS women with unexplained infertility (n=38) 29.6 ± 5.1 28.4 ± 6.0 i 29.7 ± 4.4 26.3 ± 2.9 24.8 ± 3.3 24.7 ± 2.9 400 μg/day of preconceptional folic acid IVF GnRH agonist protocol, rFSH FF: glucose, insulin, Homocysteine, TT, A, P 4 , DHEA Serum: E 2 , TT, A, P 4 , DHEA, insulin, glucose, and Homocysteine IVF outcomes: follicle (n), retrieved and MII oocytes (n), embryo (n), transferred embryo (n), clinical pregnancy rate (%) Despite elevated serum insulin, HOMA-IR, and homocysteine levels, and their effects on oocyte numbers and maturation in PCOS patients, there were no differences in follicular parameters and clinical pregnancy rates. Yilmaz, N. 2012 [ 59 ] Cross-sectional PCOS (n=16) Male infertility factor non-PCOS (n=19) Unexplained infertility non-PCOS (n=19) 29.4 ± 4.8 28.8 ± 3.3 29.1 ± 6.9 24.5 ± 6.4 25.4 ± 4.9 23.5 ± 3.5 IVF GnRH agonist protocol, rFSH FF: AMH IVF outcomes: total gonadotropin dose, stimulation duration, retrieved oocytes (n), MII oocytes (n), 2PN (n), embryo (n) FF AMH levels were not significantly different between the three groups as well as between pregnant and non-pregnant groups. FF AMH was negatively correlated with FSH (day 3) and gonadotropin dose and positively correlated* with oocyte, 2PN and embryo counts, in PCOS group. Garruti, G. 2014 [ 49 ] Prospective cohort PCOS (n=16) Ovulatory non-PCOS (n=10) 32.1 ± 3.6 34.4 ± 3.1 22.6 ± 2.6 22.6 ± 2.6 ICSI GnRH agonist protocol, rFSH FF: leptin and visfatin Serum: free TT, Δ4-androstenedione, SHBG, DHT, DHEA, DHEAS, HDL-C, LDL-C, triglycerides, 17β-E 2 , insulin levels, leptin and visfatin. ICSI outcomes : Follicles (size), MII oocytes (n), fertilization rate (%), embryos (I°) pregnancy rate (%) PCOS: ↓leptin Positive correlation between BMI and FF-leptin in women with PCOS. FF-visfatin levels were not significantly different between groups. Inal, H. A. 2016 [ 63 ] Prospective cross-sectional PCOS (n=60) Ovulatory non-PCOS (n=60) 29.4 ± 3.7 30.0 ± 3.7 30.3 ± 4.0 31.6 ± 4.0 BMI<25 BMI≥25 BMI<25 BMI≥25 IVF GnRH agonist protocol, rFSH FF: adiponectin and ghrelin. IVF outcomes: clinical pregnancy PCOS: ↓adiponectin FF adiponectin levels were lower* in the lean and overweight PCOS than in lean non-PCOS. There was no significant difference in the FF ghrelin levels between the groups. Chen, 2017 [ 58 ] Prospective cohort PCOS (n=59) Ovulatory non-PCOS (n=120) 29.1 ± 3.5 30.3 ± 3.9 22.2 ± 3.2 21.4 ± 2.9 IVF/ICSI PCOS group: GnRH agonist (n=30) or GnRH antagonist (n=29), rFSH Control group: GnRH agonist protocol, rFSH FF: AMH Serum: AMH IVF/ICSI outcomes: AFC, peak E 2 , oocytes retrieved (n), MII oocytes (n), oocyte maturity rate (%), FR (%), good-quality embryos (n), 2PN (n), good-quality embryo rate (%), pregnancy rate (%), abortion rate (%), implantation rate (%) PCOS: ↑AMH FF AMH positively correlated* with AFC in PCOS group. FF AMH levels were independent predictor of oocyte number. Jaschke, N. 2018 [ 67 ] Prospective cohort PCOS (n=16) Ovulatory non-PCOS (n=43) 34.7 ± 5.0 34.7 ± 5.0 29.3 ± 4.0 23.7 ± 5.1 No information FF: β-endorphin Serum: β-endorphin IVF outcomes: oocytes (n), MII oocytes retrieved (n) There was no difference in β-endorphin levels between PCOS and non-PCOS women. FF β-endorphin was positively correlated with MII oocytes retrieved. FF β-endorphin levels positively correlated with TT levels. Liu, X. H. 2019 [ 57 ] Case-control PCOS (n=52) Ovulatory non-PCOS (n=61) 29.7 ± 0.5 30.6 ± 0.4 27.1 ± 0.6 22.6 ± 0.4 IVF GnRH antagonist protocol, rFSH FF: AMH and SCF Serum: AMH and SCF IVF outcomes: retrieved oocytes (n), MII oocytes (n), 2PN fertilization (n), high-quality embryos (n) PCOS: ↑AMH ↓SCF In the control group, the basal AMH was negatively correlated with Gn dosage and positive correlated* with controlled ovarian hyperstimulation outcomes (number of retrieved oocytes, MII oocytes, and 2PN fertilization). Bousmpoula, A. 2019 [ 71 ] Cohort PCOS (n=70) BMI25=35 Ovulatory non-PCOS (n=70) BMI25=35 31.9 ± 4.3 32.2 ± 3.9 35.1 ± 4.5 35.3 ± 4.5 22.2 ± 1.1 26.8 ± 1.4 22.3 ± 1.2 26.6 ± 1.3 No information FF: irisin Serum: irisin, insulin, glucose, E 2 , LH, FSH, TT, SHBG, cholesterol, HDL-C, LDL-C, triglycerides, apolipoprotein A1, apolipoprotein B, lipoprotein(a) and homocysteine IVF outcomes: oocytes (n), Fertilized oocytes (n), Transferred embryos (n), Pregnancy [n (%)] In overweight PCOS women, both serum and FF irisin levels were positively correlated to FSH and LH. In non-overweight controls, FF irisin levels were negatively correlated with FAI and testosterone levels. In non-overweight PCOS patients, FF irisin levels were positively correlated with homocysteine. Irisin correlated positively with BMI, dyslipidemia and the number of oocytes retrieved and fertilized. Hu, K. L. 2019 [ 50 ] cohort PCOS (n=49) Ovulatory non-PCOS (n=52) 29.6 ± 3.6 30.6 ± 4.1 24.5 ± 3.8 24.3 ± 3.5 IVF/ICSI luteal-phase GnRH agonist or follicular-phase GnRH antagonist FF: KISS1, KISS1R Serum: AMH, FSH, TT, LH, E 2 , PRL, P 4 , and A IVF/ICSI outcomes: oocyte retrieved (n), fertilized egg (n), 2PN (n), day 3 viable embryo (n), transferred embryo (n) PCOS: ↑KISS1 and KISS1R KISS1 expression in human granulosa lutein cells was positively correlated with KISS1R expression in women without PCOS, but not in women with PCOS. KISS1 expression in GCs was positively correlated with the serum levels of AMH. Liu, Y. 2019 [ 53 ] Case-control PCOS (n=261) Ovulatory non-PCOS (n=217) 29.8 ± 3.5 29.6 ± 3.2 30=57 30=10 ICSI PCOS group: GnRH agonist long protocol, FSH and rFSH FF: E 2, TT Serum: E 2, TT, SHBG, P 4 , PRL IVF/ ICSI outcomes: Endometrial thickness, retrieved oocytes and embryos (n), FR (%), Pregnancy rate (%), Abortion rate (%), Transplant rejection rate (%) PCOS: ↑E 2 , TT In comparison with the control group, the levels of E 2 and TT in serum as well as testosterone level in FF were found to be significantly increased in patients of the PCOS group on the day of HCG injection, while the serum level of SHBG was found to be markedly downregulated. Gao, H. 2021 [ 72 ] Prospective cohort PCOS (n=32) Ovulatory non-PCOS (n=28) 28.9 ± 3.4 29.5 ± 3.5 22.2 ± 3.0 20.2 ± 2.5 IVF GnRH agonist protocol, rFSH FF: TSH Serum: TSH IVF outcomes: oocyte maturation rate (%), FR (%), cleavage rate (%), high quality embryo rate (%), pregnancy rate (%) PCOS: ↑TSH TSHR was upregulated in PCOS. Serum and FF TSH levels were negatively correlated with oocyte maturation and fertilization rates in PCOS. Zhang, C. 2021 [ 52 ] Cohort PCOS (n=90) Ovulatory non-PCOS (n=100) 29.4 ± 3.8 30.2 ± 5.1 22.8 ± 1.6 21.7 ± 1.9 IVF GnRH agonist protocol FF: β-endorphin levels Serum: β-endorphin levels, E 2 , FSH, LH, TT, prolactin, AMH, fasting insulin, and fasting blood glucose IVF outcomes: MII oocytes (n), high-quality embryos (n), fertilized oocytes (n), rate of normal fertilization (%), rate of oocyte differentiation, rate of D3 high-quality embryo (%), pregnancy (%) live birth (%), abortion (%) PCOS: ↑β-endorphin AMH, serum and FF β-endorphin were positively correlated with oocyte quality. Serum and FF β-endorphin had high sensitivity and specificity to predict pregnancy and live birth. A androstenedione, AFC antral follicle count, AMH antimüllerian hormone, BMI body mass index, DHEA dehydroepiandrosterone, DHEAS dehydroepiandrosterone sulfate, DHT dihydrotestosterone, E 2 oestradiol, FAI free androgen index, FF follicular fluid, FR fertilization rate, GnRH gonadotropin-releasing hormone, GCs granulosa cells, hMG human menopausal gonadotrophins, ICS I intracytoplasmic sperm injection, IVF
in vitro fertilization, KISS1 kisspeptin 1, LH luteinizing hormone, MI metaphase I, MII metaphase II, mRNA messenger ribonucleic acid, n number, P 4 progesterone, PCOS polycystic ovarian syndrome, 2PN two pronuclei (fertilized oocytes), p-STAT3 signal transducer and activator of transcription 3, PRL prolactin, rFSH recombinant follicle stimulating hormone, SCF stem cell factor, SHBG sex hormone-binding globulin, TT testosterone, TSH thyroid stimulating hormone Table 5 Summary of studies comparing other molecules in follicular fluid of PCOS and non-PCOS women First Author Publication Year Experimental Design Population IVF/ICSI Treatment Ovarian Induction Outcome Measures Results Groups Age (years) BMI (kg/m 2 ) Other molecules Niu, Z. 2014 [ 85 ] PCOS (n=55) BMI 30 (n=25) Ovulatory non-PCOS (n=63) BMI 30 (n=25) 31.2 ± 3.7 30.9 ± 3.8 30.6 ± 3.5 30.9 ± 3.6 22.9 ± 3.1 32.4 ± 2.4 22.1 ± 2.8 32.9 ± 2.2 IVF GnRH antagonist protocol, rFSH, and/or HMG FF: free fatty acids. Serum: FSH, LH, E 2 , TT, insulin, TC, TG, LDL, HDL, free fatty acids IVF outcomes: Embryo fragmentation, Blastomere score PCOS: ↑ palmitic acid, oleic acid The embryo fragmentation score was positively correlated* with the oleic acid concentration in women with PCOS both with and without obesity. Timur, H. 2015 [ 86 ] Cohort PCOS (n=41) Ovulatory non-PCOS (n=40) 27.5 ± 3.4 28.1 ± 2.4 24.9 ± 1.7 24.6 ± 1.3 ICSI GnRH agonist protocol, rFSH FF: amyloid A levels Serum: amyloid A levels ICSI outcomes: Endometrial thickness (mm), retrieved oocytes (n), mature oocytes (n), FR (%), Patients with grade 1 and 2 embryos (%), Live birth rate (%), Clinical pregnancy rate (%), Abortion rate (%) No significant difference was found between the two groups regarding the serum and FF amyloid A protein levels on the day of oocyte retrieval. Zhang, Y. 2017 [ 77 ] Cohort PCOS (n=15) Ovulatory non-PCOS (n=36) 27.6 ± 3.0 31.9 ± 3.8 No information No information FF: Metabolic profile Outcomes: 2PN FR (%), Cleavage rate (%), Top-quality embryos rate (%) PCOS: ↑glycoprotein, acetate and cholesterol ↓lactic acid, glutamine, pyruvate and alanine. A positive correlation* was observed between 2PN fertilization rate and acetoacetate, acetate, 3-hydroxuybutyrate, glycoprotein and formic acid and a negative correlation was observed between glucose and fertilization results, in women with PCOS. Acetic acid level was negatively correlated with the cleavage results in controls; however, it was positively correlated with 2PN fertilization rate in PCOS. Creatine, leucine, isoleucine, and tyrosine were negatively correlated* with embryos quality in all samples. Histidine exhibited highly negative correlation and glutamine presented highly positive correlation with embryos top-quality rate respectively, in PCOS. Tola, E. N. 2017 [ 83 ] Prospective cohort PCOS (n=21) Ovulatory non-PCOS (n=22) 29.2 ± 3.7 29.1 ± 3.6 27.9 ± 5.9 25.2 ± 5.4 ICSI GnRH antagonist protocol, rFSH FF: ADAMTS-1 and aggrecan ICSI outcomes: oocytes retrieved (n), MI and MII oocytes (n and %), fertilization rate (%), implantation rate (%) PCOS: ↑ADAMTS-1 and aggrecan Higher ADAMTS-1 FF levels were related to increased implantation in PCOS. Inal, Z. O. 2018 [ 87 ] Prospective cross-sectional PCOS (n=80) Ovulatory non-PCOS women (n=80) 27.6 ± 4.1 28.9 ± 4.7 26.3 ± 4.1 25.0 ± 3.4 ICSI GnRH agonist protocol, rFSH FF: Sfrp-5 Serum: Sfrp-5 ICSI outcomes: retrieved and MII oocytes (n), FR (%), embryo quality (%), clinical pregnancy rate (%), live birth rate (%) PCOS: ↑ Sfrp-5 Serum and FF Sfrp-5 levels were positively correlated* with fasting insulin and negatively correlated* with inflammatory markers (CRP and neutrophil count). Serum and FF Sfrp-5 levels were not associated with the clinical pregnancy rate. Butler, A. E. 2019 [ 73 ] Prospective cohort PCOS (n=29) Ovulatory non-PCOS (n=30) 30.9 ± 4.8 32.6 ± 4.7 26.0 ± 3.8 25.5 ± 3.6 IVF GnRH agonist protocol, rFSH FF: 176 miRNAs Serum: TT, SHBG, AMH, FAI, HOMA-IR IVF outcomes: endometrium thickness oocytes retrieved (n), fertilization rate (%), cleavage and blastocyst stages embryos (n), G3D3 embryos (n), clinical pregnancy (n) Of 176 miRNAs detected in FF, 29 differed* between normal women and PCOS. The top 7 of these were miR-381-3p, miR-199b-5p, miR-93-3p, miR-361-3p, miR-127-3p, miR-382-5p, miR-425-3p. In the PCOS group , miR-382-5p positively correlated* with age and negatively* with FAI, miR-199b-5p negatively correlated* with AMH and miR-93-3p positively correlated* with CRP. In controls , miR-127-3p, miR382-5p and miR425-3p positively correlated* with the fertilisation rate; miR-127-3p negatively correlated* with insulin resistance, and miR-381-3p negatively correlated* with FAI. Sun, Y. 2019 [ 88 ] Cohort study PCOS (n=89) Ovulatory non-PCOS (n=114) Fallopian tube obstruction (FTO) non-PCOS (n=145) 29.8 ± 4.1 32.4 ± 4.0 32.2 ± 4.8 21.8 ± 2.8 21.0 ± 3.0 21.6 ± 2.5 ICSI GnRH agonist long protocol, rFSH and hMG FF: Levels of 22 trace elements Serum: FSH, LH, TT, E 2 , PRL and AMH ICSI outcomes: Endometrial thickness (mm), retrieved oocytes (n), FR (%), cleavage rate (%), High-quality embryo rate (%) PCOS: ↑copper Higher FF copper levels were associated with a higher* number of retrievable oocytes in the PCOS group but a lower rate of high-quality embryos. FF copper levels were positively correlated with TT and P 4 levels. Cultured human GCs overexposed to copper showed increased E 2 secretion and decreased TT levels. It was also found an increase in CYP19A1 and HSD3b mRNA expression. ADAMTS-1 a disintegrin-like and metalloproteinase with thrombospondin type motifs 1, AMH antimüllerian hormone, BMI body mass index, CRP C-reactive protein, CYP19A1 cytochrome P450 family 19 subfamily A member 1, E 2 oestradiol, FAI free androgen index, FF follicular fluid, 21, FR fertilization rate, GnRH gonadotropin-releasing hormone, GCs granulosa cells, G3D3 top quality embryos on day 3, HDL high-density lipoprotein, hMG human menopausal gonadotrophins, HOMA-IR homeostasis model assessment estimate of insulin resistance, ICSI intracytoplasmic sperm injection, IVF
in vitro fertilization, LDL low-density lipoprotein, LH luteinizing hormone, MI metaphase I, MII metaphase II, miRNA micro ribonucleic acid, mRNA messenger ribonucleic acid, n number, P 4 progesterone, PCOS polycystic ovarian syndrome, 2PN two pronuclei (fertilized oocytes), rFSH recombinant follicle stimulating hormone, Sfrp-5 secreted frizzle-related protein-5, SHBG sex hormone-binding globulin, TC total cholesterol, TG triglycerides, TT total testosterone
Summary of studies comparing oxidative stress markers in follicular fluid of PCOS and non-PCOS women
PCOS (n=35)
Ovulatory non-PCOS (n=32)
29.9 ± 2.0
29.9 ± 2.2
23.3 ± 1.2
23.0 ± 1.2
ICSI
GnRH agonist, rFSH
FF: ROS, LPO and TAC
Serum: TSH, PRL
ICSI outcomes: MII oocytes (n), FR (%), Pregnancy rate (%), Miscarriage rate (%),
Grade I + II embryo formation (%), Meiotic spindle present (%)
PCOS: ↑ROS, LPO
↓TAC
FF ROS and LPO levels were higher* and TAC levels lower* in oocytes without meiotic spindle (vs. oocytes with meiotic spindle) from both PCOS and control groups.
Fertilization rate and the number of embryos were lower* in oocytes without meiotic spindle (vs. oocytes with meiotic spindle) among women with PCOS.
PCOS (n=20)
Ovulatory non-PCOS (n=20)
31.2 ± 1.1
29.4 ± 2.1
31.3 ± 3.2
29.2 ± 3.6
ICSI
GnRH agonist, rFSH
FF: SOD
Serum: SOD
ICSI outcomes: FR (%), Embryo quality (n), Transferred embryo (n), Pregnancy (n)
PCOS: ↓SOD
The mean Cu/Zn-SOD mRNA expression in FF cells was lower* in women with PCOS.
FF SOD activity and SOD mRNA expression were not significantly between fertilized and non-fertilized oocytes in both groups.
SOD activity in FF had no effects on fertilization rate or embryo quality.
PCOS (n=22)
Ovulatory non-PCOS (n=41)
30.0 (25-34)
32.0 (25-34)
24.7 ± 2.9
23.8 ± 1.4
IVF
GnRH agonist protocol, rFSH
FF: TAC
IVF outcomes: peak E 2 , endometrial thickness, retrieved oocytes (n), MII oocytes (n), FR (%), clinical pregnancy rate (%)
FF TAC levels, fertilization and clinical pregnancy rates were not significantly different between groups.
N. of MII oocytes were higher* in women with PCOS.
FF TAC was positively correlated* with clinical pregnancy rate in the whole group.
PCOS (n=22)
Ovulatory non-PCOS (n=20)
28.5 ± 3.6
30.6 ± 4.4
27.9 ± 5.9
25.9 ± 4.4
ICSI
GnRH antagonist, rFSH
FF: thiol/disulphide parameters
IVF outcomes: Retrieved oocytes (n), GV/MI/MII oocytes (n), FR (%), Embryo (n)
PCOS: ↑disulphide levels,
disulphide/native thiol and
disulphide/total thiol ratios
↓native thiol levels and
native thiol/total thiol ratio
FR among women with PCOS was positively correlated with native thiol levels and total thiol in FF.
Native thiol levels are positive predictors of FR in PCOS.
PCOS (n=43)
Ovulatory non-PCOS (n=57)
30.5 ± 3.8 (22-39)
32.2 ± 3.8 (23-40)
25.3 ± 4.1
25.8 ± 3.7
IVF
GnRH antagonist
FF: ROS, TAC and 8-IP
IVF outcomes: Oocytes retrieved (n), Oocytes fertilized (n), Cleavage rate (%), Embryos (n)
Grade I, II, III, IV embryos (n), Pregnancy (n), Miscarriage (n)
PCOS: ↑8-IP
The 8-IP levels were higher* in women with PCOS who had a miscarriage.
PCOS (n=50)
Ovulatory non-PCOS (n=71)
31.0 (27.0–33.0)
28.0 (26.5–31.0)
25.7 (22.68–29.87)
24.7 (22.5–26.5)
IVF
GnRH agonist, hMG
FF: SOD, CAT, PON1, GR, GSH, GSSG, GPx, TAC, AOPP, LPO, total thiol levels, SHBG, E 2 , P 4, TT, and fasting insulin
Serum: SHBG, E 2 , P 4, TT, fasting glucose, fasting insulin.
IVF outcomes: Follicles (n), Oocytes (n), MII oocyte (n, %), Fertilized MII oocyte (n), Grade I embryos (%), FR (%),
Pregnancy rate per embryo transfer (%)
PCOS: ↑TT, FAI, LPO, GSSG, AOPP
↓P 4 , SHBG, SOD, PON1, GSH, GPx, GR, total thiols, TAC
Transcript levels of SOD, GPX, GR, and GCL in GCs were lower* in women with PCOS.
PON1 was positively correlated with pregnancy outcome, and total glutathione with % grade I embryos and pregnancy outcome in control group.
PON1 activity showed a positive correlation with n. of fertilized oocytes and % grade I embryos, in women with PCOS.
AOPP advanced oxidation protein products, BMI body mass index, CAT catalase, Cu/Zn-SOD copper, zinc superoxide dismutase, E 2 oestradiol, FAI free androgen index, FF follicular fluid, FR fertilization rate, GnRH gonadotropin-releasing hormone, GPx glutathione peroxidase, GR glutathione reductase, GSH glutathione, GSSG oxidized glutathione, GV germinal vesical, hMG human menopausal gonadotropin, ICSI intracytoplasmic sperm injection, 8-IP 8-isoprostane, IVF in vitro fertilization, LPO lipid peroxidation, MI metaphase I, MII metaphase II, mRNA messenger ribonucleic acid, n number, P 4 progesterone, PCOS polycystic ovarian syndrome, PON1 paraoxonase 1, rFSH recombinant follicle stimulating hormone, ROS reactive oxygen species, SHBG sex hormone-binding globulin, SOD superoxide dismutase, TT testosterone, TAC total antioxidant capacity, TSH thyroid stimulating hormone
Summary of studies comparing inflammatory markers in follicular fluid of PCOS and non-PCOS women
PCOS (n=22)
Ovulatory non-PCOS (n=22)
27.6 ± 0.9
28.3 ± 0.7
26.1 ± 1.3
24.4 ± 2.3
IVF
GnRH agonist long protocol, rFSH
FF: G-CSF
Serum: G-CSF
IVF outcomes: endometrial thickness, retrieved oocytes (n), MII oocytes (n), FR (%), clinical pregnancy rate (%)
PCOS: ↑G-CSF
Neutrophil count and neutrophil/leukocyte ratio were both significantly higher in women with PCOS than in controls.
N. of retrieved and MII oocytes were higher in PCOS group.
PCOS (n=39)
Ovulatory non-PCOS (n=35)
27.6 ± 3.2
28.4 ± 2.9
21.0 ± 2.1
21.0 ± 1.6
IVF
GnRH agonist, rFSH
FF: TNF-α, IL-6, CRP, VEGF and sRAGE
IVF outcomes: oocytes retrieved (n), fertilization rate (%), high quality embryos rate (%)
PCOS: ↑TNF-α, IL-6, CRP and VEGF
↓sRAGE
FF sRAGE was inversely correlated* with gonadotropin dose and total in PCOS.
After adjusting for age and Gn dose, FF sRAGE protein levels, inversely related to VEGF, TNF-α, IL-6 and CRP.
PCOS (n=12)
Ovulatory non-PCOS (n=13)
31.5 [29.2-34.5]
35.0 [21.0-37.5]
24.5 [22.5-33.7]
25.0 [21.5-29.0]
IVF/ICSI
GnRH antagonist protocol
FF: sRAGE, CML, 25-hydroxy-vitamin D
Serum: AMH, TSH
IVF/ICSI outcomes: oocytes retrieved (n), MII oocytes (n), fertilized oocytes (n), clinical pregnancy rate (%)
PCOS: ↓sRAGE
FF sRAGE positively correlated* with 25-hydroxy-vitamin D (in each group and in the whole group).
FF sRAGE positively correlated* with CML, in control group.
PCOS (n=30)
PCOS with MS (n=30)
Ovulatory non-PCOS (n=30)
30.2 ± 3.9
30.6 ± 3.5
29.4 ± 3.7
22.6 ± 2.9
32.1 ± 3.6
22.3 ± 2.6
IVF
GnRH antagonist
FF: TNF-α, IL-1b, IL-2, IL-4, IL-5, IL-6, IL-7, IL-8, IL-10, IL-12, IL-13, IL-17, IL-18, TC, TG, LDL, HDL IFN-γ, MCP-1, G-CSF, and RANTES
Serum: FSH, LH, E 2 , P 4 , TC, TG, LDL and HDL
IVF outcomes: 2PN (%), Embryos (%), top-quality embryos (%)
PCOS MS: ↑TNF-α
The percentage of top-quality embryo was lower* in the women with PCOS and MS than in the other two groups.
The FF G-CSF showed a trend toward negative relationship with TG and TC.
TNF-α concentration was positively associated with TG.
PCOS (n=39)
Ovulatory non-PCOS (n=35)
27.7 ± 3.3
28.4 ± 3.0
22.1 ± 2.2
21.0 ± 1.7
IVF
GnRH agonist protocol, rFSH
FF: sRAGE and VEGF
IVF outcomes: total gonadotropin dose, duration of stimulation, oocytes retrieved (n), fertilization rate (%), high-quality embryos rate (%)
PCOS: ↑VEGF
↓sRAGE
FF sRAGE levels were positively correlated with the number of oocytes retrieved in the control group. FF sRAGE protein levels in women with PCOS were negatively related to the total dose of Gn.
The treatment of human GCs (PCOS) with recombinant sRAGE decreased VEGF and SP1 mRNA and protein expression and pAKT levels in a dose-dependent manner.
PCOS (n=39)
BMI < 25 (n=24)
BMI ≥ 25 (n=15)
ovulatory non-PCOS (n=53)
BMI < 25 (n=35)
BMI ≥ 25 (n=18)
29.7 ± 3.5
31.2 ± 3.8
31.6 ± 4.7
31.2 ± 2.9
22.3 ± 1.4
27.8 ± 1.6
20.4 ± 2.0
26.0 ± 1.3
IVF/ICSI
GnRH agonist, rFSH
FF: PGRN, TNF-α, IL-6 and MCP-1
Serum: E 2 , LH, FSH, TT, fasting blood glucose
IVF/ICSI outcomes: Retrieved oocytes(n), Oocyte’s Fertilization(n), Grade I/II embryos(n)
PCOS: ↑PGRN, TNF-α
FF PGRN levels and GCs mRNA expression of PGRN were higher* in women with PCOS than in controls, and higher* in overweight than in the normal-weight women.
FF TNF-α levels were higher in women with PCOS than controls; and higher rate of overweight than normal-weight controls.
In women with PCOS, FF PGRN was positively correlated* with TT and FF TNF-α, but negatively correlated* with n. of retrieved oocytes.
PCOS (n=21)
Ovulatory non-PCOS (n=21)
28.8 ± 4.9
28.6 ± 4.7
28.2 ± 5.3
29.2 ± 4.5
ICSI
GnRH agonist, rFSH
FF: thiol groups TAC, MDA, TOS, TNF-α, IL-6, IL-8, and IL-10 l.
ICSI outcomes: Oocyte (n), MII oocyte (n),
Fertilization rate (%), Embryo (n)
PCOS: ↑MDA, TOS, TNF-α, IL-6 and IL-8
↓TAC, thiol groups and IL-10
TNF-α levels were positively correlated* with MDA and TOS and negatively correlated* with TAC and thiol groups.
IL-6 and MDA levels were positively correlated with IL-10 levels and TAC. IL-8 and IL-10 were negatively correlated* with TAC and TOS levels, respectively.
The n. of retrieved oocytes was higher* in women with PCOS.
PCOS (n=40)
Ovulatory non-PCOS (n=40)
28.4 ± 3.7
30.2 ± 4.2
26.7 ± 3.0
25.2 ± 2.3
IVF
GnRH long agonist, rFSH
FF: LIF, E 2 and P 4
Serum: LIF, E 2, FSH, LH, P 4 , TT, and PRL
IVF outcomes: pregnancy rate (%)
PCOS: ↓LIF
Serum and FF LIF levels were negatively correlated with E 2 in women with PCOS.
LIF concentrations in embryo culture medium were higher* in women who achieved pregnancy in both groups.
PCOS (n=30)
Ovulatory non-PCOS (n=23)
27.4 ± 4.0
27.7 ± 3.3
21.2 ± 1.9
20.2 ± 1.6
IVF
GnRH antagonist protocol
FF: CRP, chemerin FSH, LH, TT, E 2 , P 4
Serum: FSH, LH, TT, E 2 ,
P 4 , PRL, AMH and TSH
IVF outcomes: oocytes retrieved (n), oocyte utilization rate and high-quality embryo rate
PCOS: ↑ LH, TT, CRP, chemerin
The mRNA expression of chemerin and its receptors in granulosa cells from women with PCOS were higher* than those from non-PCOS.
FF chemerin was positively correlated with TT and LH in FF.
PCOS (n=60)
Ovulatory non-PCOS (n=60)
29.5 ± 3.9
30.5 ± 3.7
24.5 ± 2.6
22.5 ± 2.3
IVF
GnRH antagonist, rFSH and HMG
FF: IL-18 and IL-18BP
Serum: E 2 , TT, LH, FSH, IL-18 and IL-18BP
IVF outcomes: oocytes retrieved (n), MII oocytes (n), embryos transferred (n), Top-quality embryo (%), fertilization rate (%), Pregnancy rate (%)
PCOS: ↑IL-18
↓IL-18BP
FF IL-18 levels were higher* than in serum in women with PCOS.
FF IL-18 was higher* in overweight women with PCOS compared to normal weight women with PCOS.
FF IL-18 levels in women with PCOS were positively* correlated with TT and negatively correlated with E 2 levels.
In women with PCOS women, FF IL-18 was positively correlated* with the n. of oocytes retrieved, and negatively correlated* with the n. of MII oocytes and top-quality embryos.
AMH antimüllerian hormone, BMI body mass index, CML N-carboxymethyl-lysine, CRP C-reactive protein, E 2 oestradiol, FF follicular fluid, FR fertilization rate, FSH follicle stimulating hormone, G-CSF granulocyte colony-stimulating factor, GnRH gonadotropin-releasing hormone, GCs granulosa cells, GV germinal vesical, HDL high-density lipoprotein, hMG human menopausal gonadotrophins, ICSI intracytoplasmic sperm injection, IL interleukin, IFN-γ Interferon gamma, IVF in vitro fertilization, LIF leukemia inhibitory factor, LH luteinizing hormone, LDL low-density lipoprotein, MCP-1 Monocyte chemoattractant protein-1, MDA malondialdehyde, MI metaphase I, MII metaphase II, mRNA messenger ribonucleic acid, MS metabolic syndrome, n number, P 4 progesterone, PCOS polycystic ovarian syndrome, PGRN progranulin, PRL prolactin, 2PN two pronuclei (fertilized oocytes), RANTES Regulated on activation, normal T expressed and secreted, rFSH recombinant follicle stimulating hormone, SHBG sex hormone-binding globulin, sRAGE soluble receptor for advanced glycation end products, TAC total antioxidant capacity, TNF-α tumor necrosis factor alpha, TOS total oxidant status, TC total cholesterol, TG triglycerides, TT testosterone, VEGF vascular endothelial growth factor
Summary of studies comparing growth factors in follicular fluid of PCOS and non-PCOS women
PCOS (n=6)
Ovulatory non-PCOS (n=11)
27.6 (25-31)
26.6 (22-30)
29.5 (17-51)
22.0 (19-29)
ICSI
GnRH agonist or antagonist protocols, rFSH
FF: VEGF 121 , VEGF 165 and sFlt-1
ICSI outcomes: oocytes retrieved (n), FR (%), embryos transferred (n)
Higher FF VEGF 165 levels* in women with PCOS, BMI > 30 and age > 40 years.
Lower FF VEGF 165 levels were associated* clinical pregnancy.
PCOS (n=21)
Ovulatory non-PCOS (n=38)
29.3 ± 0.9
31.7 ± 0.8
24.5 ± 0.7
24.4 ± 0.5
ICSI
GnRH agonist protocol, rFSH
FF: HGF
Serum: FSH, LH, P 4 , E 2 , TT, DHEAS, A
ICSI Outcomes: total FSH dose, oocytes retrieved (n), MII oocytes (n), FR (%), clinical pregnancy rate (%)
No significant differences were found in serum and FF HGF levels between groups.
Higher c-Met expression* in GCs of fertilized oocytes (vs. non-fertilized oocytes)
Higher FF HGF levels* in the grade 1 embryos (vs. grades 2-4 embryos).
PCOS (n=14)
Ovulatory non-PCOS (n=14)
30.1 ± 4.4
30.8 ± 3.7
25.5 ± 5.6
24.9 ± 3.9
IVF/ICSI
GnRH agonist (n=8 for each group) or GnRH antagonist (n=6 for each group) protocols, combination of rFSH and hMG
FF: PIGF and sFlt-1
Serum: AMH, PIGF and sFlt-1
IVF/ICSI outcomes: oocytes retrieved (n), FR (%), pregnancy rate (%)
PCOS: ↑FF PIGF
↓FF sFlt-1
FF PIGF was positively correlated* with n. of oocytes retrieved and serum AMH and negatively correlated* with age.
PlGF bioavailability (PlGF/sFlt-1 ratio) in FF was greater in PCOS women compared with non-PCOS controls.
PCOS (n=40)
Ovulatory non-PCOS (n=40)
28.6 ± 4.3
28.4 ± 5.9
27.2 ± 5.7
26.1 ± 4.3
IVF/ICSI
GnRH long agonist protocol, rFSH or hMG
FF: VEGF
Serum: VEGF
IVF/ICSI outcomes: retrieved oocyte (n), MII oocyte (n and %), fertilized oocyte (n), embryos (n), FR (%)
PCOS: ↑VEGF
FF VEGF levels were lower* in women who achieved pregnancy vs. non-pregnant both in PCOS and control.
PCOS (n=43)
Ovulatory non-PCOS (n=32)
28 (23.0-33.0)
27 (25.0-30.0)
22.6 (20.2-24.0)
20.3 (19.0-23.5)
IVF/ICSI
GnRH antagonist protocol
FF: FGF13 and FGF21, IL-6, TT, E 2 , P 4 , LH, FSH and SHBG
IVF/ICSI outcomes: oocytes retrieved (n), MII oocytes rate (%), FR (%), high-quality embryo rate (%)
FF FGF13 levels were positively correlated with FF TT levels in women with PCOS.
FF FGF13 levels in women with PCOS was negatively associated* with MII oocyte rate.
PCOS (n=40)
Ovulatory non-PCOS (n=40)
29.3 ± 0.6
29.3 ± 0.6
24.4 ± 0.5
22.2 ± 0.5
IVF
GnRH agonist protocol, rFSH
FF: GDF-8
Serum: FSH, LH, E 2 , P 4 , TT, PRL, GDF-8
IVF outcomes: oocytes retrieved (n), MII oocytes (n), pregnancy outcomes
PCOS: ↑GDF-8
Serum and FF GDF-8 levels were lower* in women with PCOS who achieved pregnancy vs non-pregnant.
GDF-8 resulted in greater inhibition of StAR expression in granulosa-lutein cells from women with PCOS than without-PCOS.
Low serum P 4 levels were associated with poor pregnancy outcomes in women with PCOS.
A androstenedione, AMH antimüllerian hormone, BMI body mass index, c-Met mesenchymal epithelial transition factor, DHEAS dehydroepiandrosterone sulfate, E 2 oestradiol, FF follicular fluid, FGF13 fibroblast growth factor 13, FGF21 fibroblast growth factor 21, FR fertilization rate, FSH follicle stimulating hormone, GDF-8 growth differentiation factor 8, GnRH gonadotropin-releasing hormone, HGF hepatocyte growth factor, hMG human menopausal gonadotrophins, ICSI intracytoplasmic sperm injection, IL interleukin, IVF in vitro fertilization, LH luteinizing hormone, MI metaphase I, MII metaphase II, mRNA messenger ribonucleic acid, n number, P 4 progesterone, PCOS polycystic ovarian syndrome, PIGF placental growth factor, PRL prolactin, rFSH recombinant follicle stimulating hormone, sFlt-1 soluble Fms-like tyrosine kinase-1, SHBG sex hormone-binding globulin, StAR steroidogenic acute regulatory, TT testosterone, VEGF vascular endothelial growth factor
Summary of studies comparing hormones in follicular fluid of PCOS and non-PCOS women
PCOS (n=31)
Ovulatory non-PCOS (n=79)
28 (22–35)
29 (23–37)
23.4 (19.8-30.6)
21.4 (16.7-28.5)
IVF
GnRH agonist protocol, rFSH
FF: leptin
Serum: LH, FSH, E 2 , P 4 , TT, leptin levels
IVF outcomes: oocytes retrieved (n), FR (%), good quality embryo (%), implantation rate (%), pregnancy rate (%)
PCOS: ↑leptin
The p-STAT3 expression was lower* in PCOS compared with control, whereas there were no significant differences in SOCS3 expression in GCs.
Serum and FF leptin levels were higher in the failed pregnancy PCOS subgroup vs. successful pregnancy PCOS subgroup.
PCOS (n=36)
non-PCOS with infertile male partners (n=23)
non-PCOS women with unexplained infertility (n=38)
29.6 ± 5.1
28.4 ± 6.0
i
29.7 ± 4.4
26.3 ± 2.9
24.8 ± 3.3
24.7 ± 2.9
400 μg/day of preconceptional folic acid
IVF
GnRH agonist protocol, rFSH
FF: glucose, insulin, Homocysteine, TT, A, P 4 , DHEA
Serum: E 2 , TT, A, P 4 , DHEA, insulin, glucose, and Homocysteine
IVF outcomes: follicle (n), retrieved and MII oocytes (n), embryo (n), transferred embryo (n), clinical pregnancy rate (%)
PCOS (n=16)
Male infertility factor non-PCOS (n=19)
Unexplained infertility non-PCOS (n=19)
29.4 ± 4.8
28.8 ± 3.3
29.1 ± 6.9
24.5 ± 6.4
25.4 ± 4.9
23.5 ± 3.5
IVF
GnRH agonist protocol, rFSH
FF: AMH
IVF outcomes: total gonadotropin dose, stimulation duration, retrieved oocytes (n), MII oocytes (n), 2PN (n), embryo (n)
FF AMH levels were not significantly different between the three groups as well as between pregnant and non-pregnant groups.
FF AMH was negatively correlated with FSH (day 3) and gonadotropin dose and positively correlated* with oocyte, 2PN and embryo counts, in PCOS group.
PCOS (n=16)
Ovulatory non-PCOS (n=10)
32.1 ± 3.6
34.4 ± 3.1
22.6 ± 2.6
22.6 ± 2.6
ICSI
GnRH agonist protocol, rFSH
FF: leptin and visfatin
Serum: free TT, Δ4-androstenedione, SHBG, DHT, DHEA, DHEAS, HDL-C, LDL-C, triglycerides, 17β-E 2 , insulin levels, leptin and visfatin.
ICSI outcomes : Follicles (size), MII oocytes (n), fertilization rate (%), embryos (I°) pregnancy rate (%)
PCOS: ↓leptin
Positive correlation between BMI and FF-leptin in women with PCOS.
FF-visfatin levels were not significantly different between groups.
PCOS (n=60)
Ovulatory non-PCOS (n=60)
29.4 ± 3.7
30.0 ± 3.7
30.3 ± 4.0
31.6 ± 4.0
BMI<25 BMI≥25
BMI<25
BMI≥25
IVF
GnRH agonist protocol, rFSH
FF: adiponectin and ghrelin.
IVF outcomes: clinical pregnancy
PCOS: ↓adiponectin
FF adiponectin levels were lower* in the lean and overweight PCOS than in lean non-PCOS.
There was no significant difference in the FF ghrelin levels between the groups.
PCOS (n=59)
Ovulatory non-PCOS
(n=120)
29.1 ± 3.5
30.3 ± 3.9
22.2 ± 3.2
21.4 ± 2.9
IVF/ICSI
PCOS group: GnRH agonist (n=30) or GnRH antagonist (n=29), rFSH
Control group: GnRH agonist protocol, rFSH
FF: AMH
Serum: AMH
IVF/ICSI outcomes: AFC, peak E 2 , oocytes retrieved (n), MII oocytes (n), oocyte maturity rate (%), FR (%), good-quality embryos (n), 2PN (n), good-quality embryo rate (%), pregnancy rate (%), abortion rate (%), implantation rate (%)
PCOS: ↑AMH
FF AMH positively correlated* with AFC in PCOS group.
FF AMH levels were independent predictor of oocyte number.
PCOS (n=16)
Ovulatory non-PCOS (n=43)
34.7 ± 5.0
34.7 ± 5.0
29.3 ± 4.0
23.7 ± 5.1
FF: β-endorphin
Serum: β-endorphin
IVF outcomes: oocytes (n), MII oocytes retrieved (n)
There was no difference in β-endorphin levels between PCOS and non-PCOS women.
FF β-endorphin was positively correlated with MII oocytes retrieved.
FF β-endorphin levels positively correlated with TT levels.
PCOS (n=52)
Ovulatory non-PCOS (n=61)
29.7 ± 0.5
30.6 ± 0.4
27.1 ± 0.6
22.6 ± 0.4
IVF
GnRH antagonist protocol, rFSH
FF: AMH and SCF
Serum: AMH and SCF
IVF outcomes: retrieved oocytes (n), MII oocytes (n), 2PN fertilization (n), high-quality embryos (n)
PCOS: ↑AMH
↓SCF
In the control group, the basal AMH was negatively correlated with Gn dosage and positive correlated* with controlled ovarian hyperstimulation outcomes (number of retrieved oocytes, MII oocytes, and 2PN fertilization).
PCOS (n=70)
BMI25=35
Ovulatory non-PCOS (n=70)
BMI25=35
31.9 ± 4.3
32.2 ± 3.9
35.1 ± 4.5
35.3 ± 4.5
22.2 ± 1.1
26.8 ± 1.4
22.3 ± 1.2
26.6 ± 1.3
FF: irisin
Serum: irisin, insulin, glucose, E 2 , LH, FSH, TT, SHBG, cholesterol, HDL-C, LDL-C, triglycerides, apolipoprotein A1, apolipoprotein B, lipoprotein(a) and homocysteine
IVF outcomes: oocytes (n), Fertilized oocytes (n), Transferred embryos (n), Pregnancy [n (%)]
In overweight PCOS women, both serum and FF irisin levels were positively correlated to FSH and LH.
In non-overweight controls, FF irisin levels were negatively correlated with FAI and testosterone levels.
In non-overweight PCOS patients, FF irisin levels were positively correlated with homocysteine.
Irisin correlated positively with BMI, dyslipidemia and the number of oocytes retrieved and fertilized.
PCOS (n=49)
Ovulatory non-PCOS (n=52)
29.6 ± 3.6
30.6 ± 4.1
24.5 ± 3.8
24.3 ± 3.5
IVF/ICSI
luteal-phase GnRH agonist or follicular-phase GnRH antagonist
FF: KISS1, KISS1R
Serum: AMH, FSH, TT, LH, E 2 , PRL, P 4 , and A
IVF/ICSI outcomes: oocyte retrieved (n), fertilized egg (n), 2PN (n), day 3 viable embryo (n), transferred embryo (n)
PCOS: ↑KISS1 and KISS1R
KISS1 expression in human granulosa lutein cells was positively correlated with KISS1R expression in women without PCOS, but not in women with PCOS.
KISS1 expression in GCs was positively correlated with the serum levels of AMH.
PCOS (n=261)
Ovulatory non-PCOS (n=217)
29.8 ± 3.5
29.6 ± 3.2
30=57
30=10
ICSI
PCOS group: GnRH agonist long protocol, FSH and rFSH
FF: E 2, TT
Serum: E 2, TT, SHBG, P 4 , PRL
IVF/ ICSI outcomes: Endometrial thickness, retrieved oocytes and embryos (n), FR (%), Pregnancy rate (%), Abortion rate (%), Transplant rejection rate (%)
PCOS: ↑E 2 , TT
In comparison with the control group, the levels of E 2 and TT in serum as well as testosterone level in FF were found to be significantly increased in patients of the PCOS group on the day of HCG injection, while the serum level of SHBG was found to be markedly downregulated.
PCOS (n=32)
Ovulatory non-PCOS (n=28)
28.9 ± 3.4
29.5 ± 3.5
22.2 ± 3.0
20.2 ± 2.5
IVF
GnRH agonist protocol, rFSH
FF: TSH
Serum: TSH
IVF outcomes: oocyte maturation rate (%), FR (%), cleavage rate (%), high quality embryo rate (%), pregnancy rate (%)
PCOS: ↑TSH
TSHR was upregulated in PCOS.
Serum and FF TSH levels were negatively correlated with oocyte maturation and fertilization rates in PCOS.
PCOS (n=90)
Ovulatory non-PCOS (n=100)
29.4 ± 3.8
30.2 ± 5.1
22.8 ± 1.6
21.7 ± 1.9
IVF
GnRH agonist protocol
FF: β-endorphin levels
Serum: β-endorphin levels, E 2 , FSH, LH, TT, prolactin, AMH, fasting insulin, and fasting blood glucose
IVF outcomes: MII oocytes (n), high-quality embryos (n), fertilized oocytes (n), rate of normal fertilization (%), rate of oocyte differentiation, rate of D3 high-quality embryo (%), pregnancy (%)
live birth (%), abortion (%)
PCOS: ↑β-endorphin
AMH, serum and FF β-endorphin were positively correlated with oocyte quality.
Serum and FF β-endorphin had high sensitivity and specificity to predict pregnancy and live birth.
A androstenedione, AFC antral follicle count, AMH antimüllerian hormone, BMI body mass index, DHEA dehydroepiandrosterone, DHEAS dehydroepiandrosterone sulfate, DHT dihydrotestosterone, E 2 oestradiol, FAI free androgen index, FF follicular fluid, FR fertilization rate, GnRH gonadotropin-releasing hormone, GCs granulosa cells, hMG human menopausal gonadotrophins, ICS I intracytoplasmic sperm injection, IVF
in vitro fertilization, KISS1 kisspeptin 1, LH luteinizing hormone, MI metaphase I, MII metaphase II, mRNA messenger ribonucleic acid, n number, P 4 progesterone, PCOS polycystic ovarian syndrome, 2PN two pronuclei (fertilized oocytes), p-STAT3 signal transducer and activator of transcription 3, PRL prolactin, rFSH recombinant follicle stimulating hormone, SCF stem cell factor, SHBG sex hormone-binding globulin, TT testosterone, TSH thyroid stimulating hormone
Summary of studies comparing other molecules in follicular fluid of PCOS and non-PCOS women
PCOS (n=55)
BMI 30 (n=25)
Ovulatory non-PCOS (n=63) BMI 30 (n=25)
31.2 ± 3.7
30.9 ± 3.8
30.6 ± 3.5
30.9 ± 3.6
22.9 ± 3.1
32.4 ± 2.4
22.1 ± 2.8
32.9 ± 2.2
IVF
GnRH antagonist protocol, rFSH, and/or HMG
FF: free fatty acids.
Serum: FSH, LH, E 2 , TT, insulin, TC, TG, LDL, HDL, free fatty acids
IVF outcomes: Embryo fragmentation, Blastomere score
PCOS: ↑ palmitic acid, oleic acid
The embryo fragmentation score was positively correlated* with the oleic acid concentration in women with PCOS both with and without obesity.
PCOS (n=41)
Ovulatory non-PCOS (n=40)
27.5 ± 3.4
28.1 ± 2.4
24.9 ± 1.7
24.6 ± 1.3
ICSI
GnRH agonist protocol, rFSH
FF: amyloid A levels
Serum: amyloid A levels
ICSI outcomes: Endometrial thickness (mm), retrieved oocytes (n), mature oocytes (n), FR (%), Patients with grade 1 and 2 embryos (%), Live birth rate (%), Clinical pregnancy rate (%), Abortion rate (%)
PCOS (n=15)
Ovulatory non-PCOS (n=36)
27.6 ± 3.0
31.9 ± 3.8
FF: Metabolic profile
Outcomes: 2PN FR (%), Cleavage rate (%), Top-quality embryos rate (%)
PCOS: ↑glycoprotein, acetate and
cholesterol
↓lactic acid, glutamine,
pyruvate and alanine.
A positive correlation* was observed between 2PN fertilization rate and acetoacetate, acetate, 3-hydroxuybutyrate, glycoprotein and formic acid and a negative correlation was observed between glucose and fertilization results, in women with PCOS.
Acetic acid level was negatively correlated with the cleavage results in controls; however, it was positively correlated with 2PN fertilization rate in PCOS.
Creatine, leucine, isoleucine, and tyrosine were negatively correlated* with embryos quality in all samples.
Histidine exhibited highly negative correlation and glutamine presented highly positive correlation with embryos top-quality rate respectively, in PCOS.
PCOS (n=21)
Ovulatory non-PCOS (n=22)
29.2 ± 3.7
29.1 ± 3.6
27.9 ± 5.9
25.2 ± 5.4
ICSI
GnRH antagonist protocol, rFSH
FF: ADAMTS-1 and aggrecan
ICSI outcomes: oocytes retrieved (n), MI and MII oocytes (n and %), fertilization rate (%), implantation rate (%)
PCOS: ↑ADAMTS-1 and aggrecan
Higher ADAMTS-1 FF levels were related to increased implantation in PCOS.
PCOS (n=80)
Ovulatory non-PCOS women (n=80)
27.6 ± 4.1
28.9 ± 4.7
26.3 ± 4.1
25.0 ± 3.4
ICSI
GnRH agonist protocol, rFSH
FF: Sfrp-5
Serum: Sfrp-5
ICSI outcomes: retrieved and MII oocytes (n), FR (%), embryo quality (%), clinical pregnancy rate (%), live birth rate (%)
PCOS: ↑ Sfrp-5
Serum and FF Sfrp-5 levels were positively correlated* with fasting insulin and negatively correlated* with inflammatory markers (CRP and neutrophil count).
Serum and FF Sfrp-5 levels were not associated with the clinical pregnancy rate.
PCOS (n=29)
Ovulatory non-PCOS (n=30)
30.9 ± 4.8
32.6 ± 4.7
26.0 ± 3.8
25.5 ± 3.6
IVF
GnRH agonist protocol, rFSH
FF: 176 miRNAs
Serum: TT, SHBG, AMH, FAI, HOMA-IR
IVF outcomes: endometrium thickness oocytes retrieved (n), fertilization rate (%), cleavage and blastocyst stages embryos (n), G3D3 embryos (n), clinical pregnancy (n)
Of 176 miRNAs detected in FF, 29 differed* between normal women and PCOS.
The top 7 of these were miR-381-3p, miR-199b-5p, miR-93-3p, miR-361-3p, miR-127-3p, miR-382-5p, miR-425-3p.
In the PCOS group , miR-382-5p positively correlated* with age and negatively* with FAI, miR-199b-5p negatively correlated* with AMH and miR-93-3p positively correlated* with CRP.
In controls , miR-127-3p, miR382-5p and miR425-3p positively correlated* with the fertilisation rate; miR-127-3p negatively correlated* with insulin resistance, and miR-381-3p negatively correlated* with FAI.
PCOS (n=89)
Ovulatory non-PCOS (n=114)
Fallopian tube obstruction (FTO) non-PCOS (n=145)
29.8 ± 4.1
32.4 ± 4.0
32.2 ± 4.8
21.8 ± 2.8
21.0 ± 3.0
21.6 ± 2.5
ICSI
GnRH agonist long protocol, rFSH and hMG
FF: Levels of 22 trace elements
Serum: FSH, LH, TT, E 2 , PRL and AMH
ICSI outcomes: Endometrial thickness (mm), retrieved oocytes (n), FR (%), cleavage rate (%), High-quality embryo rate (%)
PCOS: ↑copper
Higher FF copper levels were associated with a higher* number of retrievable oocytes in the PCOS group but a lower rate of high-quality embryos.
FF copper levels were positively correlated with TT and P 4 levels.
Cultured human GCs overexposed to copper showed increased E 2 secretion and decreased TT levels. It was also found an increase in CYP19A1 and HSD3b mRNA expression.
ADAMTS-1 a disintegrin-like and metalloproteinase with thrombospondin type motifs 1, AMH antimüllerian hormone, BMI body mass index, CRP C-reactive protein, CYP19A1 cytochrome P450 family 19 subfamily A member 1, E 2 oestradiol, FAI free androgen index, FF follicular fluid, 21, FR fertilization rate, GnRH gonadotropin-releasing hormone, GCs granulosa cells, G3D3 top quality embryos on day 3, HDL high-density lipoprotein, hMG human menopausal gonadotrophins, HOMA-IR homeostasis model assessment estimate of insulin resistance, ICSI intracytoplasmic sperm injection, IVF
in vitro fertilization, LDL low-density lipoprotein, LH luteinizing hormone, MI metaphase I, MII metaphase II, miRNA micro ribonucleic acid, mRNA messenger ribonucleic acid, n number, P 4 progesterone, PCOS polycystic ovarian syndrome, 2PN two pronuclei (fertilized oocytes), rFSH recombinant follicle stimulating hormone, Sfrp-5 secreted frizzle-related protein-5, SHBG sex hormone-binding globulin, TC total cholesterol, TG triglycerides, TT total testosterone