Reduction of estrogen production by interleukin-6 in a human granulosa tumor cell line may have implications for endometriosis-associated infertility
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Interleukin-6 reduced estrogen production in a human granulosa tumor cell line, suggesting a potential mechanism contributing to endometriosis-associated infertility.
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Abstract
OBJECTIVE: To examine the effect of interleukin-6 (IL-6) on estrogen production and aromatase activity using a human granulosa tumor cell line (KGN cells). The involvement of the mitogen-activated protein kinase (MAPK) cascade in the inhibitory effects of IL-6 on estrogen production was also evaluated.
DESIGN: Molecular and biological studies of KGN cells.
SETTING: Department of Obstetrics and Gynecology, Tottori University Hospital, Yonago, Japan.
MAIN OUTCOME MEASURE(S): Gene expression of IL-6 and the IL-6 receptor was analyzed by reverse transcription-polymerase chain reaction and Southern blot analysis. KGN cells were cultured for 48 hours with IL-6 (0.1-10 ng/mL) or IL-6 (10 ng/mL) plus a mitogen activated protein kinase-extracellular signal regulated kinase kinase 1/2 (MEK1/2) inhibitor U0126 (10 microM). Estradiol concentration in the culture supernatants was measured by means of enzyme immunoassay, [1beta-(3)H] androstenedione was added to the cell lysate supernatant, and aromatase activity was determined by measuring the amount of [(3)H] H(2)O released upon the conversion of [1beta-(3)H] androstenedione to estrone. To examine the activation of intracellular signal transduction molecules induced by IL-6, the phosphorylation of Stat3, p38 MAPK, and extracellular signal-regulated kinase 1/2 (ERK1/2) was examined by Western blotting.
RESULT(S): Gene expression of IL-6 and its receptor was detected in KGN cells. Estradiol secretion was significantly inhibited by adding IL-6, which also suppressed aromatase activity to 50% of the control. In addition, pretreatment with U0126 restored the IL-6-induced suppression of aromatase activity. IL-6 markedly enhanced the phosphorylation of ERK1/2, but not Stat3 and p38 MAPK. U0126 markedly reduced the level of the IL-6-induced phosphorylation of ERK1/2.
CONCLUSION(S): These findings demonstrate that IL-6 may reduce estrogen production via the MAPK signal pathway in human granulosa cells. The results may support the notion that IL-6 is related to impaired estrogen biosynthesis in patients with endometriosis.
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Cited by (16)
- Research advances in endometriosis-related signaling pathways: A review 2023
- Transcriptomic analysis of granulosa cells in patients with endometriosis-related infertility: identification of potential molecular mechanisms 2023
- Pharmaceuticals targeting signaling pathways of endometriosis as potential new medical treatment: A review 2021
- Laparoscopic Surgery Combined with GnRH Agonist in Endometriosis 2019
- Investigating the impact of local inflammation on granulosa cells and follicular development in women with ovarian endometriosis 2019
- Hypoxia-inhibited DUSP2 expression promotes IL-6/STAT3 signaling in endometriosis 2017
- Cytokins as the markers for non-invasive diagnosis of pelvic endometriosis 2015
- The impact of endometriosis on fertility 2015
- Anatomy, Development, Histology, and Normal Function of the Ovary 2014
- Inflammation and Cytokines in Endometriosis 2014
- TGF-β1 induces proteinase-activated receptor 2 (PAR2) expression in endometriotic stromal cells and stimulates PAR2 activation-induced secretion of IL-6 2011
- Laparoscopic surgery for endometriosis-associated infertility: a pathophysiologic approach 2010
- 15-Epi-lipoxin A(4) inhibits the progression of endometriosis in a murine model 2009
- Interleukin-10 attenuates TNF-alpha-induced interleukin-6 production in endometriotic stromal cells 2008
- Zur Bedeutung der Endometriose in der Reproduktionsmedizin 2007
- Reduced aromatase activity in granulosa cells of women with endometriosis undergoing assisted reproduction techniques 2006
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