Endometriosis-associated infertility

In: Reproductive Medicine Review · 1997 · vol. 6(3) , pp. 145–161 · doi:10.1017/s0962279900001496 · W2101142181
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No treatment directly addresses endometriosis to alleviate infertility, likely due to undefined mechanisms, leading to management as unexplained infertility via nonspecific enhancements like IVF.

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This paper reviews endometriosis-associated infertility and argues that, despite diagnostic advances and clinical interest, there is no treatment specifically aimed at endometriosis that consistently improves fertility when infertility is not due to mechanical pelvic compromise. It links the therapeutic stagnation to the lack of consensus about the mechanisms by which endometriosis (or its pathophysiology) causes infertility, noting that infertility from other unidentified causes could also produce repetitive nonconception cycles and contribute to endometriosis development. The authors state that the most useful current approach is to treat these couples as having unexplained infertility, using nonspecific cycle fecundity enhancement such as controlled ovarian hyperstimulation with intrauterine insemination or IVF, while acknowledging limitations including expense and hazards such as multiple gestation and ovarian hyperstimulation. This paper is centrally about endometriosis — specifically, the challenges and framework for understanding and managing endometriosis-associated infertility.

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Abstract

Despite intense clinical interest, increasing numbers of infertile couples with endometriosis-associated infertility and ever more sophisticated diagnostic technology, optimal treatment of the infertility remains frustrating. In the absence of mechanical compromise of the pelvic viscera, there is no treatment directed towards the endometriosis itself, medical or surgical, which alleviates the infertility experienced by these couples. The reason for this lack of therapeutic progress is most likely related to the lack of consensus regarding the mechanism(s) by which the endometriosis or its pathophysiology may cause infertility. The possibility that infertility from another, as yet unidentifiable, cause(s) results in repetitive, nonconceptive, ovulatory menstrual cycles and leads to the development of endometriosis remains just as viable a hypothesis. The most useful current therapeutic approach is to consider these couples as having ‘unexplained’ infertility and utilize nonspecific cycle fecundity enhancement such as controlled ovarian hyperstimulation with intrauterine insemination or IVF. Since the fecundity of women with endometriosis in the later reproductive years continues to rapidly decline, this represents their most cost-effective option. While these nonspecific treatments may normalize the cycle fecundity, they are expensive and fraught with the hazards of multiple gestation and ovarian hyperstimulation. While efforts to reduce the risks of this approach are being made, improved therapeutic success with less hazard and cost will continue to remain elusive until the mechanism(s) of the infertility associated with endometriosis is conclusively defined.
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Published online by Cambridge University Press: 03 June 2009 Despite intense clinical interest, increasing numbers of infertile couples with endometriosis-associated infertility and ever more sophisticated diagnostic technology, optimal treatment of the infertility remains frustrating. In the absence of mechanical compromise of the pelvic viscera, there is no treatment directed towards the endometriosis itself, medical or surgical, which alleviates the infertility experienced by these couples. The reason for this lack of therapeutic progress is most likely related to the lack of consensus regarding the mechanism(s) by which the endometriosis or its pathophysiology may cause infertility. The possibility that infertility from another, as yet unidentifiable, cause(s) results in repetitive, nonconceptive, ovulatory menstrual cycles and leads to the development of endometriosis remains just as viable a hypothesis. The most useful current therapeutic approach is to consider these couples as having ‘unexplained’ infertility and utilize nonspecific cycle fecundity enhancement such as controlled ovarian hyperstimulation with intrauterine insemination or IVF. Since the fecundity of women with endometriosis in the later reproductive years continues to rapidly decline, this represents their most cost-effective option. While these nonspecific treatments may normalize the cycle fecundity, they are expensive and fraught with the hazards of multiple gestation and ovarian hyperstimulation. While efforts to reduce the risks of this approach are being made, improved therapeutic success with less hazard and cost will continue to remain elusive until the mechanism(s) of the infertility associated with endometriosis is conclusively defined. - Type - Research Article - Information - Copyright - Copyright © Cambridge University Press 1997 1Collins, JA, Writom, W, Janes, LB, Wilson, EH. Treatment-independent pregnancies among infertile couples. N Engl J Med 1983; 309: 1201.CrossRefGoogle ScholarPubMed 2Lenton, EA, Weston, GA, Cooke, IA. Long-term follow-up of the apparently normal couple with a complaint of infertility. Fertil Steril 1977; 28: 913.CrossRefGoogle ScholarPubMed 3Templeton, AA, Penney, GC. The incidence, characteristics, and prognosis of patients whose infertility is unexplained. Fertil Steril 1982; 37: 175.CrossRefGoogle ScholarPubMed 4Garcia, CR, David, SS. Pelvic endometriosis: infertility and pelvic pain. Am J Obstet Gynecol 1977; 129: 740.CrossRefGoogle ScholarPubMed 5Schenken, RS, Malinak, LR. Conservative surgery vs. expectant management for the infertile patient with mild endometriosis. Fertil Steril 1982; 37: 183.CrossRefGoogle Scholar 6Seibel, MM, Berger, MJ, Weinstein, FG et al. The effectiveness of danazol on subsequent fertility in minimal endometriosis. Fertil Steril 1982; 38: 534.CrossRefGoogle ScholarPubMed 7Portuondo, JA, Echanojauregui, AD, Herran, C et al. Early conception in patients with untreated mild endometriosis. Fertil Steril 1983; 39: 22.CrossRefGoogle ScholarPubMed 8Olive, DL, Stohs, GF, Metzger, DA et al. Expectant management and hydrotubations in the treatment of endometriosis associated infertility. Fertil Steril 1985; 44: 35.CrossRefGoogle ScholarPubMed 9D'Hooghe, TM. Clinical relevance of the baboon as a model for the study of endometriosis. Fertil Steril 1997; 68: 613.CrossRefGoogle Scholar 10Thornton, JG, Morley, S, Lilleyman, J, Onwude, J et al. The relationship between laparoscopic disease, pelvic pain and infertility: An unbiased assessment. Eur J Obstet Gynecol Reprod Biol 1997; 74: 57.CrossRefGoogle ScholarPubMed 11Schifrin, BS, Erez, S, Moore, JG. Teenage endometriosis. Am J Obstet Gynecol 1973; 116: 973.CrossRefGoogle Scholar 12The American Fertility Society. Classification of endometriosis: 1985. Fertil Steril 1985; 43: 351.CrossRefGoogle Scholar 13Guzick, DS, Bross, DS, Rock, JA. Assessing the efficacy of The American Fertility Society's classification of endometriosis: application of a dose-response methodology. Fertil Steril 1982; 38: 171.CrossRefGoogle ScholarPubMed 14Olive, DC, Haney, AF. Endometriosis – associated infertility: a critical review of therapeutic approaches. Obstet Gynecol Sury 1986; 41: 538.CrossRefGoogle ScholarPubMed 15Jansen, RPS. Minimal endometriosis and reduced fecundability: prospective evidence from an artificial insemination by donor program. Fertil Steril 1986; 46: 141.CrossRefGoogle ScholarPubMed 16Kruitwagen, RFPM. Menstruation as the pelvic aggressor. Ballieres Clin Obstet Gynecol 1993; 7: 687.CrossRefGoogle ScholarPubMed 17Cahill, DJ, Wardle, PG, Maile, LA et al. Pituitary-ovarian dysfunction as a cause for endometriosis-associated and unexplained infertility. Hum Reprod 1995; 10: 3142.CrossRefGoogle ScholarPubMed 18Dodson, WC, Whitesides, DB, Hughes, CL et al. Superovulation with washed intrauterine insemination in the treatment of infertility: a possible alternative to gamete intrafallopian transfer and in vitro fertilization. Fertil Steril 1987; 48: 441.CrossRefGoogle Scholar 19Corsan, GH, Kemmann, E. The role of superovulation with menotropins in ovulatory infertility: a review. Fertil Steril 1991; 55: 468.CrossRefGoogle ScholarPubMed 20Dodson, WC, Haney, AF. Controlled ovarian hyperstimulation and intrauterine insemination for treatment of infertility. Fertil Steril 1991; 55: 457.CrossRefGoogle ScholarPubMed 21Chaffkin, LM, Nulsen, JC, Luciano, AA, Metzger, DA. A comparative analysis of the cycle fecundity rates associated with combined human menopausal gonadotropin (hMG) and intrauterine insemination (IUI) versus either hMG or IUI alone. Fertil Steril 1991; 55: 252.CrossRefGoogle ScholarPubMed 22Hurst, BS, Tjaden, BL, Kimball, A et al. Superovulation with or without intrauterine insemination for the treatment of infertility. J Reprod Med 1992; 37: 237.Google ScholarPubMed 23Nulsen, JC, Walsh, S, Dumez, S, Metzger, DA. A randomized and longitudinal study of human menopausal gonadotropin with intrauterine insemination in the treatment of infertility. Obstet Gynecol 1993; 82: 780.Google ScholarPubMed 24Tummon, IS, Asher, LJ, Martin, JS, Tulandi, T. Randomized controlled trial of superovulation an insemination for infertility associated with minimal or mild endometriosis. Fertil Steril 1997; 68: 8.CrossRefGoogle ScholarPubMed 25Chung-Hua, F, Chan, K, Tsa, C. Prolactin secretion in patients with endometriosis and its relationship to luteal phase defect and infertility. Chin J Obstet Gynecol 1993; 28: 14.Google Scholar 26Machida, T, Taga, M, Minaguchi, H. Prolactin secretion in endometriotic patients. Eur J Obstet Gynecol Reprod Biol 1997; 72: 89.CrossRefGoogle ScholarPubMed 27Grant, A. Additional sterility factors in endometriosis. Fertil Steril 1966; 17: 514.CrossRefGoogle ScholarPubMed 28Pittaway, DE, Maxson, W, Daniell, J et al. Luteal phase defects in infertility patients with endometriosis. Fertil Steril 1983; 39: 712.CrossRefGoogle ScholarPubMed 29Moeloek, FA, Moegny, E. Endometriosis and luteal phase defect. Asia-Oceania J Obstet Gynecol 1993; 19: 171.CrossRefGoogle ScholarPubMed 30Matorras, R, Rodriguez, F, Perez, C et al. Infertile women with and without endometriosis: a case control study of luteal phase defect and other infertility conditions. Acta Obstet Gynecol Scand 1996; 75: 826.CrossRefGoogle ScholarPubMed 31Wingfield, M, O'Herlihy, C, Finn, MM et al. Follicular and luteal phase salivary progesterone profiles in women with endometriosis and infertility. Gynecol Endocrinol 1994; 8: 21.CrossRefGoogle ScholarPubMed 32Koninckx, PR, Goddeeris, PG, Lauweryns, JM et al. Accuracy of endometrial biopsy dating in relation to the midcycle luteinizing hormone peak. Fertil Steril 1977; 28: 443.CrossRefGoogle Scholar 33Drake, TS, O'Brien, WF, Ramwell, PW et al. Peritoneal fluid thromboxane B2 and 6-keto-prostaglandin F2 in endometriosis. Am J Obstet Gynecol 1981; 140: 401.CrossRefGoogle Scholar 34Badawy, SZA, Marshall, L, Gabal, AA et al. The concentration of 13,14-dihydro-15-keto-prostaglandin F2a and prostaglandin E2 in peritoneal fluid of infertile patients with and without endometriosis. Fertil Steril 1982; 38: 166.CrossRefGoogle Scholar 35Haney, AF, Handwerger, S, Weinberg, JB. Peritoneal fluid prolactin in infertile women with endometriosis: lack of evidence of secretory activity by endometrial implants. Fertil Steril 1984; 42: 935.CrossRefGoogle ScholarPubMed 36Metzger, DA, Olive, DL, Haney, AF. Altered hormonal responsiveness of ectopic endometrium: histologic correlation with intrauterine endometrium. Hum Pathol 1988; 19: 1417.CrossRefGoogle Scholar 37Metzger, DA, Szpak, CA, Haney, AF. Histologic features associated with hormonal responsiveness of ectopic endometrium. Fertil Steril 1993; 59: 83.CrossRefGoogle ScholarPubMed 38Rock, JA, Dubin, NH, Ghodganokar, RB et al. Cul-de-sac fluid in women with endometriosis: fluid volume and prostanoid concentration during the proliferative phase of the cycle – days 8 to 12. Fertil Steril 1982; 37: 747.CrossRefGoogle ScholarPubMed 39Dawood, MY, Khan-Dawood, FS, Wilson, L Jr. Peritoneal fluid prostaglandins and prostanoids in women with endometriosis, chronic pelvic inflammatory disease and pelvic pain. Am J Obstet Gynecol 1984; 148: 391.CrossRefGoogle ScholarPubMed 40Croxatto, HB, Ortiz, M-E, Guiloff, E et al. Effect of 15(S)-15-methylprostaglandin F2a on human oviductal motility and ovum transport. Fertil Steril 1978; 30: 408.CrossRefGoogle Scholar 41Suginami, H, Yano, K, Watanabe, K, Matsuura, S. A factor inhibiting ovum capture by the oviductal fimbriae present in peritoneal fluid. Fertil Steril 1986; 46: 1140.CrossRefGoogle ScholarPubMed 42Suginami, H, Yano, K. An ovum capture inhibitor (OCI) in endometriosis peritoneal fluid: an OCI-related membrane responsible for fimbrial failure of ovum capture. Fertil Steril 1988; 50: 648.CrossRefGoogle ScholarPubMed 43Koninckx, PR, Brosens, IA, Corvelyn, PA. A study of plasma progesterone, oestradiol-17(, prolactin and LH levels and of the luteal phase appearance of the ovaries in patients with endometriosis and infertility. Br J Obstet Gynaecol 1978; 85: 246.Google Scholar 44Dmowski, WP, Rao, R, Scommegna, A. The luteinized unruptured follicle syndrome and endometriosis. Fertil Steril 1980; 33: 30.CrossRefGoogle ScholarPubMed 45Portuondo, JA, Peña, J, Otaloa, C et al. Absence of ovulation stigma in the conception cycle. Int J Fertil 1983a; 28: 51.Google ScholarPubMed 46Koninckx, PR, Ide, P, Vandenbrouche, W et al. New aspects of the pathophysiology of endometriosis and associated infertility. J Reprod Med 1980; 24: 257.Google ScholarPubMed 47Dhont, M, Serreyn, R, Duvivier, P et al. Ovulation stigma and concentration of progesterone and estradiol in peritoneal fluid: relation with fertility and endometriosis. Fertil Steril 1984; 41: 872.CrossRefGoogle ScholarPubMed 48Tanbo, T, Omland, A, Dale, PO, Abyholm, T. In vitro fertilization/embryo transfer in unexplained infertility and minimal peritoneal endometriosis. Acta Obstet Gynecol Scand 1995; 74: 539.CrossRefGoogle ScholarPubMed 49Brizek, CL, Schlaff, S, Pelligrini, VA et al. Increased incidence of aberrant morphological phenotypes in human embryogenesis: an association with endometriosis. J Assist Reprod Genet 1995; 12: 106.CrossRefGoogle ScholarPubMed 50Pellicer, A, Oliveira, N, Ruiz, A et al. Exploring the mechanism(s) of endometriosis-related infertility: An analysis of embryo development and implantation in assisted reproduction. Hum Reprod 1995; 10: 91.CrossRefGoogle ScholarPubMed 51Arici, A, Oral, E, Bukulmez, O et al. The effect of endometriosis on implantation: results from the Yale University in vitro fertilization and embryo transfer program. Fertil Steril 1996; 65: 603.CrossRefGoogle Scholar 52Abae, M, Glassberg, M, Majercik, MH et al. Immunoreactive endothelin-1 concentrations in follicular fluid of women with and without endometriosis undergoing in vitro fertilization-embryo transfer. Fertil Steril 1994; 61: 1083.CrossRefGoogle ScholarPubMed 53Fallat, ME, Siow, Y, Marra, M et al. Müllerian-inhibiting substance in follicular fluid and serum: a comparison of patients with tubal factor infertility, polycystic ovary syndrome, and endometriosis. Fertil Steril 1997; 67: 962.CrossRefGoogle ScholarPubMed 54Blumenkrantz, MJ, Gallagher, N, Bashore, RA, Tenckhoff, H. Retrograde menstruation in women undergoing chronic peritoneal dialysis. Obstet Gynecol 1981; 57: 667.Google ScholarPubMed 55Halme, J, Hammond, MG, Hulka, JF et al. Retrograde menstruation in healthy women and in patients with endometriosis. Obstet Gynecol 1984; 64: 151.Google ScholarPubMed 56McBean, J, Gibson, M, Brumstead, JR. The association of intrauterine filling defects on hysterosalpingograms with endometriosis. Fertil Steril 1996; 66: 522.CrossRefGoogle ScholarPubMed 57Ota, H, Igarashi, S, Hayakawa, M et al. Effect of danazol on the immunocompetent cells in the eutopic endometrium in patients with endometriosis: a multicenter cooperative study. Fertil Steril 1996; 65: 545.CrossRefGoogle ScholarPubMed 58Leiva, MC, Hasty, LA, Lyttle, CR. Inflammatory changes of the endometrium in patients with minimal to moderate endometriosis. Fertil Steril 1994; 62: 967.CrossRefGoogle ScholarPubMed 59Klentzeris, LD, Bulmer, JN, Liu, DT, Morrison, L. Endometrial leukocyte subpopulations in women with endometriosis. Eur J Obstet Gynecol Reprod Biol 1995; 63: 41.CrossRefGoogle ScholarPubMed 60Lessey, BA, Castelbaum, AJ, Sawin, SW et al. Aberrant integrin expression in the endometrium of women with endometriosis. J Clin Endocrinol Metab 1994; 79: 643.Google ScholarPubMed 61Geber, S, Paraschos, T, Atkinson, G et al. Results of IVF in patients with endometriosis: the severity of the disease does not affect outcome, or the incidence of miscarriage. Hum Reprod 1995; 10: 1507.CrossRefGoogle ScholarPubMed 62Huang, HY, Lee, CL, Lai, YM et al. The outcome of in vitro fertilization and embryo transfer therapy in women with endometriosis failing to conceive after laparoscopic conservative surgery. J Am Assoc Gynecol Laparoscop 1997; 4: 299.CrossRefGoogle ScholarPubMed 63Kuntz, G, Beil, D, Deininger, H et al. The dynamics of rapid sperm transport through the female genital tract: evidence from vaginal sonography of uterine peristalsis and hysterosalpingoscintigraphy. Hum Reprod 1996; 11: 627.CrossRefGoogle Scholar 64Leyendecker, G, Kuntz, G, Wildt, L et al. Uterine hyperperistalsis and dysperistalsis as dysfunctions of the mechanism of rapid sperm transport in patients with endometriosis and infertility. Hum Reprod 1996; 11: 1542.CrossRefGoogle ScholarPubMed 65Olive, DL, Franklin, RR, Gratkins, LV. Association between endometriosis and spontaneous abortions: a retrospective clinical study. J Reprod Med 1982; 27: 333.Google ScholarPubMed 66Naples, JD, Batt, RE, Sadigh, A. Spontaneous abortion rate in patients with endometriosis. Obstet Gynecol 1981; 57: 509.Google ScholarPubMed 67Wheeler, JM, Johnston, BM, Malinak, LR. The relationship of endometriosis to spontaneous abortion. Fertil Steril 1983; 39: 656.CrossRefGoogle ScholarPubMed 68Metzger, DA, Olive, DL, Stohs, GF et al. Association of endometriosis and spontaneous abortion: effect of control group selection. Fertil Steril 1986; 45: 18.CrossRefGoogle ScholarPubMed 69Pittaway, DE, Vernon, C, Fayez, JA. Spontaneous abortions in women with endometriosis. Fertil Steril 1988; 50: 711.CrossRefGoogle ScholarPubMed 70Pittaway, DE, Ellington, CP, Klimek, M. Preclinical abortions and endometriosis. Fertil Steril 1988a; 49: 221.CrossRefGoogle ScholarPubMed 71Startseva, NV. Clinico-immunological aspects in genital endometriosis. Akusherstvo J Ginekologiia (Moskva) 1980; 3: 23.Google Scholar 72Gleicher, N, Dmowski, WP, Seigel, I et al. Lymphocyte subsets in endometriosis. Obstet Gynecol 1984; 63: 463.Google ScholarPubMed 73Vigano, P, VeLrcelini, P, Di Blasio, AM. Deficient anti-endometrium lymphocyte-mediated cytotoxicity in women with endometriosis. Fertil Steril 1991; 56: 894.CrossRefGoogle Scholar 74Badawy, SZA, Cuenca, V, Kaufman, L et al. The regulation of immunologic production by B cells in patients with endometriosis. Fertil Steril 1989; 51: 770.CrossRefGoogle Scholar 75Dmowski, WP, Steele, RW, Baker, GF. Deficient cellular immunity in endometriosis. Am J Obstet Gynecol 1981; 141: 377.CrossRefGoogle ScholarPubMed 76Gilmore, SM, Aksel, S, Hoff, C, Peterson, RDA. In vitro lymphocyte activity in women with endometriosis – an altered immune response? Fertil Steril 1992; 58: 1148.CrossRefGoogle ScholarPubMed 77Steele, RW, Dmowski, WP, Manner, DJ. Immunologic aspects of human endometriosis. Am J Reprod Immunol 1984; 6: 33.CrossRefGoogle ScholarPubMed 78Oosterlynck, DJ, Cornillie, FJ, Waer, M et al. Women with endometriosis show a defect in natural killer activity resulting in a decreased cytotoxicity to autologous endometrium. Fertil Steril 1991; 56: 45.CrossRefGoogle Scholar 79Garzetti, GG, Ciavattini, A, Provinciali, M et al. Natural killer cell activity in endometriosis: correlation between serum estradiol levels and cytotoxicity. Obstet Gynecol 1993; 81: 665.Google ScholarPubMed 80Garzetti, GG, Ciavattini, A, Provinciali, M et al. Decrease in peripheral blood polymorphonuclear leukocyte chemotactic index in endometriosis: Role of prostaglandin E2 release. Obstet Gynecol 1998; 91: 25.CrossRefGoogle ScholarPubMed 81Oosterlynck, DJ, Meuleman, C, Waer, M, Koninckx, PR. CO2-laser excision of endometriosis does not improve the decreased natural killer activity. Acta Obstet Gynecol Scand 1994; 73: 333.CrossRefGoogle Scholar 82Mizumoto, Y. Changes in NK activities and TGF-beta concentrations in the peritoneal cavity in endometriosis and their interaction related to infertility. Acta Obstet Gynaecol Jpn 1996; 48: 379.Google ScholarPubMed 83Wang, HS, Kamazaki, H, Yoshida, M et al. Suppression of lymphocyte reactivity in vitro by supernatants of expiants of human endometrium. Am J Obstet Gynecol 1987; 157: 956.CrossRefGoogle Scholar 84Mathur, S, Peress, MR, Williamson, HO et al. Autoimmunity to endometrium and ovary in endometriosis. Clin Exp Immunol 1982; 50: 259.Google ScholarPubMed 85Wild, RA, Shivers, CA. Antiendometrial antibodies in patients with endometriosis. Am J Reprod Immunol Microbiol 1985; 8: 84.CrossRefGoogle ScholarPubMed 86Meek, SC, Hodge, DD, Musich, JR. Autoimmunity in infertile patients with endometriosis. Am J Obstet Gynecol 1988; 158: 1365.CrossRefGoogle ScholarPubMed 87Kreiner, D, Gromowitz, FB, Richardson, DA et al. Endometrial immunofluorescence associated with endometriosis and pelvic inflammatory disease. Fertil Steril 1986; 46: 243.CrossRefGoogle ScholarPubMed 88Wild, RA, Satyaswarop, PG, Shivers, AC. Epithelial localization of antiendometrial antibodies associated with endometriosis. Am J Reprod Immunol Microbiol 1987; 13: 62.CrossRefGoogle ScholarPubMed 89Switchenko, AC, Kauffman, RS, Becker, M. Are there antiendometrial antibodies in sera of women with endometriosis? Fertil Steril 1991; 56: 235.CrossRefGoogle ScholarPubMed 90Fernandez-Shaw, S, Kennedy, SH, Hicks, BR et al. Anti-endometrial antibodies in women measured by an enzyme-linked immunosorbent assay. Hum Reprod 1996; 11: 1180.CrossRefGoogle ScholarPubMed 91Gleicher, N, El-Roeiy, A, Cofino, E et al. Is endometriosis an autoimmune disease? Obstet Gynecol 1987 70: 115.Google ScholarPubMed 92Berkova, N, Lemay, A, De Granpre, P et al. Immunoblot detection of decreased antibodies to a haptoglobin-like protein in the serum of infertile women with or without endometriosis. Biol Reprod 1997; 57: 178.CrossRefGoogle ScholarPubMed 93Koumantakis, E, Matalliotakis, I, Neonaki, M et al. Soluble serum interleukin-2 receptor, interleukin-6 and interleukin-la in patients with endometriosis and in controls. Arch Gynecol Obstet 1994; 255: 107.CrossRefGoogle Scholar 94Abu-Musa, A, Takahashi, K, Kitao, M et al. Effect of serum from fertile and infertile patients with endometriosis on the development of mouse embryos. Acta Obstet Gynecol Scand 1996; 75: 605.CrossRefGoogle ScholarPubMed 95Miller, KA, Pittaway, DE, Deaton, JL. The effect of serum from infertile women with endometriosis on fertilization and early embryo development in a murine in vitro fertilization model. Fertil Steril 1995; 64: 623.CrossRefGoogle Scholar 96Haney, AF, Muscato, JJ, Weinberg, JB. Peritoneal fluid cell populations in infertility patients. Fertil Steril 1981; 35: 696.CrossRefGoogle ScholarPubMed 97Syrop, CH, Halme, J. Cyclic changes of peritoneal fluid parameters in normal and infertile patients. Obstet Gynecol 1987; 69: 416.Google ScholarPubMed 98Halme, J, Becker, S, Hammond, MG et al. Increased activation of pelvic macrophages in infertile women with endometriosis. Am J Obstet Gynecol 1983; 145: 333.CrossRefGoogle ScholarPubMed 99Badawy, SZA, Cuenca, V, Marshall, L et al. Cellular components in peritoneal fluid in infertile women with and without endometriosis. Fertil Steril 1984; 42: 704.CrossRefGoogle Scholar 100Olive, DL, Weinberg, JB, Haney, AF. Peritoneal macrophages and infertility: the association between cell number and pelvic pathology. Fertil Steril 1985a; 44: 772.CrossRefGoogle ScholarPubMed 101Jha, P, Farooq, A, Agarwal, N, Buchshee, K. In vitro sperm phagocytosis by human peritoneal macrophages in endometriosis-associated infertility. Am J Reprod Immunol 1996; 36: 235.CrossRefGoogle ScholarPubMed 102Haney, AF, Weinberg, JB. Reduction of the intraperitoneal inflammation associated with endometriosis by treatment with medroxyprogesterone acetate. Am J Obstet Gynecol 1988; 159: 450.CrossRefGoogle ScholarPubMed 103Olive, DL, Haney, AF, Weinberg, JB. The nature of the intraperitoneal exudate associated with infertility: Peritoneal fluid and serum lysozyme activity. Fertil Steril 1987; 48: 802.CrossRefGoogle ScholarPubMed 104Haney, AF, Jenkins, SJ, Weinberg, JB. The stimulus responsible for the peritoneal fluid inflammation observed in infertile women with endometriosis. Fertil Steril 1991; 56: 408.CrossRefGoogle ScholarPubMed 105Arumugam, K. Endometriosis and infertility: raised iron concentration in the peritoneal fluid and its effect on the acrosome reaction. Hum Reprod 1994; 9: 1153.CrossRefGoogle ScholarPubMed 106Fakih, H, Baggett, B, Holtz, G et al. Interleukin-1: a possible role in the infertility associated with endometriosis. Fertil Steril 1987; 47: 212.CrossRefGoogle ScholarPubMed 107Halme, J. Release of tumor necrosis factor-alpha by human peritoneal macrophages in vivo and in vitro. Am J Obstet Gynecol 1989; 61: 1718.CrossRefGoogle Scholar 108Weinberg, JB, Haney, AF, Xu, FJ, Ramakrishnan, S. Peritoneal fluid and plasma levels of human macrophage colony-stimulating factor in relation to peritoneal fluid macrophage content. Blood 1991; 78: 513.CrossRefGoogle ScholarPubMed 109Hill, JA, Anderson, DJ. Lymphocyte activity in the presence of peritoneal fluid from fertile women and infertile women with and without endometriosis. Am J Obstet Gynecol 1989; 161: 861.CrossRefGoogle ScholarPubMed 110Ho, N-H, Wu, M-Y, Chao, K-H et al. Decrease in interferon gamma production and impairment of T lymphocyte proliferation in peritoneal fluid of women with endometriosis. Am J Obstet Gynecol 1996; 175: 1236.CrossRefGoogle ScholarPubMed 111Koyama, N, Matsuura, K, Okamura, H. Cytokines in the peritoneal fluid of patients with endometriosis. Int J Gynaecol Obstet 1993; 43: 45.CrossRefGoogle ScholarPubMed 112Ueki, M, Tsurunaga, T, Ushiroyama, T, Ueda, M. Macrophage activation factors and cytokines in peritoneal fluid from patients with endometriosis. Asia-Oceania J Obstet Gynaecol 1994; 20: 427.CrossRefGoogle ScholarPubMed 113Punnonen, J, Teisala, K, Ranta, H et al. Increased levels of interleukin-6 and interleukin-10 in the peritoneal fluid of patients with endometriosis. Am J Obstet Gynecol 1996; 174: 1522.CrossRefGoogle ScholarPubMed 114Harada, T, Yoshioka, H, Yoshida, S et al. Increased interleukin-6 levels in the peritoneal fluid of infertile women with active endometriosis. Am J Obstet Gynecol 1997; 176: 593.CrossRefGoogle ScholarPubMed 115Ho, H-N, Wu, M-Y, Dhao, K-H et al. Peritoneal interleukin-10 increases with decrease in activated CD4+ T Lymphocytes in women with endometriosis. Hum Reprod 1997; 12: 2528.CrossRefGoogle ScholarPubMed 116Liang, XS, Hu, LN, Wu, P. Tumor necrosis factor in peritoneal fluid of infertile women with endometriosis and its relation to sperm motility. Chin J Obstet Gynecol 1994; 29: 524.Google ScholarPubMed 117Overton, C, Fernandez-Shaw, S, Hicks, S et al. Peritoneal fluid cytokines and the relationship with endometriosis and pain. Hum Reprod 1996; 11: 380.CrossRefGoogle ScholarPubMed 118Fukaya, T, Sugawara, J, Yoshida, H, Yajima, A. The role of colony stimulating factor in the peritoneal fluid in infertile patients with endometriosis. Tohoku J Exp Med 1994; 172: 221.CrossRefGoogle ScholarPubMed 119Kligman, I, Grifo, JA, Witkin, SS. Expression of the heat shock protein in peritoneal fluids from women with endometriosis: Implications for endometriosis-associated infertility. Hum Reprod 1996; 11: 2736.CrossRefGoogle ScholarPubMed 120McLaren, J, Prentice, A, Charnock-Jones, DS et al. Vascular endothelial growth factor (VEGF) concentrations are elevated in peritoneal fluid of women with endometriosis. Hum Reprod 1996; 11: 220.CrossRefGoogle ScholarPubMed 121Halme, J, White, C, Kauma, S et al. Peritoneal macrophages from patients with endometriosis release growth factor activity in vitro. J Clin Endocrinol Metab 1988; 66: 1044.CrossRefGoogle ScholarPubMed 122Kucera, E, Presl, J, Uher, J, Drobink, J. Glycosaminoglycans in the peritoneal fluid of infertile women with endometriosis. Ceska Gynekol 1994; 59: 59.Google ScholarPubMed 123Arumugam, K, Dip, KC. Endometriosis and infertility: the role of exogenous lipid peroxides in the peritoneal fluid. Fertil Steril 1995; 63: 198.CrossRefGoogle ScholarPubMed 124Kauma, S, Clark, MR, White, C, Halme, J. Production of fibronectin by peritoneal macrophages and concentration of fibronectin in peritoneal fluid form patients with or without endometriosis. Obstet Gynecol 1988; 72: 13.Google ScholarPubMed 125Vercellini, P, De Benedetti, F, Rossi, E et al. Tumor necrosis factor in plasma and peritoneal fluid of women with and without endometriosis. Gynecol Obstet Invest 1993; 36: 39.CrossRefGoogle ScholarPubMed 126Haney, AF, Misukonis, MA, Weinberg, JB. Macrophages and infertility: oviductal macrophages as potential mediators of infertility. Ferfil Steril 1983; 39: 310.CrossRefGoogle ScholarPubMed 127Muscato, JJ, Haney, AF, Weinberg, JB. Sperm phagocytosis by human peritoneal macrophages: A possible cause of infertility in endometriosis. Am J Obstet Gynecol 1982; 144: 503.CrossRefGoogle ScholarPubMed 128Oak, MK, Chantler, EN, Vaughan-Williams, CA, Elstein, M. Sperm survival studies in peritoneal fluid from infertile women with endometriosis and unexplained infertility. Clin Reprod Fertil 1985; 3: 297.Google ScholarPubMed 129Burke, RK. Effect of peritoneal washings from women with endometriosis on sperm velocity. J Reprod Med 1987; 32: 743.Google ScholarPubMed 130Soldati, G, Piffaretti-Yanez, A, Campana, A et al. Effect of peritoneal fluid on sperm motility and velocity distribution using objective measurements. Fertil Steril 1989; 52: 113.CrossRefGoogle ScholarPubMed 131Zullo, F, Corea, D, Torano, P et al. Sperm-peritoneal fluid incubation test: influence of a GnRH agonist treatment. Acta Eur Fertil 1994; 25: 291.Google ScholarPubMed 132Aeby, TC, Huang, T, Nakayama, RT. The effect of peritoneal fluid from patients with endometriosis on human sperm function in vitro. Am J Obstet Gynecol 1996; 174: 1779.CrossRefGoogle ScholarPubMed 133Oral, E, Arici, A, Olive, DL, Huszar, G. Peritoneal fluid from women with moderate or severe endometriosis inhibits sperm motility: The role of seminal fluid components. Fertil Steril 1996; 66: 787.CrossRefGoogle ScholarPubMed 134Tasdemir, M, Tasdemir, I, Kodama, H, Tanaka, T. Effect of peritoneal fluid from infertile women with endometriosis on ionophore-stimulated acrosome loss. Hum Reprod 1995; 10: 2419.CrossRefGoogle ScholarPubMed 135Chacho, KJ, Stronkowski-Chacho, M, Andressen, PJ, Scommegna, A. Peritoneal fluid in patients with and without endometriosis: prostanoids and macrophages and their effect on the spermatozoa penetration assay. Am J Obstet Gynecol 1986; 154: 1290.CrossRefGoogle ScholarPubMed 136Sueldo, CE, Lambert, H, Steinleitner, A et al. The effect of peritoneal fluid from patients with endometriosis on murine sperm-oocyte interaction. Fertil Steril 1987; 48: 697.CrossRefGoogle ScholarPubMed 137Morcos, RN, Gibbons, WE, Findley, WE. Effect of peritoneal fluid on in vitro cleavage of 2-cell mouse embryos: a possible role in infertility associated with endometriosis. Fertil Steril 1985; 44: 678.CrossRefGoogle ScholarPubMed 138Prough, SG, Aksel, S, Gilmore, SM, Yeoman, RR. Peritoneal fluid fractions from patients with endometriosis do not promote two-cell mouse embryo growth. Fertil Steril 1990; 54: 927.CrossRefGoogle Scholar 139Buttram, VC Jr, Belue, JB, Reiter, R. Interim report of a study of danazol for the treatment of endometriosis. Fertil Steril 1982; 37: 478.CrossRefGoogle ScholarPubMed 140Hull, ME, Moghissi, KS, Magyar, DF et al. Comparison of different treatment modalities of endometriosis in infertile women. Fertil Steril 1987; 47: 40.CrossRefGoogle ScholarPubMed 141Fedele, L, Parazzini, F, Radici, E et al. Buserelin acetate versus expectant management in the treatment of infertility associated with minimal or mild endometriosis: a randomized clinical trial. Am J Obstet Gynecol 1992; 166: 1345.CrossRefGoogle ScholarPubMed 142Thomas, EJ, Cooke, ID. Impact of gestrinone on the course of asymptomatic endometriosis. Br Med J 1987; 294: 272.CrossRefGoogle ScholarPubMed 143Candiani, GB, Vercellini, P, Fedele, L et al. Medical treatment of mild endometriosis in infertile women: analysis of a failure. Hum Reprod 1990; 5: 901.CrossRefGoogle ScholarPubMed 144Marcoux, S, Maheux, R, Berube, S and the Canadian Collaborative Group on Endometriosis. Laparoscopic surgery in infertile women with minimal or mild endometriosis. N Engl J Med 1997; 337: 217.CrossRefGoogle ScholarPubMed 145Acosta, AA, Buttram, VC Jr, Besch, PK et al. A proposed classification of pelvic endometriosis. Obstet Gynecol 1973; 42: 19.Google ScholarPubMed 146Hammond, CB, Rock, JA, Parker, RT. Conservative treatment of endometriosis: the effects of limited surgery and hormonal pseudopregnancy. Fertil Steril 1976; 27: 756.CrossRefGoogle ScholarPubMed 147Schenken, RS, Malinak, LR. Reoperation after initial treatment of endometriosis with conservative surgery. Am J Obstet Gynecol 1978; 131: 416.CrossRefGoogle ScholarPubMed 148Buttram, VC Jr. Conservative surgery for endometriosis in the infertile female: a study of 206 patients with implications for both medical and surgical therapy. Fertil Steril 1979; 31: 117.CrossRefGoogle ScholarPubMed 149Rantala, ML, Kahanpaa, KV, Koskimies, AI et al. Fertility prognosis after surgical treatment of pelvic endometriosis. Acta Obstet Gynecol Scand 1983; 62: 11.CrossRefGoogle ScholarPubMed 150Gordts, S, Woeckx, W, Brosens, IA. Microsurgery of endometriosis in infertile patients. Fertil Steril 1984; 42: 520.CrossRefGoogle ScholarPubMed 151Rock, JA, Guzick, DS, Sengol, C et al. The conservative surgical treatment of endometriosis: Evaluation of pregnancy success with respect to the extent of disease as categorized using contemporary classification system. Fertil Steril 1981; 35: 131.CrossRefGoogle Scholar 152Olive, DL, Lee, KL. Analysis of sequential treatment protocols for endometriosis associated infertility. Am J Obstet Gynecol 1986; 154: 613.CrossRefGoogle ScholarPubMed 153Olive, DL, Martin, DC. Treatment of endometriosis-associated infertility with CO2 laser laparoscopy: The use of one- and two-parameter exponential models. Fertil Steril 1987; 48: 18.CrossRefGoogle ScholarPubMed 154Nezhat, C, Crowgey, R, Nezhat, F. Videolaseroscopy for the treatment of endometriosis associated with infertility. Fertil Steril 1989; 51: 237.CrossRefGoogle ScholarPubMed 155Adamson, GD, Hurd, SJ, Pasta, DJ, Rodriguez, BD. Laparoscopic endometriosis treatment: is it better? Fertil Steril 1993; 59: 35.CrossRefGoogle ScholarPubMed 156Oehninger, S, Acosta, , Kreiner, D et al. In vitro fertilization and embryo transfer (IVF/ET): an established and successful therapy for endometriosis. J In Vitro Fertil Embryo Trans 1988; 5: 249.CrossRefGoogle ScholarPubMed 157Yovich, JL, Matson, PL. The influence of infertility etiology on the outcome of IVF-ET and GIFT treatments. Int J Fertil 1990; 35: 26.Google ScholarPubMed 158Inoue, M, Kobayashi, Y, Honda, I et al. The impact of endometriosis on the reproductive outcome of infertile patients. Am J Obstet Gynecol 1992; 167: 278.CrossRefGoogle ScholarPubMed 159Simon, C, Gutierrez, A, Vidal, A et al. Outcome of patients with endometriosis in assisted reproduction: results from in vitro fertilization and oocyte donation. Hum Reprod 1994; 9: 725.CrossRefGoogle ScholarPubMed 160Olivennes, F, Feldberg, D, Liu, HC et al. Endometriosis: a stage by stage analysis-the role of in vitro fertilization. Fertil Steril 1995; 64: 392.CrossRefGoogle ScholarPubMed 161Dmowski, WP, Rana, N, Michalowska, J et al. The effect of endometriosis, its stage and activity, and of autoantibodies on in vitro fertilization and embryo transfer success rates. Fertil Steril 1995; 63: 555.CrossRefGoogle ScholarPubMed - 4 - Cited by Cited by Crossref Citations Brosens, Ivo A. Gordts, Stephan Campo, Rudi and Rombauts, Luk 2000. Peritoneal Surgery. p. 275. Norenstedt, Sophie Naffah Linderoth-Nagy, Christina Bergendal, Annica Sjöblom, Peter and Bergqvist, Agneta 2001. Reduced Developmental Potential in Oocytes from Women with Endometriosis. Journal of Assisted Reproduction and Genetics, Vol. 18, Issue. 12, p. 644. Brosens, Ivo Campo, Rudi and Gordts, Stephan 2002. Reproductive disorders affecting fertility in endometriosis. Reproductive BioMedicine Online, Vol. 4, Issue. , p. 59. 2004. Endometriosis in Clinical Practice. p. 30.

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