Proteomic analysis of endometrium from fertile and infertile patients suggests a role for apolipoprotein A-I in embryo implantation failure and endometriosis

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Proteomic analysis identified apolipoprotein A-I as a discriminatory protein in infertile endometria, with its dysregulation in endometriosis potentially contributing to implantation failure.

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The study performed proteomic analysis of endometrial tissue from fertile and infertile patients to identify protein differences associated with embryo implantation outcomes. It reports altered patterns involving apolipoprotein A-I, suggesting this protein may be involved in embryo implantation failure and also in endometriosis-related biology as observed in their dataset. The authors’ conclusions are limited by the correlational nature of endometrial protein profiling between groups rather than direct mechanistic testing. This paper is centrally about endometriosis — it proposes apolipoprotein A-I changes in the endometrium as part of mechanisms linking implantation failure and endometriosis.

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Abstract

Pregnancy is dependent upon the endometrium acquiring a receptive phenotype that facilitates apposition, adhesion and invasion of a developmentally competent embryo. Surface-enhanced laser desorption/ionization time-of-flight mass spectrometry of mid-secretory endometrial biopsies revealed a 28 kDa protein peak that discriminated highly between samples obtained from women with recurrent implantation failure and fertile controls. Subsequent tandem mass spectroscopy unambiguously identified this peak as apolipoprotein A-I (apoA-I), a potent anti-inflammatory molecule. Total endometrial apoA-I levels were, however, comparable between the study and control group. Moreover, endometrial apoA-I mRNA expression was not cycle-dependent although there was partial loss of apoA-I immunoreactivity in luminal and glandular epithelium in mid-secretory compared with proliferative endometrial samples. Because of its putative anti-implantation properties, we examined whether endometrial apoA-I expression is regulated by embryonic signals. Human chorionic gonadotrophin (hCG) strongly inhibited apoA-I expression in differentiating explant cultures but not when established from eutopic endometrium from patients with endometriosis. Pelvic endometriosis was associated with elevated apoA-I mRNA levels, increased secretion by differentiating eutopic endometrial explant cultures and lack of hCG-dependent down-regulation. To corroborate these observations, we examined endometrial apoA-I expression and its regulation by hCG in a non-human primate model of endometriosis. As in humans, hCG strongly inhibited endometrial apoA-I mRNA expression in disease-free baboons, but this response was entirely lost upon induction of pelvic endometriosis. Together, these observations indicate that perturbations in endometrial apoA-I expression, modification or regulation by paracrine embryonic signals play a major role in implantation failure and infertility.
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MLA Brosens, J. J, et al. Proteomic Analysis of Endometrium From Fertile and Infertile Patients Suggests a Role for Apolipoprotein A-i In Embryo Implantation Failure and Endometriosis. 2010. https://doi.org/10.17615/a3ra-g184 APA Brosens, J., Hodgetts, A., Feroze Zaidi, F., Sherwin, J., Fusi, L., Salker, M., Higham, J., Rose, G., Kajihara, T., Young, S., Lessey, B., Henriet, P., Langford, P., & Fazleabas, A. (2010). Proteomic analysis of endometrium from fertile and infertile patients suggests a role for apolipoprotein A-I in embryo implantation failure and endometriosis. https://doi.org/10.17615/a3ra-g184 Chicago Brosens, J. J., A Hodgetts, F Feroze Zaidi, J. R. A Sherwin, L Fusi, M. S Salker, J Higham et al. 2010. Proteomic Analysis of Endometrium From Fertile and Infertile Patients Suggests a Role for Apolipoprotein A-I In Embryo Implantation Failure and Endometriosis. https://doi.org/10.17615/a3ra-g184

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endometriosisinfertility

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