Please use this identifier to cite or link to this item: https://dspace.vblibrarynetwork.in:443/xmlui/handle/123456789/338
Title: Endocrine disruption and female reproductive health: Implications on cross-talk between endocrine and autocrine/paracrine axes in the ovary
Other Titles: Journal of Reproductive Health and Medicine
Authors: Biswas, Subhasri
Mukherjee, Urmi
Maitra, Sudipta
Keywords: Endocrine disruption Gonadal steroids Insulin-like growth factors and epidermal growth factor Redox balance and follicular apoptosis Infertility
Issue Date: 10-Nov-2020
Publisher: Elsevier
Citation: Biswas S, Mukherjee U, Maitra S. Endocrine disruption and female reproductive health: Implications on cross-talk between endocrine and autocrine/paracrine axes in the ovary. J Reprod Healthc Med 2020;1:2.
Series/Report no.: Volume;X
Issue No.;x
Abstract: Female reproduction is a blend of neuroendocrine, endocrine, and autocrine/paracrine factors that maintain the appropriate ovarian micro-environment. The growing urbanization prompted exposure to a myriad of environmental toxins carrying the ability to interfere with reproductive processes governed by endogenous hormones, making reproductive health a major global concern. These environmental anthropogenic contaminants, popularly termed as endocrine-disrupting chemicals (EDCs), can disrupt the ovarian homeostasis leading to serious perturbations, namely, anovulation, infertility, estrogen deficiency, and premature ovarian failure. Although gonadotropin action, biosynthesis of gonadal steroids vis-à-vis growth factors comprise the essential modulators within the ovary, the redox balance along with inflammatory and cell death response can dramatically influence the framework of ovarian dynamics; however, details of which remain relatively less understood. The present overview provides an update on candidates (endocrines and autocrine/paracrine) of oogenesis, and the potential impact of EDCs on diverse intra-ovarian entities including but not limited to gonadotropin action, steroidogenic potential, expression of growth factors, and modulation of maturational competence. Moreover, the relative importance of free radical-induced stress, inflammation, and elevated cell death (follicular atresia), in the regulation of ovarian functions and how these intricate yet conjoined mechanisms may alter the reproductive performance of a female will be an issue of discussion.
Description: Journal Home page: https://jrhm.org/ DOI:10.25259/JRHM_11_2020
URI: https://vbudspace.lsdiscovery.in/xmlui/handle/123456789/338
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