Epigenetics in the etiology and management of infertility

被引:0
作者
Tajudeen Olanrewaju Yahaya [1 ]
Danlami M Bashar [2 ]
Esther O Oladele [3 ]
Ja'afar Umar [1 ]
Daniel Anyebe [4 ]
Abdulrazaq Izuafa [1 ]
机构
[1] Department of Biological Sciences, Federal University Birnin Kebbi  2. Department of Microbiology, Federal University Birnin Kebbi
[2] Biology Unit, Distance Learning Institute, University of Lagos
[3] Department of Biochemistry and Molecular Biology, Federal University Birnin Kebbi
关键词
DNA methylation; Gametogenesis; Infertility; Polycystic ovary syndrome; Oligozoospermia; Teratozoospermia;
D O I
暂无
中图分类号
R711.6 [不育症];
学科分类号
100211 ;
摘要
BACKGROUND Epigenetic disruptions have been implicated in some cases of infertility and can serve as therapeutic targets. However, the involvement of epigenetics in infertility has not received adequate attention.AIM This study aimed to determine the epigenetic basis of infertility in order to enhance public knowledge.METHODS Relevant articles on the subject were collected from PubMed, RCA, Google Scholar, Springer Link, and Scopus. The articles were pooled together and duplicates were removed using Endnote software.RESULTS Available information shows that epigenetic mechanisms, mainly DNA methylation, histone modification, and microRNA interference are necessary for normal gametogenesis and embryogenesis. As a result, epigenetic disruptions in genes that control gametogenesis and embryogenesis, such as DDX3X, ADH4, AZF, PLAG1, D1RAS3, CYGB, MEST, JMJD1A, KCNQ1, IGF2, H19, and MTHFR may result in infertility. Aberrant DNA methylation during genomic imprinting and parental epigenetic mark erasures, in particular, may affect the DNA epigenomes of sperm and oocytes, resulting in reproductive abnormalities.Histone epigenetic dysregulation during oocyte development and histone-protamine replacement in the sperm may also cause reproductive abnormalities. Furthermore, overexpression or repression of certain micro RNAs embedded in the ovary, testis, embryo, as well as granulosa cells and oocytes may impair reproduction. Male infertility is characterized by spermatogenesis failure, which includes oligozoospermia, asthenozoospermia, and teratozoospermia, while female infertility is characterized by polycystic ovary syndrome. Some epigenetic modifications can be reversed by deactivating the regulatory enzymes, implying that epigenetic reprogramming could help treat infertility in some cases. For some disorders, epigenetic drugs are available, but none have been formulated for infertility.CONCLUSION Some cases of infertility have an epigenetic etiology and can be treated by reversing the same epigenetic mechanism that caused it. As a result, medical practitioners are urged to come up with epigenetic treatments for infertility that have an epigenetic cause.
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页码:7 / 21
页数:15
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