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PMID: 37146914 Published · ppublish English Review Journal Article

Oxidative stress-induced apoptosis and autophagy: Balancing the contrary forces in spermatogenesis.

Biochimica et biophysica acta. Molecular basis of disease ·Vol. 1869 ·No. 6 ·2023-00-00 ·Pages 166742

Sharma P, Kaushal N, Saleth LR, Ghavami S, Dhingra S, Kaur P

Abstract

Spermatogenesis is a complex process in the testis and is a cornerstone of male infertility. The abundance of unsaturated fatty acid and high cell division rate make male germs cells prone to DNA deterioration. ROS-mediated oxidative stress triggers DNA damage, autophagy, and apoptosis in male germ cells, which are critical causative factors that lead to male infertility. The complex connection and molecular crosstalk between apoptosis and autophagy is seen at multifaceted levels that interconnect the signaling pathways of these two processes. Multilevel interaction between apoptosis and autophagy is a seamless state of survival and death in response to various stressors. Interaction between multiple genes and proteins such as the mTor signaling pathway, Atg12 proteins, and the death adapter proteins, such as Beclin 1, p53, and Bcl-2 family proteins, validates such a link between these two phenomena. Testicular cells being epigenetically different from somatic cells, undergo numerous significant epigenetic transitions, and ROS modulates the epigenetic framework of mature sperm. Epigenetic deregulation of apoptosis and autophagy under oxidative stress conditions can cause sperm cell damage. The current review recapitulates the current role of prevailing stressors that generate oxidative stress leading to the induction of apoptosis and autophagy in the male reproductive system. Considering the pathophysiological consequences of ROS-mediated apoptosis and autophagy, a combinatorial approach, including apoptosis inhibition and autophagy activation, should be implemented as a therapeutic strategy to treat male idiopathic infertility. Understanding the crosslink between apoptosis and autophagy under stress conditions in male germ cells may play an essential role in developing therapeutic strategies to treat infertility.

Keywords
Apoptosis Autophagy Infertility Oxidative stress Spermatogenesis
MeSH Terms
Male Humans Reactive Oxygen Species Semen Spermatogenesis/physiology Apoptosis Oxidative Stress Autophagy Infertility, Male/genetics
Chemicals
Reactive Oxygen Species
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Sharma Parul
Department of Biotechnology Engineering, Chandigarh University, Gharuan, Punjab 140413, India.
Kaushal Naveen
Department of Biophysics, Panjab University, Chandigarh 160014, India.
Saleth Leena Regi
Institute of Cardiovascular Sciences, St. Boniface Hospital Albrechtsen Research Centre, Department of Physiology and Pathophysiology, Max Rady College of Medicine, Rady Faculty of Health Sciences, University of Manitoba, Winnipeg, Manitoba R2H 2A6, Canada.
Ghavami Saeid
Department of Human Anatomy and Cell Science, Rady Faculty of Health Sciences, Max Rady College of Medicine, University of Manitoba, Winnipeg, Manitoba, Canada; Research Institute of Hematology and Oncology, Cancer Care Manitoba, Winnipeg, MB R3E 0V9, Canada; Faculty of Medicine in Zabrze, University of Technology in Katowice, Academia of Silesia, 41-800 Zabrze, Poland.
Dhingra Sanjiv
Institute of Cardiovascular Sciences, St. Boniface Hospital Albrechtsen Research Centre, Department of Physiology and Pathophysiology, Max Rady College of Medicine, Rady Faculty of Health Sciences, University of Manitoba, Winnipeg, Manitoba R2H 2A6, Canada.
Kaur Parminder
Department of Biotechnology, University Institute of Engineering & Technology, Panjab University, Chandigarh 160024, India. Electronic address: [email protected].
Conflict of Interest

Declaration of competing interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.

Article Info
Journal
Biochimica et biophysica acta. Molecular basis of disease
Abbr.
Biochim Biophys Acta Mol Basis Dis
ISSN
1879-260X
Published
2023-00-00
Epub
2023-00-03
Pages
166742
Language
English
Region
Netherlands
NLM ID
101731730
Subset
IM
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