| Literature DB >> 34494235 |
Dayane Priscila Dos Santos1,2, Diogo Farias Ribeiro3, Giovanna Fachetti Frigoli1, Rafaela Pires Erthal1,2, Suellen Ribeiro da Silva Scarton1,2, Glaucia Eloísa Munhoz de Lion Siervo1,2, Fábio Rodrigues Ferreira Seiva4, Larissa Staurengo-Ferrari2, Waldiceu Aparecido Verri2, Rafael Deminice3, Glaura Scantamburlo Alves Fernandes5.
Abstract
The hyperhomocysteinemia (HHcy) is toxic to the cells and associated with several diseases. Clinical studies have shown changes in plasma concentrations of Hcy after physical exercise. This study aimed to assess the effect of HHcy on testis, epididymis and sperm quality and to investigate whether voluntary exercise training protects this system against damage caused by HHcy in Swiss mice. In this study, 48 mice were randomly distributed in the control, HHcy, physical exercise, and HHcy combined with physical exercise groups. HHcy was induced by daily administration of dl-homocysteine thiolactone via gavage throughout the experimental period. Physical exercise was performed through voluntary running on the exercise wheels. The plasma concentrations of homocysteine (Hcy) and testosterone were determined. The testes and epididymis were used to assess the sperm count, histopathology, lipoperoxidation, cytokine levels, testicular cholesterol, myeloperoxidase, and catalase activity. Spermatozoa were analyzed for morphology, acrosome integrity, mitochondrial activity, and motility. In the testes, HHcy increased the number of abnormal seminiferous tubules, reduced the tubular diameter and the height of the germinal epithelium. In the epididymis, there was tissue remodeling in the head region. Ultimately, voluntary physical exercise training reduced plasma Hcy concentration but did not attenuate HHcy-induced testicular and epididymal disturbances.Entities:
Keywords: Epididymis; Homocysteine; Reproduction; Sperm; Testis; Voluntary physical exercise
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Year: 2021 PMID: 34494235 DOI: 10.1007/s43032-021-00704-1
Source DB: PubMed Journal: Reprod Sci ISSN: 1933-7191 Impact factor: 3.060