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Establishment of an oligoasthenospermia mouse model based on TAp73 gene suppression

BACKGROUND: Oligoasthenospermia is one of the main causes of male infertility. Researchers usually use chemical drugs to directly damage germ cells to prepare oligoasthenospermia models, which disregards the adhesion and migration between spermatogenic cells and Sertoli cells. TAp73 is a critical re...

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Autores principales: Liu, Hong‐Juan, Deng, Meng‐Yun, Zhu, Yan‐Yan, Wu, De‐Ling, Tong, Xiao‐Hui, Li, Li, Wang, Lei, Xu, Fei, Wang, Tong‐Sheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8690982/
https://www.ncbi.nlm.nih.gov/pubmed/34977486
http://dx.doi.org/10.1002/ame2.12186
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author Liu, Hong‐Juan
Deng, Meng‐Yun
Zhu, Yan‐Yan
Wu, De‐Ling
Tong, Xiao‐Hui
Li, Li
Wang, Lei
Xu, Fei
Wang, Tong‐Sheng
author_facet Liu, Hong‐Juan
Deng, Meng‐Yun
Zhu, Yan‐Yan
Wu, De‐Ling
Tong, Xiao‐Hui
Li, Li
Wang, Lei
Xu, Fei
Wang, Tong‐Sheng
author_sort Liu, Hong‐Juan
collection PubMed
description BACKGROUND: Oligoasthenospermia is one of the main causes of male infertility. Researchers usually use chemical drugs to directly damage germ cells to prepare oligoasthenospermia models, which disregards the adhesion and migration between spermatogenic cells and Sertoli cells. TAp73 is a critical regulator of the adhesin of germ cell; thus, we sought to explore a novel oligoasthenospermia model based on TAp73 gene suppression. METHODS: Mice in the Pifithrin‐α group were injected intraperitoneally with 2.5 mg/kg Pifithrin‐α (TAp73 inhibitor) daily for 30 consecutive days. Reproductive hormone levels and epididymal sperm quality, as well as the network morphology of Sertoli cells were tested. RESULTS: Sperm density, motility, and the relative protein and mRNA expression of TAp73 and Nectin 2 were obviously decreased in the Pifithrin‐α group compared with the normal control group. No significant distinction was observed in the relative mRNA and protein expression of ZO‐1. Furthermore, the tight junctions (TJs) and apical ectoplasmic specialization (ES) were destroyed in the Pifithrin‐α group. CONCLUSION: The above results indicate that we successfully established a new oligoasthenospermia mouse model. This study provides a foundation for further exploration of the roles of TAp73 genes during spermatogenesis and provides new research objects for further oligospermia research and future drug discovery.
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spelling pubmed-86909822021-12-30 Establishment of an oligoasthenospermia mouse model based on TAp73 gene suppression Liu, Hong‐Juan Deng, Meng‐Yun Zhu, Yan‐Yan Wu, De‐Ling Tong, Xiao‐Hui Li, Li Wang, Lei Xu, Fei Wang, Tong‐Sheng Animal Model Exp Med Regular Articles BACKGROUND: Oligoasthenospermia is one of the main causes of male infertility. Researchers usually use chemical drugs to directly damage germ cells to prepare oligoasthenospermia models, which disregards the adhesion and migration between spermatogenic cells and Sertoli cells. TAp73 is a critical regulator of the adhesin of germ cell; thus, we sought to explore a novel oligoasthenospermia model based on TAp73 gene suppression. METHODS: Mice in the Pifithrin‐α group were injected intraperitoneally with 2.5 mg/kg Pifithrin‐α (TAp73 inhibitor) daily for 30 consecutive days. Reproductive hormone levels and epididymal sperm quality, as well as the network morphology of Sertoli cells were tested. RESULTS: Sperm density, motility, and the relative protein and mRNA expression of TAp73 and Nectin 2 were obviously decreased in the Pifithrin‐α group compared with the normal control group. No significant distinction was observed in the relative mRNA and protein expression of ZO‐1. Furthermore, the tight junctions (TJs) and apical ectoplasmic specialization (ES) were destroyed in the Pifithrin‐α group. CONCLUSION: The above results indicate that we successfully established a new oligoasthenospermia mouse model. This study provides a foundation for further exploration of the roles of TAp73 genes during spermatogenesis and provides new research objects for further oligospermia research and future drug discovery. John Wiley and Sons Inc. 2021-11-09 /pmc/articles/PMC8690982/ /pubmed/34977486 http://dx.doi.org/10.1002/ame2.12186 Text en © 2021 The Authors. Animal Models and Experimental Medicine published by John Wiley & Sons Australia, Ltd on behalf of The Chinese Association for Laboratory Animal Sciences https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Regular Articles
Liu, Hong‐Juan
Deng, Meng‐Yun
Zhu, Yan‐Yan
Wu, De‐Ling
Tong, Xiao‐Hui
Li, Li
Wang, Lei
Xu, Fei
Wang, Tong‐Sheng
Establishment of an oligoasthenospermia mouse model based on TAp73 gene suppression
title Establishment of an oligoasthenospermia mouse model based on TAp73 gene suppression
title_full Establishment of an oligoasthenospermia mouse model based on TAp73 gene suppression
title_fullStr Establishment of an oligoasthenospermia mouse model based on TAp73 gene suppression
title_full_unstemmed Establishment of an oligoasthenospermia mouse model based on TAp73 gene suppression
title_short Establishment of an oligoasthenospermia mouse model based on TAp73 gene suppression
title_sort establishment of an oligoasthenospermia mouse model based on tap73 gene suppression
topic Regular Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8690982/
https://www.ncbi.nlm.nih.gov/pubmed/34977486
http://dx.doi.org/10.1002/ame2.12186
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