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Grape Seed Procyanidin B2 Protects Porcine Ovarian Granulosa Cells against Oxidative Stress-Induced Apoptosis by Upregulating let-7a Expression

Oxidative stress is a causal factor and key promoter of all kinds of reproductive disorders related to granulosa cell (GC) apoptosis that acts by dysregulating the expression of related genes. Various studies have suggested that grape seed procyanidin B2 (GSPB2) may protect GCs from oxidative injury...

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Autores principales: Zhang, Jia-Qing, Wang, Xian-Wei, Chen, Jun-Feng, Ren, Qiao-Ling, Wang, Jing, Gao, Bin-Wen, Shi, Zhi-Hai, Zhang, Zi-Jing, Bai, Xian-Xiao, Xing, Bao-Song
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6885843/
https://www.ncbi.nlm.nih.gov/pubmed/31827667
http://dx.doi.org/10.1155/2019/1076512
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author Zhang, Jia-Qing
Wang, Xian-Wei
Chen, Jun-Feng
Ren, Qiao-Ling
Wang, Jing
Gao, Bin-Wen
Shi, Zhi-Hai
Zhang, Zi-Jing
Bai, Xian-Xiao
Xing, Bao-Song
author_facet Zhang, Jia-Qing
Wang, Xian-Wei
Chen, Jun-Feng
Ren, Qiao-Ling
Wang, Jing
Gao, Bin-Wen
Shi, Zhi-Hai
Zhang, Zi-Jing
Bai, Xian-Xiao
Xing, Bao-Song
author_sort Zhang, Jia-Qing
collection PubMed
description Oxidative stress is a causal factor and key promoter of all kinds of reproductive disorders related to granulosa cell (GC) apoptosis that acts by dysregulating the expression of related genes. Various studies have suggested that grape seed procyanidin B2 (GSPB2) may protect GCs from oxidative injury, though the underlying mechanisms are not fully understood. Therefore, whether the beneficial effects of GSPB2 are associated with microRNAs, which have been suggested to play a critical role in GC apoptosis by regulating the expression of protein-coding genes, was investigated in this study. The results showed that GSPB2 treatment protected GCs from a H(2)O(2)-induced apoptosis, as detected by an MTT assay and TUNEL staining, and increased let-7a expression in GCs. Furthermore, let-7a overexpression markedly increased cell viability and inhibited H(2)O(2)-induced GC apoptosis. Furthermore, the overexpression of let-7a reduced the upregulation of Fas expression in H(2)O(2)-treated GCs at the mRNA and protein levels. Dual-luciferase reporter assay results indicated that let-7a directly targets the Fas 3′-UTR. Furthermore, the overexpression of let-7a enhanced the protective effects of GSPB2 against GC apoptosis induced by H(2)O(2). These results indicate that GSPB2 inhibits H(2)O(2)-induced apoptosis of GCs, possibly through the upregulation of let-7a.
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spelling pubmed-68858432019-12-11 Grape Seed Procyanidin B2 Protects Porcine Ovarian Granulosa Cells against Oxidative Stress-Induced Apoptosis by Upregulating let-7a Expression Zhang, Jia-Qing Wang, Xian-Wei Chen, Jun-Feng Ren, Qiao-Ling Wang, Jing Gao, Bin-Wen Shi, Zhi-Hai Zhang, Zi-Jing Bai, Xian-Xiao Xing, Bao-Song Oxid Med Cell Longev Research Article Oxidative stress is a causal factor and key promoter of all kinds of reproductive disorders related to granulosa cell (GC) apoptosis that acts by dysregulating the expression of related genes. Various studies have suggested that grape seed procyanidin B2 (GSPB2) may protect GCs from oxidative injury, though the underlying mechanisms are not fully understood. Therefore, whether the beneficial effects of GSPB2 are associated with microRNAs, which have been suggested to play a critical role in GC apoptosis by regulating the expression of protein-coding genes, was investigated in this study. The results showed that GSPB2 treatment protected GCs from a H(2)O(2)-induced apoptosis, as detected by an MTT assay and TUNEL staining, and increased let-7a expression in GCs. Furthermore, let-7a overexpression markedly increased cell viability and inhibited H(2)O(2)-induced GC apoptosis. Furthermore, the overexpression of let-7a reduced the upregulation of Fas expression in H(2)O(2)-treated GCs at the mRNA and protein levels. Dual-luciferase reporter assay results indicated that let-7a directly targets the Fas 3′-UTR. Furthermore, the overexpression of let-7a enhanced the protective effects of GSPB2 against GC apoptosis induced by H(2)O(2). These results indicate that GSPB2 inhibits H(2)O(2)-induced apoptosis of GCs, possibly through the upregulation of let-7a. Hindawi 2019-11-19 /pmc/articles/PMC6885843/ /pubmed/31827667 http://dx.doi.org/10.1155/2019/1076512 Text en Copyright © 2019 Jia-Qing Zhang et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Zhang, Jia-Qing
Wang, Xian-Wei
Chen, Jun-Feng
Ren, Qiao-Ling
Wang, Jing
Gao, Bin-Wen
Shi, Zhi-Hai
Zhang, Zi-Jing
Bai, Xian-Xiao
Xing, Bao-Song
Grape Seed Procyanidin B2 Protects Porcine Ovarian Granulosa Cells against Oxidative Stress-Induced Apoptosis by Upregulating let-7a Expression
title Grape Seed Procyanidin B2 Protects Porcine Ovarian Granulosa Cells against Oxidative Stress-Induced Apoptosis by Upregulating let-7a Expression
title_full Grape Seed Procyanidin B2 Protects Porcine Ovarian Granulosa Cells against Oxidative Stress-Induced Apoptosis by Upregulating let-7a Expression
title_fullStr Grape Seed Procyanidin B2 Protects Porcine Ovarian Granulosa Cells against Oxidative Stress-Induced Apoptosis by Upregulating let-7a Expression
title_full_unstemmed Grape Seed Procyanidin B2 Protects Porcine Ovarian Granulosa Cells against Oxidative Stress-Induced Apoptosis by Upregulating let-7a Expression
title_short Grape Seed Procyanidin B2 Protects Porcine Ovarian Granulosa Cells against Oxidative Stress-Induced Apoptosis by Upregulating let-7a Expression
title_sort grape seed procyanidin b2 protects porcine ovarian granulosa cells against oxidative stress-induced apoptosis by upregulating let-7a expression
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6885843/
https://www.ncbi.nlm.nih.gov/pubmed/31827667
http://dx.doi.org/10.1155/2019/1076512
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