CX43 and oxidative stress are the targets of BCB staining to predict the developmental potential of buffalo oocytes.

IF 1.6 3区 农林科学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE Reproduction in Domestic Animals Pub Date : 2024-08-01 DOI:10.1111/rda.14673
MengQi Li, ChunYan Yang, AnQin Duan, Peng Xiao, XingRong Lu, XiaoYa Ma, YuanYuan Xu, Wei Zheng, Chao Feng, Xia Mo, ChenQian Huang, LiQing Huang, JiangHua Shang, HaiYing Zheng
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Abstract

This study used the brilliant cresyl blue (BCB) staining method to group buffalo oocytes (BCB+ and BCB-) and perform in vitro maturation, in vitro fertilization and embryo culture. At the same time, molecular biology techniques were used to detect gap junction protein expression and oxidative stress-related indicators to explore the molecular mechanism of BCB staining to predict oocyte developmental potential. The techniques of buffalo oocytes to analyse their developmental potential and used immunofluorescence staining to detect the expression level of CX43 protein, DCFH-DA probe staining to detect ROS levels and qPCR to detect the expression levels of the antioxidant-related genes SOD2 and GPX1. Our results showed that the in vitro maturation rate, embryo cleavage rate and blastocyst rate of buffalo oocytes in the BCB+ group were significantly higher than those in the BCB- group and the control group (p < .05). The expression level of CX43 protein in the BCB+ group was higher than that in the BCB- group both before and after maturation (p < .05). The intensity of ROS in the BCB+ group was significantly lower than that in the BCB- group (p < .05), and the expression levels of the antioxidant-related genes SOD2 and GPX1 in the BCB+ group were significantly higher than those in the BCB- group (p < .05). Brilliant cresyl blue staining could effectively predict the developmental potential of buffalo oocytes. The results of BCB staining were positively correlated with the expression of gap junction protein and antioxidant-related genes and negatively correlated with the reactive oxygen species level, suggesting that the mechanism of BCB staining in predicting the developmental potential of buffalo oocytes might be closely related to antioxidant activity.

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CX43 和氧化应激是 BCB 染色预测水牛卵母细胞发育潜力的目标。
本研究采用亮甲酚蓝(BCB)染色法对水牛卵母细胞进行分组(BCB+和BCB-),并进行体外成熟、体外受精和胚胎培养。同时,利用分子生物学技术检测间隙连接蛋白表达和氧化应激相关指标,探索BCB染色预测卵母细胞发育潜能的分子机制。水牛卵母细胞发育潜能分析技术采用免疫荧光染色检测CX43蛋白的表达水平,DCFH-DA探针染色检测ROS水平,qPCR检测抗氧化相关基因SOD2和GPX1的表达水平。结果表明,BCB+组水牛卵母细胞的体外成熟率、胚胎裂解率和囊胚率明显高于BCB-组和对照组(P<0.05)。
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来源期刊
Reproduction in Domestic Animals
Reproduction in Domestic Animals 农林科学-奶制品与动物科学
CiteScore
3.00
自引率
5.90%
发文量
238
审稿时长
4-8 weeks
期刊介绍: The journal offers comprehensive information concerning physiology, pathology, and biotechnology of reproduction. Topical results are currently published in original papers, reviews, and short communications with particular attention to investigations on practicable techniques. Carefully selected reports, e. g. on embryo transfer and associated biotechnologies, gene transfer, and spermatology provide a link between basic research and clinical application. The journal applies to breeders, veterinarians, and biologists, and is also of interest in human medicine. Interdisciplinary cooperation is documented in the proceedings of the joint annual meetings. Fields of interest: Animal reproduction and biotechnology with special regard to investigations on applied and clinical research.
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