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首页> 外文期刊>International journal of molecular medicine >Proteomics analysis of fetal growth restriction and taurine?treated fetal growth restriction rat brain tissue by 2D?DIGE and MALDI?TOF/TOF MS analysis
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Proteomics analysis of fetal growth restriction and taurine?treated fetal growth restriction rat brain tissue by 2D?DIGE and MALDI?TOF/TOF MS analysis

机译:胎儿生长限制和牛磺酸的蛋白质组学分析,胎儿生长限制大鼠脑组织2D〜DOF和MALDI?TOF / TOF MS分析

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Fetal growth restriction (FGR) is caused by placental insufficiency and can lead to short and long?term neurodevelopmental delays. Taurine, one of the most abundant amino acids in the brain, is critical for the normal growth and development of the nervous system; however, the mechanistic role of taurine in neural growth and development remains unknown. The present study investigated the role of taurine in FGR. Specifically, we explored the proteomic profiles of fetal rats at 6 h postpartum by two?dimensional difference gel electrophoresis combined with matrix assisted laser desorption ionization?time?of?flight (TOF)/TOF tandem mass spectrometry; the findings were verified via reverse transcription?quantitative polymerase chain reaction. A total of 31 differentially expressed protein spots were selected. Among these, 31 were matched, including dihydropyrimidinase?related protein 2 and , CRK and peroxiredoxin 2. Functional analysis using the Gene Ontology database and Ingenuity Pathway Analysis demonstrated that the differentially expressed proteins were mainly associated with neuronal differentiation, ‘metabolic process’, ‘biological regulation’ and developmental processes. The present study identified several proteins that were differentially expressed in rats with FGR in the presence or absence of taurine administration. The results of the present study suggest a potential role for taurine in the treatment and prevention of FGR.
机译:胎儿生长限制(FGR)是由胎盘功能不全引起的,并且可以短期和长期术语神经发育延迟。牛磺酸是大脑中最丰富的氨基酸之一,对于正常生长和神经系统的发展至关重要;然而,牛磺酸在神经生长和发展中的机械作用仍然是未知的。本研究调查了牛磺酸在FGR中的作用。具体地,我们通过两个尺寸差异凝胶电泳与基质辅助激光解吸离子化联合的胎儿胎儿大鼠蛋白质组学谱探讨了胎儿大鼠的蛋白质组学谱。Δhipty(tof)/ tof串联质谱法;通过逆转录效果验证了发现的定量聚合酶链反应。共选择总共31种差异表达的蛋白质点。其中31种匹配,包括二氢嘧啶素酶?相关蛋白2和,Crk和过洛氧毒素2.使用基因本体组织数据库的功能分析和聪明的途径分析表明,差异表达的蛋白质主要与神经元分化相关,'代谢过程','生物调节和发展过程。本研究确定了几种蛋白质,其在牛磺酸施用的存在或不存在的情况下用FGR进行差异表达。本研究的结果表明,牛磺酸在治疗和预防FGR中的潜在作用。

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