Yang Li-Jun, Ma Dong-Qing, Cui Hong
Department of Pediatrics, Beijing Friendship Hospital, Capital Medical University Beijing, China.
Int J Clin Exp Pathol. 2014 Jul 15;7(8):4645-60. eCollection 2014.
Hypoxia and ischemia significantly affects perinatal brain development, even worse in preterm infants. However, the details of the mechanism leading to permanent brain damage after hypoxia-ischemia attack have not been fully elucidated. Proteomics could provide insight into the potential mechanism and help to promote the clinical treatment. In this study, quantitative analysis was performed 24 hours after hypoxia-ischemia using liquid-chromatography mass spectrometry coupled to label-free analysis. Compared to control, 193 proteins were present only in hypoxic-ischemic group. In addition, 34 proteins were more than 2 folds up-regulated and 14 proteins were more than 2 folds down-regulated in hypoxia-ischemia group. Gene Ontology database showed that the majority of differentially expressed proteins comprised mitochondrial proteins et al. Molecular function analysis revealed that the majority of proteins were involved in ion binding et al. Biological process analysis showed that the majority of proteins were involved in response to organic substance et al. STRING 9.0 software analysis were used to explore the complex interactions existed among the proteins. Western blot were used to verify the fold changes of some proteins-microtubule-associated protein 2 and microtubule-associated protein tau. This novel study performed a full-scale screening of the proteomics research in hypoxic-ischemic brain damage of immature rat.
缺氧缺血会显著影响围产期脑发育,对早产儿的影响更为严重。然而,缺氧缺血发作后导致永久性脑损伤的机制细节尚未完全阐明。蛋白质组学可以深入了解潜在机制,并有助于推动临床治疗。在本研究中,使用液相色谱质谱联用无标记分析技术在缺氧缺血24小时后进行定量分析。与对照组相比,193种蛋白质仅存在于缺氧缺血组中。此外,缺氧缺血组中有34种蛋白质上调超过2倍,14种蛋白质下调超过2倍。基因本体数据库显示,大多数差异表达蛋白质包括线粒体蛋白质等。分子功能分析表明,大多数蛋白质参与离子结合等。生物学过程分析表明,大多数蛋白质参与对有机物质的反应等。使用STRING 9.0软件分析来探索蛋白质之间存在的复杂相互作用。蛋白质印迹法用于验证一些蛋白质——微管相关蛋白2和微管相关蛋白tau的倍数变化。这项新研究对未成熟大鼠缺氧缺血性脑损伤进行了蛋白质组学研究的全面筛选。