...
首页> 外文期刊>Neuropharmacology >Peptidomic analysis of hippocampal tissue for explore leptin neuroprotective effect on the preterm ischemia-hypoxia brain damage model rats
【24h】

Peptidomic analysis of hippocampal tissue for explore leptin neuroprotective effect on the preterm ischemia-hypoxia brain damage model rats

机译:海马组织的肽组织探讨瘦素神经保护作用对早产缺血 - 缺氧脑损伤模型大鼠的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The most common injury of preterm infants is periventricular leukomalacia (PVL) and to date there is still no safe and effective treatment. In our previous studies, leptin has been found to have neuroprotective effects on the preterm ischemia-hypoxia brain damage model rats in animal behavior. To gain insight into the neuroprotective mechanisms of leptin on preterm brain damage model rats, we constructed a comparative peptidomic profiling of hippocampal tissue between leptin-treated after model and preterm ischemia-hypoxia brain damage model rats using a stable isobaric labeling strategy involving tandem mass tag reagents, followed by nano liquid chromatography tandem mass spectrometry. We identified and quantified 4164 peptides, 238 of which were differential expressed in hippocampal tissue in the two groups. A total of 150 peptides were up regulated and 88 peptides were down regulated. These peptides were imported into the Ingenuity Pathway Analysis (IPA) and identified putative roles in nervous system development, function and diseases. We concluded that the preterm ischemia-hypoxia brain damage model with leptin treatment induced peptides changes in hippocampus, and these peptides, especially for the peptides associated "microtubule-associated protein 1b (MAP1b), Elastin (Eln), Piccolo presynaptic cytomatrix protein (Pclo), Zinc finger homeobox 3(Zfhx3), Alpha-kinase 3(Alpk3) and Myosin XVA(Myo15a)", could be candidate bio-active peptides and participate in neuroprotection of leptin. These may advance our current understanding of the mechanism of leptin's neuroprotective effect on preterm brain damage and may be involved in the etiology of preterm brain damage. Meanwhile, we found that repression of ILK signaling pathway plays a significant role in neuroprotection of leptin. A better understanding of the role of ILK signaling pathway in neuroprotective mechanisms will help scientists and researchers to develop selective, safe and efficacious drug for therapy against human nervous system disorders.
机译:早产儿最常见的患者伤害是脑室白血病(PVL),迄今仍然没有安全有效的治疗。在我们以前的研究中,已发现瘦素对动物行为中早产缺血缺氧脑损伤模型大鼠的神经保护作用。要深入了解瘦素对早产脑损伤模型大鼠的神经保护机制,我们使用涉及串联标签策略的瘦蛋白处理后瘦素治疗的瘦素治疗与早产缺血 - 缺氧脑损伤模型大鼠的比较肽组织。试剂,其次是纳米液相色谱串联质谱法。我们鉴定并定量了4164个肽,其中238例在两组的海马组织中表达差异。调节总共150个肽,并调节88个肽。将这些肽进口到熟智能途径分析(IPA)中,并确定神经系统发育,功能和疾病的推定作用。得出的结论是,早产缺血 - 缺氧脑损伤模型与瘦素治疗诱导的肽在海马中的变化,以及这些肽,特别是对于肽相关的“微管相关蛋白1b(map1b),弹性蛋白(eln),piccolo presynaptic cytomatrix蛋白(pclo ),锌手指Homeobox 3(ZFHX3),α-激酶3(ALPK3)和肌蛋白XVA(MyO15a)“可以是候选生物活性肽并参与瘦素的神经保护。这些可能提高我们目前对瘦素神经保护作用机制对早产脑损伤的机制,并且可能参与早产脑损伤的病因。同时,我们发现对ILK信号通路的抑制在瘦素的神经保护中起着重要作用。更好地理解ILK信号通路在神经保护机制中的作用将有助于科学家和研究人员为对人体神经系统疾病进行选择性,安全和有效的药物。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号