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中文摘要
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描述(由申请人提供):心肌缺血/再灌注(I/R)损伤是每年造成数百万人死亡的主要人类健康问题。心肌I/R包括严重的心肌细胞功能障碍和心肌细胞死亡,无法治愈。由于I/R中改变的众多细胞过程,包括活性氧(ROS)升高、膜不稳定性、细胞内Ca2+处理不当、线粒体解偶联等,解剖特定机制途径在I/R中的作用一直具有挑战性。尽管存在这些挑战,肌细胞产生的ROS被广泛认为是导致心脏I/R细胞损伤的关键启动事件。我们提供了令人兴奋的新证据,证明心肌细胞产生的ROS和心脏I/R损伤的显著解耦。因此,本研究提出了一种新的范式来验证肌膜稳定性是I/R损伤的核心,而不依赖于ROS的产生。为了探究I/R机制,我们将实施肌膜稳定剂,在初步工作中显著限制肌细胞泄漏、Ca2+处理不当、线粒体膜去极化,并在I/R介导的ROS增加的情况下保持肌细胞活力。这些结果通过强调肌膜稳定在I/R损伤通路中的核心作用,挑战了I/R损伤机制的教条。本文提出通过细胞表面相互作用的合成共聚物来稳定肌膜,作为机械解剖心肌膜完整性在I/R中的直接作用的工具。基于共聚物的膜稳定剂是两亲性长链大分子共聚物,在压力下与细胞膜相互作用并保护细胞膜。该建议的总体假设是,独立于I/ r介导的ROS产生,合成肌膜稳定剂可以显着限制心肌细胞Ca2+失调和线粒体去极化,从而提高体内心脏泵的性能。换句话说,我们将检验单独ROS不足以引起I/R损伤的假设。这一假设如果正确,将通过提供直接证据来证明膜完整性是I/R发病机制的核心,从而改变这一领域。这项工作的影响源于使用合成肌膜稳定剂作为一种可行的新治疗选择,可以很容易地转化为I/R的临床环境。具体目标是:目标1。为了验证在I/R过程中,独立于肌细胞ROS的产生,共聚物肌膜稳定剂将显著限制膜泄漏,细胞内Ca2+处理不当和线粒体膜去极化,以促进体外啮齿动物成年肌细胞和人类ipsc衍生的心肌细胞的细胞活力。目标2。在临床相关的猪心肌I/R损伤模型中,验证共聚物肌膜稳定将促进心肌细胞活力和保持心肌功能的假设。
英文摘要
DESCRIPTION (provided by applicant): Myocardial ischemia/reperfusion (I/R) injury is a major human health problem causing millions of deaths per year. Myocardial I/R involves severe cardiac myocyte dysfunction and myocyte death for which there is no cure. It has been challenging to dissect the role of specific mechanistic pathways in I/R owing to the multitude of cellular processes altered in I/R, including elevated reactive oxygen species (ROS), membrane instability, intracellular Ca2+ mishandling, mitochondrial uncoupling and others. Despite these challenges, myocyte generated ROS is widely considered a key initiating event leading to cellular damage in cardiac I/R. We provide exciting new evidence of a significant uncoupling of myocyte-generated ROS and damage in cardiac I/R. Thus, this proposal focuses on a new paradigm in testing the hypothesis that sarcolemma stability, independent of increased ROS production, is central to I/R injury. To interrogate I/R mechanisms we will implement sarcolemma stabilizers that in preliminary work significantly limit myocyte leak, Ca2+ mishandling, mitochondrial membrane depolarization and preserve myocyte viability despite I/R-mediated increased ROS. These results challenge the dogma of the mechanism of I/R damage by highlighting sarcolemma stabilization as central in the I/R injury pathway. Sarcolemma stabilization by cell surface interacting synthetic copolymers is proposed here as a tool for mechanistic dissection of the direct role of cardiac muscle membrane integrity in I/R. Copolymer-based membrane stabilizers are amphiphilic long-chain macromolecular copolymers that interact with and protect cellular membranes during stress. The overarching hypothesis of this proposal is that, independent of I/R-mediated ROS production, synthetic sarcolemma stabilizers function to significantly limit myocyte Ca2+ dysregulation and mitochondrial depolarization to increase heart pump performance in vivo. Stated differently, we will test the hypothesis that ROS alone is insufficient to cause I/R injury. This hypothesis, if correct, will change the field by providing direct evidence in establishing membrane integrity as central in I/R pathogenesis. The impact of this work derives from using synthetic sarcolemma stabilizers as a viable new therapeutic option that could be readily translated to clinical settings of I/R. The Specific Aims are: Aim 1. To test the hypothesis that during I/R, independent of myocyte ROS production, copolymer sarcolemma stabilizers will significantly limit membrane leak, intracellular Ca2+ mishandling and mitochondrial membrane depolarization to promote cell viability in rodent adult myocytes and human iPSC-derived cardiac myocytes in vitro. Aim 2. To test the hypothesis that copolymer sarcolemma stabilization will promote myocyte viability and preserve myocardial function in a clinically relevant porcine model of myocardial I/R injury in vivo.
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Inclusive Excellence Training Program in the Systems Biology of Cardiovascular Inflammation
  • 批准号:
    10555753
  • 项目类别:
  • 资助金额:
    $20.62万
  • 财政年份:
    2023
  • 负责人:
    JOSEPH Mark METZGER
  • 依托单位:
Skeletal muscle sarcomere function in health and disease
  • 批准号:
    10445504
  • 项目类别:
  • 资助金额:
    $54.4万
  • 财政年份:
    2022
  • 负责人:
    JOSEPH Mark METZGER
  • 依托单位:
Skeletal muscle sarcomere function in health and disease
  • 批准号:
    10655541
  • 项目类别:
  • 资助金额:
    $53.11万
  • 财政年份:
    2022
  • 负责人:
    JOSEPH Mark METZGER
  • 依托单位:
Copolymer-Based Sarcolemma Stabilization for Protecting Dystrophic Skeletal Muscles in Vivo
  • 批准号:
    10153697
  • 项目类别:
  • 资助金额:
    $45.23万
  • 财政年份:
    2018
  • 负责人:
    JOSEPH Mark METZGER
  • 依托单位:
海外基金