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Hydrogen sulfide and vascular remodeling

Hydrogen sulfide and vascular remodeling
硫化氢与血管重塑
批准号:
8656802
负责人:
Christopher G Kevil
金额:
$35.28万
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-05-01 至 2017-04-30

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中文摘要
翻译
描述(由申请人提供):实验证据表明气体递质硫化氢在心血管系统中起重要作用,特别是在组织缺血期间。然而,具体的细胞来源,目标和机制的硫化氢在脉管系统内仍然在很大程度上未知。我们实验室和其他实验室的工作表明,硫化氢对慢性组织缺血具有保护作用,这涉及增加血管重塑反应,如血管生成。重要的是,关于硫化氢如何在体内或体外调节缺血性血管重塑的机制信息很少。本申请中的数据揭示了一个新的发现,即从胱硫醚释放的硫化氢!裂解酶(CSE)选择性地增强缺血组织亚硝酸盐还原为NO,其介导增加的血管生成活性,涉及HIF-1活性和VEGF表达。该提案中的实验将通过内皮细胞CSE依赖性硫化氢生成增强缺血性亚硝酸盐还原为NO从而增加缺血性血管重塑的假设来确定这些新结果的分子机制。该假设将通过追求三个具体目标进行审查,包括:1)确定内皮细胞CSE表达如何调节缺血性血管重塑反应,2)确定硫化氢增加缺血组织中NO产生的机制以及这如何调节HIF-1 α活性和VEGF表达,和3)确定内皮细胞CSE依赖性硫化氢对糖尿病缺血性血管重构反应的影响。该项目的成功完成将大大推进该领域对血管系统中硫化氢生物学的理解,提供关于硫化氢-NO通路相互作用的明确机制信息,并确定缺血性血管疾病治疗的新方法。
英文摘要
DESCRIPTION (provided by applicant): Experimental evidence is emerging that the gasotransmitter hydrogen sulfide serves an important role in the cardiovascular system especially during tissue ischemia. However, specific cellular sources, targets, and mechanisms of hydrogen sulfide within the vasculature remain largely unknown. Work from our lab and others demonstrate that hydrogen sulfide is protective against chronic tissue ischemia, which involves increased vascular remodeling responses such as angiogenesis. Importantly, very little mechanistic information exists regarding how hydrogen sulfide modulates ischemic vascular remodeling in vivo or in vitro. Data in this application reveals a novel finding that hydrogen sulfide emanating from cystathionine !-lyase (CSE) selectively augments ischemic tissue nitrite reduction to NO that mediates increased angiogenic activity involving HIF-1" activity and VEGF expression. Experiments in this proposal will determine molecular mechanisms for these novel results through the hypothesis that endothelial cell CSE dependent hydrogen sulfide generation augments ischemic nitrite reduction to NO that increases ischemic vascular remodeling. The hypothesis will be examined through the pursuit of three specific aims including: 1) determine how endothelial cell CSE expression regulates ischemic vascular remodeling responses, 2) determine the mechanisms by which hydrogen sulfide increases NO generation in ischemic tissue and how this regulates HIF-1" activity and VEGF expression, and 3) determine the effect of endothelial cell CSE dependent hydrogen sulfide on diabetic ischemic vascular remodeling responses. Successful completion of this project will significantly advance the fields understanding of hydrogen sulfide biology in the vascular system, provide clear mechanistic information on hydrogen sulfide-NO pathway interactions, and identify novel approaches for ischemic vascular disease therapy.
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CSE regulation of vascular remodeling
CSE regulation of vascular remodeling
CSE regulation of vascular remodeling
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