首页> 外文学位 >Remodeling of the extracellular matrix components of the mitral valve due to alterations in the mechanical and chemical environments of the tissue.
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Remodeling of the extracellular matrix components of the mitral valve due to alterations in the mechanical and chemical environments of the tissue.

机译:由于组织的机械和化学环境的变化,导致二尖瓣细胞外基质成分的重塑。

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摘要

This body of research explored mitral valve remodeling due to changes in the mechanical and chemical environments of the tissue in order to better predict patient response to medical device and drug therapies. This work was novel both in its characterization of the mitral valve and in the consideration of the impacts of the biological environment on the multilayered valve structure. Left ventricular dilation due to congestive heart failure (CHF) changes the mechanical forces experienced by the mitral valve. Collagen, cellular, glycosaminoglycan, and proteoglycan compositions of valve tissues were therefore compared between CHF patients treated with and without the left ventricular assist device (LVAD). Mechanical properties of these tissues were also tested to assess effects of matrix changes on valve function. Since mechanical stimulation was determined to be required to maintain valve structure and function, a novel splashing bioreactor was then designed to maintain the valve mechanical environment in vitro in preparation for studies altering the chemical environment of the tissue. Alter validation, this bioreactor was used to study initial changes to valve structure alter two weeks of organ culture with media containing the serotonin receptor agonists serotonin and norfenfluramine (fen-phen) as well as a receptor antagonist. In the mechanical stimulation study, CHF valve tissue exhibited fibrotic remodeling compared to normal tissue, impeding normal mitral valve function. LVAD treatment, while it tended to restore functionality of the mitral valve chordae, encouraged compensatory remodeling that did not improve leaflet structure or mechanical behavior. Conversely, the gentle stretching provided by bioreactor was deemed sufficient to maintain matrix composition after two weeks of culture. Serotonin and norfenfluramine exposure appeared to upregulate different proteoglycans within the mitral valve structure, and exposure to a serotonin receptor antagonist had varying levels in success in blocking these drug effects. The results from these studies showed that changes to the mechanical (CHF and LVAD) and chemical (serotonin and norfenfluramine) environments altered mitral valve tissue structure and function. These effects of device use and drug therapies should be considered when assessing treatment for pathologies, such as CHF and obesity, which may not appear to directly impact the mitral valve.
机译:这项研究探索了由于组织的机械和化学环境变化而导致的二尖瓣重构,以便更好地预测患者对医疗设备和药物疗法的反应。这项工作无论是对二尖瓣的特征还是在生物环境对多层瓣膜结构的影响方面都是新颖的。由于充血性心力衰竭(CHF)引起的左心室扩张改变了二尖瓣所承受的机械力。因此,在使用和不使用左心室辅助装置(LVAD)的CHF患者之间比较了瓣膜组织的胶原蛋白,细胞,糖胺聚糖和蛋白聚糖成分。还测试了这些组织的机械性能,以评估基质变化对瓣膜功能的影响。由于确定需要机械刺激来维持瓣膜的结构和功能,因此设计了一种新型的飞溅生物反应器,以在体外维持瓣膜的机械环境,为研究改变组织化学环境做准备。除验证外,该生物反应器还用于研究器官在使用含有5-羟色胺受体激动剂5-羟色胺和去甲氟拉明(fen-phen)以及受体拮抗剂的培养基培养两周后阀门结构的初始变化。在机械刺激研究中,CHF瓣膜组织与正常组织相比显示出纤维化重塑,阻碍了正常的二尖瓣功能。 LVAD治疗虽然倾向于恢复二尖瓣腱索的功能,但鼓励补偿性重塑,但不能改善小叶结构或机械行为。相反,由生物反应器提供的缓慢拉伸被认为足以在培养两周后保持基质组成。血清素和去甲氟氰胺的暴露似乎在二尖瓣结构内上调了不同的蛋白聚糖,而血清素受体拮抗剂的暴露在成功阻断这些药物作用方面具有不同的水平。这些研究的结果表明,机械环境(CHF和LVAD)和化学环境(5-羟色胺和去甲氟拉明)的变化改变了二尖瓣组织的结构和功能。在评估对CHF和肥胖症等病理因素的治疗时,应考虑使用器械和药物疗法的这些影响,这些病理因素似乎不会直接影响二尖瓣。

著录项

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 226 p.
  • 总页数 226
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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