Myocardial Stiffness in Aging Associated Diastolic Heart Failure
Myocardial Stiffness in Aging Associated Diastolic Heart Failure
批准号:
7082271
负责人:
Kenneth S Campbell
金额:
$6.01万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-09-01 至 2008-08-31
中文摘要
描述(由申请人提供):舒张功能障碍是老年人群中最常见的充血性心力衰竭原因。70岁以上患者的一年死亡率约为50%。治疗方案仍然是经验性的。尽管对舒张性心力衰竭(DHF)的病因知之甚少,但大多数研究一致认为,受影响的患者表现出心室僵硬增加(腔室顺应性降低)。这项研究的假设基础是,老年人群的DHF反映了在心脏周期舒张期(或“放松”期)不适当地持续存在的过桥活动。这些交叉桥产生心肌僵硬的“主动”成分,增加心脏的基础(被动)僵硬,并通过增加对流入血液的阻力来损害心室充盈。拟议的研究将使用Fischer 344大鼠,这些大鼠在25个月大时表现出与衰老相关的DHF。特异性目的1将建立衰老对大鼠心肌硬度的影响。实验将验证这样的假设:与结构构件的刚度相比,不当绑定的桥梁的主动刚度随着老化而增加的程度更大。将从幼龄(5个月)和老年(25个月)大鼠中分离完整的小梁,并在存在和不存在BDM(一种过桥抑制剂)的情况下拉伸,以确定主动和被动僵硬的年龄依赖性变化程度。特异性目标2将评估代谢物浓度改变对年轻和老年心脏活动僵硬的影响。实验将利用从5个月和25个月大鼠心脏中分离出来的化学渗透制剂,通过测量肌肉节长度控制下施加的小拉伸的张力反应来评估主动刚度。我们假设,当氢离子、磷酸离子和ADP浓度升高到缺血心肌的水平时,老年心脏中由持续的过桥活动引起的主动僵硬程度会比年轻心脏增强得更大。这项研究与公共卫生相关,因为它调查了一种新的假设,即与衰老相关的DHF反映了心脏周期放松期不适当的收缩活动。实验结果将提供关于DHF潜在原因的新信息,并应帮助科学家开发更好的老年人群舒张功能障碍治疗方法。
英文摘要
DESCRIPTION (provided by applicant): Diastolic dysfunction is the most common cause of congestive heart failure in elderly populations. One year mortality rates for afflicted individuals aged 70 years or older approximate 50%. Therapy options remain empirical. Although very little is known about the etiology of Diastolic Heart Failure (DHF) most studies agree that affected patients exhibit increased ventricular stiffness (reduced chamber compliance). The hypothesis underlying this work is that DHF in elderly populations reflects cross-bridge activity that persists inappropriately during the diastolic (or 'relaxed') phase of the cardiac cycle. These cross-bridges produce an 'active' component of myocardial stiffness that augments the heart's basal (passive) stiffness and impairs ventricular filling by increasing the resistance to inflowing blood. The proposed research will utilize Fischer 344 rats that exhibit aging-associated DHF at 25 months of age. Specific Aim 1 will establish the effects of aging on rat myocardial stiffness. Experiments will test the hypothesis that active stiffness due to inappropriately bound cross-bridges increases to a greater extent with aging than stiffness due to structural components. Intact trabeculae will be isolated from young (5 month) and old (25 month) rats and stretched in the presence and absence of BDM, a cross-bridge inhibitor, to establish the extent of age-dependent changes in active and passive stiffness. Specific Aim 2 will evaluate the effects of altered metabolite concentrations on active stiffness in young and old hearts. Experiments will utilize chemically permeabilized preparations isolated from 5 month and 25 month rat hearts and active stiffness will be assessed by measuring the tension responses to small stretches imposed under sarcomere length control. It is hypothesized that active stiffness due to persistent cross-bridge activity will be enhanced to a greater extent in the old hearts than in the young hearts when the concentrations of hydrogen ions, phosphate ions and ADP are raised to levels mimicking ischemic myocardium. This research is relevant to public health because it investigates the novel hypothesis that aging-related DHF reflects inappropriate contractile activity during the relaxed phase of the cardiac cycle. The experimental results will provide new information about the underlying causes of DHF and should help scientists develop better treatments for diastolic dysfunction in elderly populations.
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