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Genome-wide Association Study of Cardiac Structure and Function

Genome-wide Association Study of Cardiac Structure and Function
心脏结构和功能的全基因组关联研究
批准号:
7691294
负责人:
Vasan S Ramachandran
金额:
$59.55万
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-09-25 至 2012-07-31

项目摘要

项目成果

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中文摘要
翻译
描述(由申请人提供):充血性心力衰竭(CHF)是美国发病率和死亡率的主要原因,与家族易感性相关。左心室(LV)重构早于CHF数月至数年,其特征在于LV尺寸、壁厚、几何形状以及收缩和舒张功能的变化。因此,超声心动图(echo)性状可以作为遗传分析的内在表型,因为它们具有可重复的评估、定量性质、显著的遗传性、与CHF的既定关系以及更接近遗传影响(相对于CHF的更远端表型)。对几个基于社区的队列进行密集基因组扫描的可用性为使用全基因组关联研究(GWAS)来研究回声性状的遗传基础提供了一个绝佳的机会,从而为社区CHF的发病机制提供了见解。我们假设,共同的遗传变异有助于个体间变异的左心室质量,尺寸和收缩功能,壁厚,左心房(LA)和主动脉根部的大小在社区。为了发现影响回声特征的常见变异,我们建立了一个联盟(EchoGen),该联盟将在6个队列中分析先前资助的GWAS(第1阶段),并在3个外部队列中复制最强的发现(第2阶段)。我们的具体目标是:目标1。通过对6项队列研究(Fragion、鹿特丹、心血管健康研究、PREVENT-it、SHIP和MONICA-KORA; 17,600例受试者)中的GWAS的回声特征(LV质量、尺寸、壁厚、收缩功能障碍;左心房和主动脉根尺寸)进行荟萃分析,使用GWAS识别影响回声特征的常见变异。目标二。通过复制3个额外队列(马约诊所、PIVUS、CARLA; 4,770例受试者)中确定的前175个变异(每个性状约30个x 6个回声性状),复制GWAS结果;并进行结合第1阶段和第2阶段的Meta分析。目标3。研究影响回声性状的基因-环境和上位性(基因-基因)相互作用;环境因素包括年龄、性别、高血压和肥胖。拟议的多机构、多国合作(EchoGen)利用现有队列(与GWAS)将揭示遗传变异对回声特征的贡献,并确定CHF风险分层和未来治疗的新靶点。公共卫生相关性:人与人之间患心力衰竭(心脏泵血不足)的风险差异很大,遗传影响与环境因素一起在确定风险方面发挥关键作用。在这个项目中,研究人员建议将心脏测量(通过超声获得)与9项大型国际研究中超过22,000名参与者的密集基因扫描结果相关联。这些分析可能会确定心脏改变的遗传风险因素,这些因素反过来又使个体易患心力衰竭。
英文摘要
DESCRIPTION (provided by applicant): Congestive heart failure (CHF) is a major cause of morbidity and mortality in the United States that is associated with a familial predisposition. Left ventricular (LV) remodeling antedates CHF by months to years and is characterized by changes in LV dimensions, wall thickness, geometry and systolic and diastolic function. Thus, echocardiographic (echo) traits can serve as endophenotypes for genetic analyses, given their reproducible assessment, quantitative nature, substantial heritability, established relations to CHF, and greater proximity to genetic influences (relative to the more distal phenotype of CHF). The availability of dense genome scans on several community-based cohorts offers a remarkable opportunity to use genome- wide association studies (GWAS) to investigate the genetic underpinnings of echo traits, thereby providing insights into pathogenesis of CHF in the community. We hypothesize that common genetic variants contribute to interindividual variation in LV mass, dimensions and systolic function, wall thickness, left atrial (LA) and aortic root size in the community. To discover common variation influencing echo traits, we have established a consortium (EchoGen) that will analyze previously-funded GWAS in 6 cohorts (stage 1), and replicate the strongest findings in 3 external cohorts (stage 2). Our specific aims are: Aim 1. To use GWAS to identify common variants influencing echo traits by performing a meta-analysis of GWAS for echo traits (LV mass, dimensions, wall thickness, systolic dysfunction; left atrial and aortic root size) in 6 cohort studies (Framingham, Rotterdam, Cardiovascular Health Study, PREVENT-it, SHIP, and MONICA-KORA; 17,600 participants). Aim 2. To replicate GWAS findings by replicating the top 175 variants (~30 per trait x 6 echo traits) identified in 3 additional cohorts (Mayo clinic, PIVUS, CARLA; 4,770 participants); and performing a meta- analysis that combines stages 1 and 2. Aim 3. To examine gene-environment and epistasis (gene-gene) interactions influencing echo traits; the environmental factors include age, sex, hypertension, and obesity. The proposed multi-institutional, multinational collaboration (EchoGen) leveraging existing cohorts (with GWAS) will uncover the contribution of genetic variation to echo traits, and identify novel targets for risk stratification and future therapy of CHF. PUBLIC HEALTH RELEVANCE: There is considerable variation in the risk of suffering heart failure (inadequate pumping of the heart) among people, and genetic influences play a key role together with environmental factors in determining risk. In this project, investigators propose to relate cardiac measurements (obtained via ultrasound) to findings from dense gene scans in over 22,000 participants in 9 large international studies. These analyses will likely identify genetic risk factors for cardiac alterations that in turn predispose individuals to heart failure.
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会议论文
Epidemiology of blood pressure responses to perturbations: Correlates and prognosis for vascular risk, end-organ damage, cognitive aging and preclinical Alzheimer's disease
  • 批准号:
    10369476
  • 项目类别:
  • 资助金额:
    $29.28万
  • 财政年份:
    2022
  • 负责人:
    Vasan S Ramachandran
  • 依托单位:
Genetic Architecture of Cardiac Structure and Function and Its Impact on Heart Failure
Development of a cloud-based analytical tool for polygenic risk score and its implication in heart failure research.
海外基金