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Genetic Epidemiology of Telomere Length in the Amish

Genetic Epidemiology of Telomere Length in the Amish
阿米什人端粒长度的遗传流行病学
批准号:
7092145
负责人:
WEN-CHI HSUEH
金额:
$30.47万
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-05-01 至 2009-04-30

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中文摘要
翻译
描述(由申请人提供):端粒缩短与不同物种的细胞衰老有因果关系,在人类中,端粒缩短与衰老和较差的生存率有关。此外,先前的遗传学研究表明,端粒长度是遗传的。我们假设端粒缩短与衰老有关,并且在Old Order Amish (OOA)中是可变的和可遗传的。本研究计划的主要目标有三个方面:(1)在种群水平上研究较短的端粒长度(TLs)是否与衰老呈正相关;(2)鉴定TLs的遗传流行病学特征;(3)鉴定与TLs相关或连锁的遗传标记。
英文摘要
DESCRIPTION(provided by applicant): Telomere shortening has been causally linked to cellular senescence in different species, and in humans, telomere shortening has been associated with aging and poorer survival. In addition, prior genetic studies suggest that telomere length is heritable. We hypothesize that telomere shortening is associated with aging, and it is variable and heritable in the Old Order Amish (OOA). The primary objectives of this research proposal are three-fold: (1) to examine whether shorter telomere lengths (TLs) are positively associated with aging at a population level; (2) to characterize genetic epidemiology of TLs and, (3) to identify genetic markers associated or linked to TLs. Telomere lengths will be measured using a newly developed and validated quantitative-PCR method. Information on TL measurements and age-related phenotypes will be obtained from 1,300 individuals in ongoing studies in the OOA. These subjects, who are participants in other studies, have been or will be extensively characterized with regards to traits related to cardiovascular diseases, metabolic syndrome, osteoporosis, and inflammation. Furthermore, data from a 5-cM genome-scan are already available in 1,000 study participants, which allow us to conduct a genome-wide linkage study searching for loci related to TL. No additional funding will be required for phenotypic characterization of age-related traits or genotyping for genome-wise scan in this proposed study. This proposed study will hopefully provide Insight into the association between telomere length and aging in humans and help in evaluating whether telomere length can be used as a biological marker of aging. Any positive findings will encourage further investigation into the biological relationship between TLs and aging. Unraveling the genetic pathways involved in the regulation of telomere length will have important and farreaching implications in understanding many aspects of human health and diseases. Such knowledge may also aid in the development of regenerative medicine, cultured tissue transplantation, and stem cell therapeutics.
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Genetic Epidemiology of Telomere Length in the Amish
Genetic Epidemiology of Telomere Length in the Amish
Genetic Epidemiology of Telomere Length in the Amish
Genetic Epidemiology of Telomere Length in the Amish
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