用于胸主动脉病变临床和分子研究的新型人类生物标本库。

IF 0.5 Q4 CARDIAC & CARDIOVASCULAR SYSTEMS Cardiogenetics Pub Date : 2021-09-01 Epub Date: 2021-09-18 DOI:10.3390/cardiogenetics11030017
Courtney E Vujakovich, Benjamin J Landis
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引用次数: 2

摘要

胸主动脉瘤(TAA)是一种发病率和死亡率高的遗传性主动脉疾病,儿童和成人均可发病。遗传原因、病理生物学机制和预后标志物尚不完全清楚。2015年,协作人类主动脉疾病储存库(CHAR)的创建就是为了解决这些根本性的差距。有胸主动脉病变、相关遗传诊断或主动脉瓣疾病的患者符合前瞻性入选条件。家庭成员和控制组也被登记。收集详细的临床和家庭数据,并处理血液和主动脉组织生物标本以供广泛使用。共有1047名参与者被纳入研究。834名受影响参与者的平均年龄为47±22岁(范围N = 176),健康主动脉组织对照组(N = 37)。主动脉或主动脉瓣生物标本分别来自290名和110名参与者。从培养的90名受试者的主动脉平滑肌细胞(SMCs)中提取RNA和蛋白质。超低温保存了1000多份主动脉间充质干细胞。CHAR的广度、强大的生物标本处理和表型分析创造了一个独特的、多管齐下的资源,以加速我们对人类主动脉病变的理解。
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A Novel Human Biospecimen Repository for Clinical and Molecular Investigation of Thoracic Aortopathy.

Thoracic aortic aneurysm (TAA) is a heritable aortopathy with significant morbidity and mortality, affecting children and adults. Genetic causes, pathobiological mechanisms, and prognostic markers are incompletely understood. In 2015, the Collaborative Human Aortopathy Repository (CHAR) was created to address these fundamental gaps. Patients with thoracic aortopathy, associated genetic diagnoses, or aortic valve disease are eligible for prospective enrollment. Family members and controls are also enrolled. Detailed clinical and family data are collected, and blood and aortic tissue biospecimens are processed for broad usage. A total of 1047 participants were enrolled. The mean age in 834 affected participants was 47 ± 22 (range <1 to 88) years and 580 were male (70%). A total of 156 (19%) were under the age of 21 years. Connective tissue diagnoses such as Marfan syndrome were present in 123 (15%). Unaffected participants included relatives (N = 176) and healthy aorta tissue controls (N = 37). Aortic or aortic valve biospecimens were acquired from over 290 and 110 participants, respectively. RNA and protein were extracted from cultured aortic smooth muscle cells (SMCs) for 90 participants. Over 1000 aliquots of aortic SMCs were cryopreserved. The CHAR's breadth, robust biospecimen processing, and phenotyping create a unique, multipronged resource to accelerate our understanding of human aortopathy.

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来源期刊
Cardiogenetics
Cardiogenetics CARDIAC & CARDIOVASCULAR SYSTEMS-
自引率
0.00%
发文量
26
审稿时长
11 weeks
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