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How to Build an Integrated Biobank: The Washington University Translational Cardiovascular Biobank & Repository Experience

机译:如何建立综合性生物库:华盛顿大学转化性心血管生物库和储存库经验

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Translational studies that assess and extend observations made in animal models of human pathology to elucidate relevant and important determinants of human diseases require the availability of viable human tissue samples. However, there are a number of technical and practical obstacles that must be overcome in order to perform cellular and electrophysiological studies of the human heart. In addition, changing paradigms of how diseases are diagnosed, studied and treated require increasingly complex integration of rigorous disease phenotyping, tissue characterization and detailed delineation of a multitude of "_omics". Realizing the need for quality-controlled human cardiovascular tissue acquisition, annotation, biobanking and distribution, we established the Translational Cardiovascular Biobank & Repository at Washington University School of Medicine. Several critical details are essential for the success of cardiovascular biobanking including coordinated, trained and dedicated staff members; adequate, nonrestrictive informed consent protocols; and fully integrated clinical data management applications for annotating, tracking and sharing of tissue and data resources. Labor and capital investments into growing biobanking resources will facilitate collaborative efforts aimed at limiting morbidity and mortality due to heart disease and improving overall cardiovascular health.
机译:评估和扩展人类病理动物模型中的观察结果以阐明人类疾病的相关和重要决定因素的转化研究需要可行的人体组织样品。然而,为了进行人类心脏的细胞和电生理研究,必须克服许多技术和实践障碍。另外,关于如何诊断,研究和治疗疾病的不断变化的范式要求严格的疾病表型,组织表征和大量“组学”的详细描述日益复杂。意识到需要质量控制的人类心血管组织的采集,注释,生物存储和分发,我们在华盛顿大学医学院建立了转化型心血管生物存储库。几个关键细节对于心血管生物库的成功至关重要,包括协调,训练有素和敬业的工作人员;适当的非限制性知情同意协议;以及完全集成的临床数据管理应用程序,用于注释,跟踪和共享组织和数据资源。对不断增长的生物银行资源进行的劳动力和资本投资将促进旨在降低心脏病引起的发病率和死亡率并改善整体心血管健康的合作努力。

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