医学
心力衰竭
安慰剂
冠状动脉疾病
人口
心脏病学
临床试验
内科学
生活质量(医疗保健)
遗传增强
心功能曲线
基因
病理
护理部
替代医学
化学
环境卫生
生物化学
作者
Roger J. Hajjar,Krisztina M. Zsebo,Lawrence I. Deckelbaum,Craig Thompson,Jeff Rudy,Alex Yaroshinsky,Hung Q. Ly,Yoshiaki Kawase,Kim Wagner,Kenneth Borow,Brian E. Jaski,Barry London,Barry Greenberg,Daniel Pauly,Richard D. Patten,Randall C. Starling,Donna Mancini,Mariell Jessup
标识
DOI:10.1016/j.cardfail.2008.02.005
摘要
Heart failure (HF) remains a major cause of morbidity and mortality in North America. With an aging population and an unmet clinical need by current pharmacologic and device-related therapeutic strategies, novel treatment options for HF are being explored. One such promising strategy is gene therapy to target underlying molecular anomalies in the dysfunctional cardiomyocyte. Prior animal and human studies have documented decreased expression of SERCA2a, a major cardiac calcium cycling protein, as a major defect found in HF.We hypothesize that increasing the activity of SERCA2a in patients with moderate to severe HF will improve their cardiac function, disease status, and quality of life. Gene transfer of SERCA2a will be performed via an adeno-associated viral (AAV) vector, derived from a nonpathogenic virus with long-term transgene expression as well as a clinically established favorable safety profile.We describe the design of a phase 1 clinical trial of antegrade epicardial coronary artery infusion (AECAI) administration of AAVI/SERCA2a (MYDICAR) to subjects with HF divided into 2 stages: in Stage 1, subjects will be assigned open-label MYDICAR in one of up to 4 sequential dose escalation cohorts; in Stage 2, subjects will be randomized in parallel to 2 or 3 doses of MYDICAR or placebo in a double-blinded manner.
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