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分子心脏病学的转化研究:针对心力衰竭的基因、细胞和化学药物治疗。

Molecular cardiology in translation: gene, cell and chemical-based experimental therapeutics for the failing heart.

机构信息

Department of Integrative Biology & Physiology, University of Minnesota, Medical School, 6-125 Jackson Hall, 321 Church Street SE, Minneapolis, MN 55455, USA.

出版信息

J Cardiovasc Transl Res. 2008 Dec;1(4):317-27. doi: 10.1007/s12265-008-9065-6.

Abstract

Acquired and inherited diseases of the heart represent a major health care issue in this country and throughout the World. Clinical medicine has made important advancements in the past quarter century to enable several effective treatment regimes for cardiac patients. Nevertheless, it is apparent that even with the best care, current treatment strategies and therapeutics are inadequate for treating heart disease, leaving it arguably the most pressing health issue today. In this context it is important to seek new approaches to redress the functional deficits in failing myocardium. This review focuses on several recent gene, cell and chemical-based experimental therapeutics currently being developed in the laboratory for potential translation to patient care. For example, new advances in bio-sensing inducible gene expression systems offer the potential for designer cardio-protective proteins to be expressed only during hypoxia/ischemia in the heart. Stem cells continue to offer the promise of cardiac repair, and some recent advances are discussed here. In addition, discovery and applications of synthetic polymers are presented as a chemical-based strategy for acute and chronic treatment of diseased and failing cardiac tissue. Collectively, these approaches serve as the front lines in basic biomedical research, with an eye toward translation of these findings to clinically meaningful applications in cardiac disease.

摘要

获得性和遗传性心脏病是美国和全球的主要医疗保健问题。在过去的四分之一个世纪里,临床医学在为心脏病患者提供几种有效治疗方案方面取得了重要进展。然而,即使采用了最佳的治疗方法,当前的治疗策略和疗法显然不足以治疗心脏病,使其成为当今最紧迫的健康问题之一。在这种情况下,寻求新的方法来纠正衰竭心肌的功能缺陷是很重要的。本综述重点介绍了目前正在实验室中开发的几种基于基因、细胞和化学的实验治疗方法,以期潜在地转化为患者治疗。例如,生物传感诱导基因表达系统的新进展为仅在心脏缺氧/缺血期间表达设计的心脏保护蛋白提供了可能性。干细胞继续为心脏修复带来希望,这里讨论了一些最新进展。此外,还提出了合成聚合物的发现和应用作为治疗患病和衰竭心脏组织的急性和慢性的化学策略。总的来说,这些方法是基础生物医学研究的前沿,着眼于将这些发现转化为心脏病临床有意义的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/656b/2759715/9fc4bf33ccbc/nihms-133510-f0001.jpg

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