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心脏传导系统的发育。

Development of the cardiac conduction system.

作者信息

Mikawa Takashi, Hurtado Romulo

机构信息

University of California San Francisco, Cardiovascular Research Institute, Box 2711, Rock Hall Room 384D, 1550 4th Street, San Francisco, CA 94158-2324, United States.

出版信息

Semin Cell Dev Biol. 2007 Feb;18(1):90-100. doi: 10.1016/j.semcdb.2006.12.008. Epub 2007 Jan 4.

Abstract

The cardiac conduction system (CCS) is a specialized tissue network that initiates and maintains a rhythmic heartbeat. The CCS consists of several functional subcomponents responsible for producing a pacemaking impulse and distributing action potentials across the heart in a coordinated manner. The formation of the distinct subcomponents of the CCS occurs within a precise temporal and spatial framework; thereby assuring that as the system matures from a tubular to a complex chambered organ, a rhythmic heartbeat is always maintained. Therefore, a defect in differentiation of any CCS component would lead to severe rhythm disturbances. Recent molecular, cell biological and physiological approaches have provided fresh and unexpected perspectives of the relationships between cell fate, gene expression and differentiation of specialized function within the developing myocardium. In particular, biomechanical forces created by the heartbeat itself have important roles in the inductive patterning and functional integration of the developing conduction system. This new understanding of the cellular origin and molecular induction of CCS tissues during embryogenesis may provide the foundation for tissue engineering, replacement and repair of these essential cardiac tissues in the future.

摘要

心脏传导系统(CCS)是一个专门的组织网络,它启动并维持有节律的心跳。CCS由几个功能子组件组成,负责产生起搏冲动并以协调的方式在心脏中分布动作电位。CCS不同子组件的形成发生在精确的时间和空间框架内;从而确保随着系统从管状器官发育为复杂的腔室器官,始终维持有节律的心跳。因此,任何CCS组件分化缺陷都会导致严重的节律紊乱。最近的分子、细胞生物学和生理学方法为发育中心肌内细胞命运、基因表达和特殊功能分化之间的关系提供了新的、意想不到的视角。特别是,心跳本身产生的生物力学力在发育中的传导系统的诱导模式形成和功能整合中起着重要作用。这种对胚胎发育过程中CCS组织的细胞起源和分子诱导的新理解可能为未来这些重要心脏组织的组织工程、替代和修复提供基础。

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