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用于电生理和收缩性研究的工程化心脏切片

Engineered heart slices for electrophysiological and contractile studies.

作者信息

Blazeski Adriana, Kostecki Geran M, Tung Leslie

机构信息

Department of Biomedical Engineering, The Johns Hopkins University, Baltimore, MD, USA.

Department of Biomedical Engineering, The Johns Hopkins University, Baltimore, MD, USA.

出版信息

Biomaterials. 2015 Jul;55:119-28. doi: 10.1016/j.biomaterials.2015.03.026. Epub 2015 Apr 17.

Abstract

A major consideration in the design of engineered cardiac tissues for the faithful representation of physiological behavior is the recapitulation of the complex topography and biochemistry of native tissue. In this study we present engineered heart slices (EHS), which consist of neonatal rat ventricular cells (NRVCs) seeded onto thin slices of decellularized cardiac tissue that retain important aspects of native extracellular matrix (ECM). To form EHS, rat or pig ventricular tissue was sectioned into 300 μm-thick, 5 to 16 mm-diameter disks, which were subsequently decellularized using detergents, spread on coverslips, and seeded with NRVCs. The organized fiber structure of the ECM remained after decellularization and promoted cell elongation and alignment, resulting in an anisotropic, functional tissue that could be electrically paced. Contraction decreased at higher pacing rates, and optical mapping revealed electrical conduction that was anisotropic with a ratio of approximately 2.0, rate-dependent shortening of the action potential and slowing of conduction, and slowing of conduction by the sodium channel blocker lidocaine. Reentrant arrhythmias could also be pace-induced and terminated. EHS constitute an attractive in vitro cardiac tissue in which cardiac cells are cultured on thin slices of decellularized cardiac ECM that provide important biochemical, structural, and mechanical cues absent in traditional cell cultures.

摘要

在设计能够如实地再现生理行为的工程化心脏组织时,一个主要的考虑因素是重现天然组织复杂的拓扑结构和生物化学性质。在本研究中,我们展示了工程化心脏切片(EHS),它由接种到保留了天然细胞外基质(ECM)重要方面的去细胞化心脏组织薄片上的新生大鼠心室细胞(NRVC)组成。为了形成EHS,将大鼠或猪的心室组织切成300μm厚、直径5至16mm的圆盘,随后用去污剂进行去细胞化处理,铺展在盖玻片上,并接种NRVC。去细胞化后,ECM的有组织纤维结构得以保留,并促进细胞伸长和排列,从而形成一种各向异性的功能性组织,该组织能够进行电刺激起搏。在较高的起搏频率下收缩减弱,光学标测显示电传导是各向异性的,其比率约为2.0,动作电位的频率依赖性缩短和传导减慢,以及钠通道阻滞剂利多卡因导致的传导减慢。折返性心律失常也可由起搏诱发并终止。EHS构成了一种有吸引力的体外心脏组织,其中心脏细胞在去细胞化心脏ECM薄片上培养,该薄片提供了传统细胞培养中不存在的重要生化、结构和机械线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62ef/4780840/3e499c5eb839/nihms673906f1.jpg

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