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超顺排碳纳米管引导定向细胞生长并促进合成心脏组织的电生理均一性。

Superaligned Carbon Nanotubes Guide Oriented Cell Growth and Promote Electrophysiological Homogeneity for Synthetic Cardiac Tissues.

机构信息

Xinhua Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, 200092, China.

State Key Laboratory of Molecular Engineering of Polymers, Department of Macromolecular Science, and Laboratory of Advanced Materials, Fudan University, Shanghai, 200438, China.

出版信息

Adv Mater. 2017 Nov;29(44). doi: 10.1002/adma.201702713. Epub 2017 Oct 11.

Abstract

Cardiac engineering of patches and tissues is a promising option to restore infarcted hearts, by seeding cardiac cells onto scaffolds and nurturing their growth in vitro. However, current patches fail to fully imitate the hierarchically aligned structure in the natural myocardium, the fast electrotonic propagation, and the subsequent synchronized contractions. Here, superaligned carbon-nanotube sheets (SA-CNTs) are explored to culture cardiomyocytes, mimicking the aligned structure and electrical-impulse transmission behavior of the natural myocardium. The SA-CNTs not only induce an elongated and aligned cell morphology of cultured cardiomyocytes, but also provide efficient extracellular signal-transmission pathways required for regular and synchronous cell contractions. Furthermore, the SA-CNTs can reduce the beat-to-beat and cell-to-cell dispersion in repolarization of cultured cells, which is essential for a normal beating rhythm, and potentially reduce the occurrence of arrhythmias. Finally, SA-CNT-based flexible one-piece electrodes demonstrate a multipoint pacing function. These combined high properties make SA-CNTs promising in applications in cardiac resynchronization therapy in patients with heart failure and following myocardial infarctions.

摘要

贴片和组织的心脏工程学是一种有前途的选择,可以通过将心脏细胞接种到支架上并在体外培养其生长来修复梗死的心脏。然而,目前的贴片未能完全模仿天然心肌中的分层排列结构、快速电冲动传播以及随后的同步收缩。在这里,探索了超取向碳纳米管片(SA-CNTs)来培养心肌细胞,模拟天然心肌的排列结构和电脉冲传输行为。SA-CNTs 不仅诱导培养的心肌细胞呈现出拉长和对齐的细胞形态,还提供了用于正常和同步细胞收缩所需的高效细胞外信号传输途径。此外,SA-CNTs 可以减少培养细胞复极化过程中的搏动间和细胞间的离散,这对于正常的搏动节律至关重要,并可能减少心律失常的发生。最后,基于 SA-CNTs 的柔性一体式电极表现出多点起搏功能。这些综合的优良性能使 SA-CNTs 在心力衰竭和心肌梗死患者的心脏再同步治疗以及后续应用中具有广阔的应用前景。

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