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器官芯片技术:一种研究心血管疾病的新方法。

Organ-on-a-chip technology: a novel approach to investigate cardiovascular diseases.

机构信息

Department for Vascular and Endovascular Surgery, Technical University Munich, Klinikum Rechts der Isar, Munich, Germany.

German Center for Cardiovascular Research (DZHK), Partner Site Munich Heart Alliance, Berlin, Germany.

出版信息

Cardiovasc Res. 2021 Dec 17;117(14):2742-2754. doi: 10.1093/cvr/cvab088.

Abstract

The development of organs-on-chip (OoC) has revolutionized in vitro cell-culture experiments by allowing a better mimicry of human physiology and pathophysiology that has consequently led researchers to gain more meaningful insights into disease mechanisms. Several models of hearts-on-chips and vessels-on-chips have been demonstrated to recapitulate fundamental aspects of the human cardiovascular system in the recent past. These 2D and 3D systems include synchronized beating cardiomyocytes in hearts-on-chips and vessels-on-chips with layer-based structures and the inclusion of physiological and pathological shear stress conditions. The opportunities to discover novel targets and to perform drug testing with chip-based platforms have substantially enhanced, thanks to the utilization of patient-derived cells and precise control of their microenvironment. These organ models will provide an important asset for future approaches to personalized cardiovascular medicine and improved patient care. However, certain technical and biological challenges remain, making the global utilization of OoCs to tackle unanswered questions in cardiovascular science still rather challenging. This review article aims to introduce and summarize published work on hearts- and vessels-on chips but also to provide an outlook and perspective on how these advanced in vitro systems can be used to tailor disease models with patient-specific characteristics.

摘要

器官芯片(Organ-on-a-chip)的发展通过更好地模拟人体生理学和病理生理学,彻底改变了体外细胞培养实验,使研究人员能够更深入地了解疾病机制。过去,已经有几种心脏芯片和血管芯片模型被证明能够重现人类心血管系统的基本方面。这些 2D 和 3D 系统包括心脏芯片和血管芯片中的同步跳动心肌细胞,以及基于层状结构的血管芯片和包含生理和病理切变力条件的血管芯片。由于利用了患者来源的细胞并精确控制其微环境,基于芯片的平台在发现新靶点和进行药物测试方面的机会大大增加。这些器官模型将为未来的个性化心血管医学和改善患者护理方法提供重要资产。然而,仍然存在一些技术和生物学挑战,使得全球范围内利用器官芯片来解决心血管科学中尚未解决的问题仍然具有挑战性。本文旨在介绍和总结已发表的关于心脏和血管芯片的工作,并展望这些先进的体外系统如何用于定制具有患者特异性特征的疾病模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4709/8683705/e2b46cefa8aa/cvab088f1.jpg

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