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用于心血管研究的仿生微系统。

Biomimetic microsystems for cardiovascular studies.

机构信息

Cardiovascular Tissue Engineering Laboratory, Biomedical Engineering Department, Cullen College of Engineering, University of Houston, Houston, Texas.

出版信息

Am J Physiol Cell Physiol. 2021 May 1;320(5):C850-C872. doi: 10.1152/ajpcell.00026.2020. Epub 2021 Mar 24.

Abstract

Traditional tissue culture platforms have been around for several decades and have enabled key findings in the cardiovascular field. However, these platforms failed to recreate the mechanical and dynamic features found within the body. Organs-on-chips (OOCs) are cellularized microfluidic-based devices that can mimic the basic structure, function, and responses of organs. These systems have been successfully utilized in disease, development, and drug studies. OOCs are designed to recapitulate the mechanical, electrical, chemical, and structural features of the in vivo microenvironment. Here, we review cardiovascular-themed OOC studies, design considerations, and techniques used to generate these cellularized devices. Furthermore, we will highlight the advantages of OOC models over traditional cell culture vessels, discuss implementation challenges, and provide perspectives on the state of the field.

摘要

传统的组织培养平台已经存在了几十年,为心血管领域的关键发现提供了支持。然而,这些平台未能再现体内存在的机械和动态特征。器官芯片(OOC)是基于细胞的微流控设备,可以模拟器官的基本结构、功能和反应。这些系统已成功应用于疾病、发育和药物研究。OOC 旨在再现体内微环境的机械、电气、化学和结构特征。在这里,我们回顾了心血管主题的 OOC 研究、设计考虑因素以及用于生成这些细胞化设备的技术。此外,我们将重点介绍 OOC 模型相对于传统细胞培养容器的优势,讨论实施挑战,并对该领域的现状提供展望。

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