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人体芯片器官:技术现状、当前前景及未来挑战综述

Human Organs-on-Chips: A Review of the State-of-the-Art, Current Prospects, and Future Challenges.

作者信息

Zarrintaj Payam, Saeb Mohammad Reza, Stadler Florian J, Yazdi Mohsen Khodadadi, Nezhad Mojtaba Nasiri, Mohebbi Shabnam, Seidi Farzad, Ganjali Mohammad Reza, Mozafari Masoud

机构信息

School of Chemical Engineering, Oklahoma State University, 420 Engineering North, Stillwater, OK, 74078, USA.

Department of Polymer Technology, Faculty of Chemistry, Gdańsk University of Technology, G. Narutowicza 11/12, Gdańsk, 80-233, Poland.

出版信息

Adv Biol (Weinh). 2022 Jan;6(1):e2000526. doi: 10.1002/adbi.202000526. Epub 2021 Nov 27.

Abstract

New emerging technologies, remarkably miniaturized 3D organ models and microfluidics, enable simulation of the real in vitro microenvironment ex vivo more closely. There are many fascinating features of innovative organ-on-a-chip (OOC) technology, including the possibility of integrating semipermeable and/or stretchable membranes, creating continuous perfusion of fluids into microchannels and chambers (while maintaining laminar flow regime), embedding microdevices like microsensors, microstimulators, micro heaters, or different cell lines, along with other 3D cell culture technologies. OOC systems are designed to imitate the structure and function of human organs, ranging from breathing lungs to beating hearts. This technology is expected to be able to revolutionize cell biology studies, personalized precision medicine, drug development process, and cancer diagnosis/treatment. OOC systems can significantly reduce the cost associated with tedious drug development processes and the risk of adverse drug reactions in the body, which makes drug screening more effective. The review mainly focus on presenting an overview of the several previously developed OOC systems accompanied by subjects relevant to pharmacy-, cancer-, and placenta-on-a-chip. The challenging issues and opportunities related to these systems are discussed, along with a future perspective for this technology.

摘要

新兴技术,尤其是高度小型化的3D器官模型和微流控技术,能够更紧密地在体外模拟真实的体内微环境。创新的芯片器官(OOC)技术有许多引人入胜的特点,包括整合半透膜和/或可拉伸膜的可能性,实现流体向微通道和腔室的连续灌注(同时保持层流状态),嵌入诸如微传感器、微刺激器、微加热器或不同细胞系等微型装置,以及其他3D细胞培养技术。OOC系统旨在模仿人体器官的结构和功能,从呼吸的肺到跳动的心脏。这项技术有望彻底改变细胞生物学研究、个性化精准医学、药物开发过程以及癌症诊断/治疗。OOC系统可以显著降低与繁琐的药物开发过程相关的成本以及体内药物不良反应的风险,从而使药物筛选更有效。本综述主要侧重于概述几种先前开发的OOC系统,并介绍与芯片上的药学、癌症和胎盘相关的主题。讨论了与这些系统相关的具有挑战性的问题和机遇,以及这项技术的未来前景。

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