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构建芯片器官以加速转化研究。

Engineering Organ-on-a-Chip to Accelerate Translational Research.

作者信息

Ko Jihoon, Park Dohyun, Lee Somin, Gumuscu Burcu, Jeon Noo Li

机构信息

Department of Mechanical Engineering, Seoul National University, Seoul 08826, Korea.

Bio-MAX Institute, Seoul National University, Seoul 08826, Korea.

出版信息

Micromachines (Basel). 2022 Jul 28;13(8):1200. doi: 10.3390/mi13081200.

Abstract

We guide the use of organ-on-chip technology in tissue engineering applications. Organ-on-chip technology is a form of microengineered cell culture platform that elaborates the in-vivo like organ or tissue microenvironments. The organ-on-chip platform consists of microfluidic channels, cell culture chambers, and stimulus sources that emulate the in-vivo microenvironment. These platforms are typically engraved into an oxygen-permeable transparent material. Fabrication of these materials requires the use of microfabrication strategies, including soft lithography, 3D printing, and injection molding. Here we provide an overview of what is an organ-on-chip platform, where it can be used, what it is composed of, how it can be fabricated, and how it can be operated. In connection with this topic, we also introduce an overview of the recent applications, where different organs are modeled on the microscale using this technology.

摘要

我们指导器官芯片技术在组织工程应用中的使用。器官芯片技术是一种微工程细胞培养平台形式,它精心构建类似体内的器官或组织微环境。器官芯片平台由微流体通道、细胞培养室和模拟体内微环境的刺激源组成。这些平台通常刻在可透氧的透明材料上。这些材料的制造需要使用微制造策略,包括软光刻、3D打印和注塑成型。在这里,我们概述了什么是器官芯片平台、它可用于何处、它由什么组成、如何制造以及如何操作。关于这个主题,我们还介绍了近期应用的概述,即使用该技术在微观尺度上模拟不同器官的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e27/9412404/a30c869f001e/micromachines-13-01200-g002.jpg

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