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器官芯片的3D打印

3D Printing of Organs-On-Chips.

作者信息

Yi Hee-Gyeong, Lee Hyungseok, Cho Dong-Woo

机构信息

Department of Mechanical Engineering, Pohang University of Science and Technology (POSTECH), Pohang, Kyungbuk 37673, Korea.

出版信息

Bioengineering (Basel). 2017 Jan 25;4(1):10. doi: 10.3390/bioengineering4010010.

Abstract

Organ-on-a-chip engineering aims to create artificial living organs that mimic the complex and physiological responses of real organs, in order to test drugs by precisely manipulating the cells and their microenvironments. To achieve this, the artificial organs should to be microfabricated with an extracellular matrix (ECM) and various types of cells, and should recapitulate morphogenesis, cell differentiation, and functions according to the native organ. A promising strategy is 3D printing, which precisely controls the spatial distribution and layer-by-layer assembly of cells, ECMs, and other biomaterials. Owing to this unique advantage, integration of 3D printing into organ-on-a-chip engineering can facilitate the creation of micro-organs with heterogeneity, a desired 3D cellular arrangement, tissue-specific functions, or even cyclic movement within a microfluidic device. Moreover, fully 3D-printed organs-on-chips more easily incorporate other mechanical and electrical components with the chips, and can be commercialized via automated massive production. Herein, we discuss the recent advances and the potential of 3D cell-printing technology in engineering organs-on-chips, and provides the future perspectives of this technology to establish the highly reliable and useful drug-screening platforms.

摘要

器官芯片工程旨在创建能够模拟真实器官复杂生理反应的人造活体器官,以便通过精确操控细胞及其微环境来进行药物测试。要实现这一目标,人造器官应用细胞外基质(ECM)和各类细胞进行微加工制造,并应根据天然器官重现形态发生、细胞分化及功能。一种很有前景的策略是3D打印,它能精确控制细胞、ECM和其他生物材料的空间分布及逐层组装。由于这一独特优势,将3D打印整合到器官芯片工程中可促进在微流控装置内创建具有异质性、理想三维细胞排列、组织特异性功能甚至循环运动的微器官。此外,全3D打印的芯片上器官更容易将其他机械和电气组件与芯片结合,并且可以通过自动化大规模生产实现商业化。在此,我们讨论3D细胞打印技术在工程化芯片上器官方面的最新进展及潜力,并展望该技术建立高度可靠且实用的药物筛选平台的未来前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c093/5590440/64b5c6d40bd1/bioengineering-04-00010-g001.jpg

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