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自下而上构建工程化微血管的生物组装与生物打印

Bio-assembling and Bioprinting for Engineering Microvessels from the Bottom Up.

作者信息

Liu Xiaoming, Yue Tao, Kojima Masaru, Huang Qiang, Arai Tatsuo

机构信息

Key Laboratory of Biomimetic Robots and Systems, Ministry of Education, State Key Laboratory of Intelligent Control and Decision of Complex System, Beijing Advanced Innovation Center for Intelligent Robots and Systems, and School of Mechatronical Engineering, Beijing Institute of Technology, Beijing 100081, China.

School of Mechatronic Engineering and Automation, Shanghai University, Shanghai 200444, China.

出版信息

Int J Bioprint. 2021 Jun 11;7(3):366. doi: 10.18063/ijb.v7i3.366. eCollection 2021.

Abstract

Blood vessels are essential in transporting nutrients, oxygen, metabolic wastes, and maintaining the homeostasis of the whole human body. Mass of engineered microvessels is required to deliver nutrients to the cells included in the constructed large three-dimensional (3D) functional tissues by diffusion. It is a formidable challenge to regenerate microvessels and build a microvascular network, mimicking the cellular viabilities and activities in the engineered organs with traditional or existing manufacturing techniques. Modular tissue engineering adopting the "bottom-up" approach builds one-dimensional (1D) or two-dimensional (2D) modular tissues in micro scale first and then uses these modules as building blocks to generate large tissues and organs with complex but indispensable microstructural features. Building the microvascular network utilizing this approach could be appropriate and adequate. In this review, we introduced existing methods using the "bottom-up" concept developed to fabricate microvessels including bio-assembling powered by different micromanipulation techniques and bioprinting utilizing varied solidification mechanisms. We compared and discussed the features of the artificial microvessels engineered by these two strategies from multiple aspects. Regarding the future development of engineering the microvessels from the bottom up, potential directions were also concluded.

摘要

血管对于输送营养物质、氧气、代谢废物以及维持整个人体的内环境稳定至关重要。构建大量工程化微血管对于通过扩散将营养物质输送到构建的大型三维(3D)功能组织中的细胞来说是必不可少的。利用传统或现有的制造技术来再生微血管并构建微血管网络,模拟工程化器官中的细胞活力和活性,是一项艰巨的挑战。采用“自下而上”方法的模块化组织工程首先在微观尺度上构建一维(1D)或二维(2D)模块化组织,然后将这些模块作为构建单元来生成具有复杂但不可或缺的微观结构特征的大型组织和器官。利用这种方法构建微血管网络可能是合适且充分的。在本综述中,我们介绍了利用“自下而上”概念开发的用于制造微血管的现有方法,包括由不同微操作技术驱动的生物组装以及利用各种固化机制的生物打印。我们从多个方面比较和讨论了通过这两种策略构建的人工微血管的特征。关于自下而上工程化微血管的未来发展,也总结了潜在的方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/083c/8287491/8b0da3b2bfc1/IJB-7-3-366-g001.jpg

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