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生物材料邂逅微流控技术:从合成技术到生物应用

Biomaterials Meet Microfluidics: From Synthesis Technologies to Biological Applications.

作者信息

Ma Jingyun, Wang Yachen, Liu Jing

机构信息

Regenerative Medicine Center, the First Affiliated Hospital of Dalian Medical University, Dalian 116011, China.

Stem Cell Clinical Research Center, the First Affiliated Hospital of Dalian Medical University, Dalian 116011, China.

出版信息

Micromachines (Basel). 2017 Aug 19;8(8):255. doi: 10.3390/mi8080255.

Abstract

Microfluidics is characterized by laminar flow at micro-scale dimension, high surface to volume ratio, and markedly improved heat/mass transfer. In addition, together with advantages of large-scale integration and flexible manipulation, microfluidic technology has been rapidly developed as one of the most important platforms in the field of functional biomaterial synthesis. Compared to biomaterials assisted by conventional strategies, functional biomaterials synthesized by microfluidics are with superior properties and performances, due to their controllable morphology and composition, which have shown great advantages and potential in the field of biomedicine, biosensing, and tissue engineering. Take the significance of microfluidic engineered biomaterials into consideration; this review highlights the microfluidic synthesis technologies and biomedical applications of materials. We divide microfluidic based biomaterials into four kinds. According to the material dimensionality, it includes: 0D (particulate materials), 1D (fibrous materials), 2D (sheet materials), and 3D (construct forms of materials). In particular, micro/nano-particles and micro/nano-fibers are introduced respectively. This classification standard could include all of the microfluidic biomaterials, and we envision introducing a comprehensive and overall evaluation and presentation of microfluidic based biomaterials and their applications.

摘要

微流控技术的特点是在微尺度维度上呈层流、高表面积与体积比以及显著改善的传热/传质。此外,微流控技术兼具大规模集成和灵活操控的优势,已迅速发展成为功能生物材料合成领域最重要的平台之一。与传统策略辅助合成的生物材料相比,微流控技术合成的功能生物材料具有更优异的性能,这得益于其可控的形态和组成,在生物医学、生物传感和组织工程领域展现出巨大优势和潜力。考虑到微流控工程生物材料的重要性,本文综述重点介绍了材料的微流控合成技术及其生物医学应用。我们将基于微流控的生物材料分为四类。根据材料维度,包括:0D(颗粒材料)、1D(纤维材料)、2D(片状材料)和3D(材料构建形式)。特别地,分别介绍了微/纳米颗粒和微/纳米纤维。这种分类标准可以涵盖所有基于微流控的生物材料,我们期望对基于微流控的生物材料及其应用进行全面且整体的评估与展示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db20/6190052/c4ca60ed7cf4/micromachines-08-00255-g001.jpg

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