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基于硫醇-烯的聚合物作为用于生命科学应用的微流控器件的多功能材料。

Thiol-Ene Based Polymers as Versatile Materials for Microfluidic Devices for Life Sciences Applications.

机构信息

Department of Pharmacy, Faculty of Health and Medical Sciences, University of Copenhagen, 2100 Copenhagen, Denmark.

Faculty of Pharmaceutical Sciences, University of British Columbia, Vancouver, British Columbia V6T 1Z3, Canada.

出版信息

ACS Appl Mater Interfaces. 2020 Mar 4;12(9):10080-10095. doi: 10.1021/acsami.9b22050. Epub 2020 Feb 25.

Abstract

While there is a steady growth in the number of microfluidics applications, the search for an optimal material that delivers the diverse characteristics needed for the numerous tasks is still nowhere close to being settled. Often overlooked and still underrepresented, the thiol-ene family of polymer materials has an enormous potential for applications in organs-on-a-chip, droplet productions, microanalytics, and point of care testing. In this review, the main characteristics of the thiol-ene materials are given, and advantages and drawbacks with respect to their potential in microfluidic chip fabrication are critically assessed. Select applications, which exploit the versatility of the thiol-ene polymers, are presented and discussed. It is concluded that, in particular, the rapid prototyping possibility combined with the material's resulting mechanical strength, solvent resistance, and biocompatibility, as well as the inherently easy surface functionalization, are strong factors to make thiol-ene polymers strong contenders for promising future materials for many biological, clinical, and technical lab-on-a-chip applications.

摘要

尽管微流控应用的数量在稳步增长,但仍未找到一种能够提供多种特性的最佳材料,以满足各种任务的需求。经常被忽视且代表性不足的硫醇-烯类聚合物材料在器官芯片、液滴生产、微分析和即时检测等应用领域具有巨大的潜力。在这篇综述中,介绍了硫醇-烯材料的主要特性,并对其在微流控芯片制造中的潜在优势和缺点进行了批判性评估。介绍并讨论了利用硫醇-烯聚合物多功能性的一些应用。结论认为,特别是快速成型的可能性,结合材料的机械强度、耐溶剂性和生物相容性,以及固有的易于表面功能化等特点,使得硫醇-烯聚合物成为许多生物、临床和技术型微流控芯片应用有前途的未来材料的有力竞争者。

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