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工程微凝胶——其制造与生物医学应用

Engineered Microgels-Their Manufacturing and Biomedical Applications.

作者信息

Alzanbaki Hamzah, Moretti Manola, Hauser Charlotte A E

机构信息

Laboratory for Nanomedicine, Division of Biological and Environmental Science and Engineering, King Abdullah University of Science and Technology, 4700 Thuwal, Jeddah 23955-6900, Saudi Arabia.

出版信息

Micromachines (Basel). 2021 Jan 1;12(1):45. doi: 10.3390/mi12010045.

Abstract

Microgels are hydrogel particles with diameters in the micrometer scale that can be fabricated in different shapes and sizes. Microgels are increasingly used for biomedical applications and for biofabrication due to their interesting features, such as injectability, modularity, porosity and tunability in respect to size, shape and mechanical properties. Fabrication methods of microgels are divided into two categories, following a top-down or bottom-up approach. Each approach has its own advantages and disadvantages and requires certain sets of materials and equipments. In this review, we discuss fabrication methods of both top-down and bottom-up approaches and point to their advantages as well as their limitations, with more focus on the bottom-up approaches. In addition, the use of microgels for a variety of biomedical applications will be discussed, including microgels for the delivery of therapeutic agents and microgels as cell carriers for the fabrication of 3D bioprinted cell-laden constructs. Microgels made from well-defined synthetic materials with a focus on rationally designed ultrashort peptides are also discussed, because they have been demonstrated to serve as an attractive alternative to much less defined naturally derived materials. Here, we will emphasize the potential and properties of ultrashort self-assembling peptides related to microgels.

摘要

微凝胶是直径在微米尺度的水凝胶颗粒,可制成不同的形状和尺寸。由于微凝胶具有一些有趣的特性,如可注射性、模块化、孔隙率以及在尺寸、形状和机械性能方面的可调性,它们在生物医学应用和生物制造中越来越受到青睐。微凝胶的制备方法分为自上而下和自下而上两类。每种方法都有其优缺点,且需要特定的材料和设备。在本综述中,我们讨论自上而下和自下而上这两种制备方法,并指出它们的优点和局限性,重点是自下而上的方法。此外,还将讨论微凝胶在各种生物医学应用中的用途,包括用于递送治疗剂的微凝胶以及作为细胞载体用于制造3D生物打印载细胞构建体的微凝胶。还将讨论由明确定义的合成材料制成的微凝胶,重点是合理设计的超短肽,因为它们已被证明是定义不太明确的天然衍生材料的有吸引力的替代品。在此,我们将强调与微凝胶相关的超短自组装肽的潜力和特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4782/7824414/74a2edf7947a/micromachines-12-00045-g001.jpg

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