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超越水合网络的工程水凝胶。

Engineering Hydrogels beyond a Hydrated Network.

机构信息

Rudolf-Schönheimer-Institute of Biochemistry, Faculty of Medicine, Leipzig University, Johannisallee 30, 04103, Leipzig, Germany.

B CUBE Center for Molecular Bioengineering, Technische Universität Dresden, Tatzberg 41, 01307, Dresden, Germany.

出版信息

Adv Healthc Mater. 2019 Jul;8(14):e1900038. doi: 10.1002/adhm.201900038. Epub 2019 Apr 16.

Abstract

In recent years, many mechanical, physical, chemical, and biochemical features of biomatrices have emerged as important properties to dictate the fates of cells. To construct chemically defined biomaterials to recapitulate various biological niches for both cell biology research and therapeutic utilities, it has become increasingly clear that a simple hydrated polymer network would not be able to provide the complex cues and signaling required for many types of cells. The researchers are facing a growing list of mechanophysical and biochemical properties, while each of them could be an important cellular trigger. To include all these design parameters in screening and synthesis is practically difficult, if not impossible. Developing novel high throughput screening technology by combining assay miniaturization, computer simulations, and modeling can help researchers to tackle the challenge to identify the most relevant parameters to tailor materials for specific applications.

摘要

近年来,生物基质的许多机械、物理、化学和生化特性已经成为决定细胞命运的重要特性。为了构建化学定义的生物材料,以再现细胞生物学研究和治疗应用的各种生物龛,越来越明显的是,简单的水合聚合物网络将无法提供许多类型的细胞所需的复杂线索和信号。研究人员面临着越来越多的力学物理和生化特性,而每一个特性都可能是一个重要的细胞触发因素。如果不是不可能的话,将所有这些设计参数纳入筛选和合成实际上是非常困难的。通过将分析微型化、计算机模拟和建模相结合,开发新型高通量筛选技术可以帮助研究人员应对挑战,确定最相关的参数,以针对特定应用定制材料。

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