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合理的生物界面工程:受淀粉样超分子微观结构启发的水凝胶

Rational Biological Interface Engineering: Amyloidal Supramolecular Microstructure-Inspired Hydrogel.

作者信息

Xuan Qize, Wang Yibing, Chen Chao, Wang Ping

机构信息

State Key Laboratory of Bioreactor Engineering, School of Biotechnology, East China University of Science and Technology, Shanghai, China.

Department of Bioproducts and Biosystems Engineering, University of Minnesota, Saint Paul, MN, United States.

出版信息

Front Bioeng Biotechnol. 2021 Jul 19;9:718883. doi: 10.3389/fbioe.2021.718883. eCollection 2021.

Abstract

Amyloidal proteins, which are prone to form fibrillar and ordered aggregates and , underlie the mechanism for neurodegenerative disorders and also play essential functions in the process of life. Amyloid fibrils typically adopt a distinctive β-sheet structure, which renders them with inherent extracellular matrix (ECM)-mimicking properties, such as powerful mechanical strength, promising adhesion, and antibacterial activity. Additionally, amyloidal proteins are a category of programmable self-assembled macromolecules, and their assembly and consequent nanostructure can be manipulated rationally. The above advantages motivate researchers to investigate the potential of amyloidal proteins as a novel type of hydrogel material. Currently, the amyloid-inspired hydrogel has become an emerging area and has been widely applied in a variety of biomedical fields, such as tissue repair, cell scaffolds, and drug delivery. In this review, we focus on the discussion of molecular mechanisms underlying the hydrogenation of amyloidal proteins, and introduce the advances achieved in biomedical applications of amyloid-inspired hydrogels.

摘要

淀粉样蛋白易于形成纤维状且有序的聚集体,是神经退行性疾病发病机制的基础,同时在生命过程中也发挥着重要作用。淀粉样纤维通常具有独特的β-折叠结构,使其具有类似细胞外基质(ECM)的固有特性,如强大的机械强度、良好的黏附性和抗菌活性。此外,淀粉样蛋白是一类可编程的自组装大分子,其组装过程及由此产生的纳米结构可以得到合理调控。上述优点促使研究人员探索淀粉样蛋白作为新型水凝胶材料的潜力。目前,受淀粉样蛋白启发的水凝胶已成为一个新兴领域,并已广泛应用于多种生物医学领域,如组织修复、细胞支架和药物递送。在本综述中,我们重点讨论淀粉样蛋白水合作用的分子机制,并介绍受淀粉样蛋白启发的水凝胶在生物医学应用方面取得的进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c27c/8327773/1cabddeecdad/fbioe-09-718883-s001.jpg

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