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尿素-脲酶反应在超分子水凝胶性能控制中的利弊。

Urea-Urease Reaction in Controlling Properties of Supramolecular Hydrogels: Pros and Cons.

机构信息

School of Chemistry, University of Glasgow, Glasgow, G12 8QQ, UK.

出版信息

Chemistry. 2021 Jun 21;27(35):8928-8939. doi: 10.1002/chem.202100490. Epub 2021 May 13.

Abstract

Supramolecular hydrogels are useful in many areas such as cell culturing, catalysis, sensing, tissue engineering, drug delivery, environmental remediation and optoelectronics. The gels need specific properties for each application. The properties arise from a fibrous network that forms the matrix. A common method to prepare hydrogels is to use a pH change. Most methods result in a sudden pH jump and often lead to gels that are hard to reproduce and control. The urease-urea reaction can be used to control hydrogel properties by a uniform and controlled pH increase as well as to set up pH cycles. The reaction involves hydrolysis of urea by urease and production of ammonia which increases the pH. The rate of ammonia production can be controlled which can be used to prepare gels with differing properties. Herein, we show how the urease-urea reaction can be used for the construction of next generation functional materials.

摘要

超分子水凝胶在细胞培养、催化、传感、组织工程、药物输送、环境修复和光电子学等许多领域都有应用。凝胶需要针对每种应用具有特定的性质。这些性质源于形成基质的纤维网络。制备水凝胶的一种常见方法是使用 pH 值变化。大多数方法导致 pH 值突然跳跃,并且经常导致难以重复和控制的凝胶。脲酶-尿素反应可用于通过均匀和受控的 pH 值增加以及设置 pH 循环来控制水凝胶性质。该反应涉及脲酶对尿素的水解以及氨的生成,从而增加 pH 值。氨的生成速率可以控制,这可以用于制备具有不同性质的凝胶。在此,我们展示了脲酶-尿素反应如何用于构建下一代功能材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31c7/8360084/12565a881f1b/CHEM-27-8928-g012.jpg

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