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用于生物医学应用的基于钙的生物材料的葡萄糖氧化酶指导的生物矿化。

Glucose oxidase-instructed biomineralization of calcium-based biomaterials for biomedical applications.

作者信息

Fu Lian-Hua, Qi Chao, Sun Tuanwei, Huang Kai, Lin Jing, Huang Peng

机构信息

Marshall Laboratory of Biomedical Engineering International Cancer Center, Laboratory of Evolutionary Theranostics (LET) School of Biomedical Engineering Shenzhen University Medical School Shenzhen University Shenzhen China.

Department of Materials Science and Engineering University of Toronto Toronto Ontario Canada.

出版信息

Exploration (Beijing). 2023 Jul 11;3(6):20210110. doi: 10.1002/EXP.20210110. eCollection 2023 Dec.

Abstract

In recent years, glucose oxidase (GOx) has aroused great research interest in the treatment of diseases related to abnormal glucose metabolisms like cancer and diabetes. However, as a kind of endogenous oxido-reductase, GOx suffers from poor stability and system toxicity in vivo. In order to overcome this bottleneck, GOx is encapsulated in calcium-based biomaterials (CaXs) such as calcium phosphate (CaP) and calcium carbonate (CaCO) by using it as a biotemplate to simulate the natural biomineralization process. The biomineralized GOx holds improved stability and reduced side effects, due to the excellent bioactivity, biocompatibitliy, and biodegradability of CaXs. In this review, the state-of-the-art studies on GOx-mineralized CaXs are introduced with an emphasis on their application in various biomedical fields including disease diagnosis, cancer treatment, and diabetes management. The current challenges and future perspectives of GOx-mineralized CaXs are discussed, which is expected to promote further studies on these smart GOx-mineralized CaXs biomaterials for practical applications.

摘要

近年来,葡萄糖氧化酶(GOx)在治疗与葡萄糖代谢异常相关的疾病(如癌症和糖尿病)方面引起了极大的研究兴趣。然而,作为一种内源性氧化还原酶,GOx在体内稳定性差且具有系统毒性。为了克服这一瓶颈,通过将GOx用作生物模板来模拟天然生物矿化过程,将其封装在钙基生物材料(CaXs)中,如磷酸钙(CaP)和碳酸钙(CaCO)。由于CaXs具有优异的生物活性、生物相容性和生物降解性,生物矿化的GOx具有更高的稳定性和更低的副作用。在这篇综述中,介绍了关于GOx矿化CaXs的最新研究,重点介绍了它们在包括疾病诊断、癌症治疗和糖尿病管理在内的各种生物医学领域的应用。讨论了GOx矿化CaXs目前面临的挑战和未来前景,有望促进对这些智能GOx矿化CaXs生物材料进行进一步的实际应用研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5dd5/10742215/16bec4e50fb7/EXP2-3-20210110-g002.jpg

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