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氧化锌纳米粒子的合成、抗菌、抗氧化、抗糖尿病和组织再生活性的最新综述。

A state of the art review on the synthesis, antibacterial, antioxidant, antidiabetic and tissue regeneration activities of zinc oxide nanoparticles.

机构信息

School of Advanced Chemical Sciences, Faculty of Basic Sciences, Shoolini University, Solan, Himachal Pradesh 173212, India.

Division of Molecular Medicine, Bose Institute, P-1/12, CIT Scheme VII M, Kolkata 700054, India.

出版信息

Adv Colloid Interface Sci. 2021 Sep;295:102495. doi: 10.1016/j.cis.2021.102495. Epub 2021 Jul 25.

Abstract

Recently, zinc oxide nanoparticles (ZnONPs) are gaining much interest of nanobiotechnologists due to their profound biomedical applications. ZnONPs are used as antibacterial agents, which cause both gram-positive and negative bacterial cell death through the generation of reactive free radicals as well as membrane rupture. ZnONPs show excellent antioxidant properties in normal mammalian cells via the scavenging of reactive free radicals and up-regulation of antioxidant enzyme activities. Besides, it also shows hypoglycaemic effect in diabetic animals via pancreatic β-cells mediated increased insulin secretion and glucose uptake by liver, skeletal muscles and adipose tissues. Among the other potential applications, ZnONPs-induced bone and soft-tissue regeneration open a new horizon in the field of tissue engineering. Here, first we reviewed the complete synthesis routes of ZnONPs by physical, chemical, and biological pathways as well as outlined the advantages and disadvantages of the techniques. Further, we discussed the several important aspects of physicochemical analysis of ZnONPs. Additionally, we extensively reviewed the important biomedical applications of ZnONPs as antibacterial, antioxidant, and antidiabetic agents, and in the field of tissue engineering with special emphasis on their mechanisms of actions. Furthermore, the future perspectives of the ZnONPs are also discussed.

摘要

最近,氧化锌纳米粒子(ZnONPs)由于其在生物医学中的广泛应用而引起了纳米生物技术学家的极大兴趣。ZnONPs 被用作抗菌剂,通过产生活性自由基以及破坏细胞膜而导致革兰氏阳性和阴性细菌细胞死亡。ZnONPs 通过清除活性自由基和上调抗氧化酶活性,在正常哺乳动物细胞中表现出优异的抗氧化性能。此外,它还通过胰腺 β 细胞介导的增加胰岛素分泌以及肝脏、骨骼肌和脂肪组织的葡萄糖摄取,在糖尿病动物中表现出降血糖作用。在其他潜在应用中,ZnONPs 诱导的骨和软组织再生为组织工程领域开辟了新的视野。在这里,我们首先综述了通过物理、化学和生物途径合成 ZnONPs 的完整路线,并概述了这些技术的优缺点。此外,我们还讨论了 ZnONPs 的物理化学分析的几个重要方面。此外,我们还广泛综述了 ZnONPs 在抗菌、抗氧化和抗糖尿病药物以及组织工程领域的重要生物医学应用,特别强调了它们的作用机制。此外,还讨论了 ZnONPs 的未来前景。

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