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季铵硅烷作为抗菌生物材料的应用最新进展:牙科中的一种新型药物递送方法

Recent Update on Applications of Quaternary Ammonium Silane as an Antibacterial Biomaterial: A Novel Drug Delivery Approach in Dentistry.

作者信息

Bapat Ranjeet Ajit, Parolia Abhishek, Chaubal Tanay, Yang Ho Jan, Kesharwani Prashant, Phaik Khoo Suan, Lin Seow Liang, Daood Umer

机构信息

Restorative Dentistry Division, School of Dentistry, International Medical University, Kuala Lumpur, Malaysia.

School of Pharmaceutical Education and Research, Jamia Hamdard (Hamdard University), New Delhi, India.

出版信息

Front Microbiol. 2022 Sep 23;13:927282. doi: 10.3389/fmicb.2022.927282. eCollection 2022.

Abstract

Quaternary ammonium silane [(QAS), codename - k21] is a novel biomaterial developed by sol-gel process having broad spectrum antimicrobial activities with low cytotoxicity. It has been used in various concentrations with maximum antimicrobial efficacy and biocompatibility. The antimicrobial mechanism is displayed contact killing, causing conformational changes within the bacterial cell membrane, inhibiting Sortase-A enzyme, and causing cell disturbances due to osmotic changes. The compound can attach to S1' pockets on matrix metalloproteinases (MMPs), leading to massive MMP enzyme inhibition, making it one of the most potent protease inhibitors. Quaternary ammonium silane has been synthesized and used in dentistry to eliminate the biofilm from dental tissues. QAS has been tested for its antibacterial activity as a cavity disinfectant, endodontic irrigant, restorative and root canal medication, and a nanocarrier for drug delivery approaches. The review is first of its kind that aims to discuss applications of QAS as a novel antibacterial biomaterial for dental applications along with discussions on its cytotoxic effects and future prospects in dentistry.

摘要

季铵硅烷[(QAS),代号 - k21]是一种通过溶胶 - 凝胶法开发的新型生物材料,具有广谱抗菌活性且细胞毒性低。它已在不同浓度下使用,具有最大的抗菌功效和生物相容性。抗菌机制表现为接触杀灭,引起细菌细胞膜内的构象变化,抑制分选酶 - A酶,并因渗透变化导致细胞紊乱。该化合物可附着于基质金属蛋白酶(MMPs)的S1'口袋,导致大量MMP酶被抑制,使其成为最有效的蛋白酶抑制剂之一。季铵硅烷已被合成并用于牙科,以清除牙齿组织上的生物膜。QAS已作为窝洞消毒剂、根管冲洗剂、修复材料和根管药物以及药物递送方法的纳米载体测试了其抗菌活性。这篇综述是同类综述中的第一篇,旨在讨论QAS作为一种新型抗菌生物材料在牙科应用中的应用,同时讨论其细胞毒性作用和牙科领域的未来前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7c9/9539660/044f08b06fc4/fmicb-13-927282-g0001.jpg

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