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介孔硅的抗菌肽接枝和控制释放。

Grafting and controlled release of antimicrobial peptides from mesoporous silica.

机构信息

Department of Chemistry, Technical University of Darmstadt, Peter-Grünberg-Str. 8, 64287 Darmstadt, Germany.

出版信息

J Mater Chem B. 2024 Aug 22;12(33):8167-8180. doi: 10.1039/d4tb00752b.

Abstract

The grafting of antimicrobial peptides onto mesoporous silica particles and their controlled release using a green light-responsive linker, which enables tunable release-concentration-time profiles, is presented. The mesoporous silica surface is functionalized with antimicrobial peptides employing sequential functionalization steps, including the grafting of 3-[(2-propynylcarbamate)propyl]triethoxysilane (PPTEOS) as anchor, boron-dipyrromethene (BODIPY) as photosensitive linker, and C14R peptides as antimicrobial agents. Characterization using scanning electron microscopy (SEM), transmission electron microscopy (TEM), attenuated total reflectance infrared (ATR-IR) spectroscopy, and thermogravimetric analysis (TGA) validate the successful fabrication and functionalization of mesoporous silica. The ester-1,2,3-triazole-BODIPY demonstrates high sensitivity to green light and enables C14R antimicrobial peptide release with adjusted concentration-time profiles. Under the applied conditions up to 64 μg mL were released within 40 minutes. The antimicrobial activity of the released C14R on . BL21(DE3) is demonstrated. Overall, the use of the photosensitive linker not only provides a promising avenue for controlling the release of biomolecules and therapeutics but also opens up opportunities for the development of materials for targeted release in wound dressings, for example.

摘要

本文介绍了将抗菌肽接枝到介孔硅颗粒上,并使用绿光响应性连接子进行控制释放的方法。该连接子可以实现可调的释放-浓度-时间曲线。介孔硅表面通过顺序功能化步骤进行功能化,包括作为锚的 3-[(2-丙炔基氨基甲酰基)丙基]三乙氧基硅烷(PPTEOS)、作为光敏连接子的硼二吡咯甲川(BODIPY)和作为抗菌剂的 C14R 肽。扫描电子显微镜(SEM)、透射电子显微镜(TEM)、衰减全反射红外(ATR-IR)光谱和热重分析(TGA)的表征验证了介孔硅的成功制备和功能化。酯-1,2,3-三唑-BODIPY 对绿光具有高灵敏度,能够以可调的浓度-时间曲线释放 C14R 抗菌肽。在应用条件下,在 40 分钟内释放了多达 64 μg mL 的抗菌肽。释放的 C14R 在. BL21(DE3) 上的抗菌活性得到了证明。总的来说,光敏连接子的使用不仅为控制生物分子和治疗剂的释放提供了有前途的途径,而且还为例如在伤口敷料中实现靶向释放的材料的开发提供了机会。

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