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Core-Shell Supramolecular Gelatin Nanoparticles for Adaptive and “On-Demand” Antibiotic Delivery

机译:核-壳超分子明胶纳米颗粒用于自适应和“按需”抗生素递送

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摘要

The treatment of bacterial infection is one of the most challenging tasks in the biomedical field. Antibiotics were developed over 70 years and are regarded as the most efficient type of drug to treat bacterial infection. However, there is a concern that the overuse of antibiotics can lead to a growing number of multidrug-resistant bacteria. The development of antibiotic delivery systems to improve the biodistribution and bioavailability of antibiotics is a practical strategy for reducing the generation of antibiotic resistance and increasing the lifespan of newly developed antibiotics. Here we present an antibiotic delivery system (Van?SGNPs@RBC) based on core-shell supramolecular gelatin nanoparticles (SGNPs) for adaptive and “on-demand” antibiotic delivery. The core composed of crosslinked SGNPs allows for bacterial infection-microenvironment responsive release of antibiotics. The shell coated with uniform red blood cell membranes executes the function of disguise for reducing the clearance by the immune system during the antibiotic delivery, as well as absorbs the bacterial exotoxin to relieve symptoms caused by bacterial infection. This approach demonstrates an innovative and biomimetic antibiotic delivery system for the treatment of bacterial infection with a minimum dose of antibiotics.
机译:细菌感染的治疗是生物医学领域最具挑战性的任务之一。抗生素已开发了70多年,被认为是治疗细菌感染的最有效药物。但是,人们担心抗生素的过度使用会导致越来越多的耐多药细菌。开发抗生素递送系统以改善抗生素的生物分布和生物利用度是减少抗生素抗药性的产生并增加新开发的抗生素的寿命的实用策略。在这里,我们介绍了一种基于核-壳超分子明胶纳米颗粒(SGNPs)的抗生素递送系统(Van?SGNPs @ RBC),用于适应性和“按需”递送抗生素。由交联的SGNP组成的核心允许细菌感染-微环境响应性释放抗生素。涂有均匀的红细胞膜的外壳执行伪装功能,以减少抗生素输送过程中免疫系统的清除作用,并吸收细菌外毒素以缓解细菌感染引起的症状。这种方法展示了一种创新的仿生抗生素输送系统,可使用最小剂量的抗生素治疗细菌感染。

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