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可注射微电机@水凝胶系统用于抗菌治疗。

Injectable Micromotor@Hydrogel System for Antibacterial Therapy.

机构信息

School of Chemical Engineering & Technology, China University of Mining and Technology, No. 1, Daxue Road, Xuzhou, Jiangsu, 221116, P. R. China.

出版信息

Chemistry. 2022 Feb 1;28(7):e202103867. doi: 10.1002/chem.202103867. Epub 2022 Jan 5.

DOI:10.1002/chem.202103867
PMID:34890072
Abstract

The drug delivery system based on nano/micromotors has become a research hot spot in recent years. However, naked micromotors may be ruptured or passivated under the complex biological environment, which will result in the leakage of drugs in advance or limited self-propulsion performance. Herein, an injectable micromotor@hydrogel drug delivery system to protect micromotors from the external environment is proposed. The micromotors were prepared through layer-by-layer assembly technology. The asymmetric decomposition of hydrogen peroxide catalyzed by the locally distributed platinum nanoparticles enabled efficient propulsion of the micromotors in low concentration of hydrogen peroxide. In order to protect micromotors, they were loaded into the Schiff base hydrogel. The micromotor@hydrogel system can be injected directly into the lesion to release micromotors in response to the environment, reducing external influence on micromotors and improving the sustained-release effect. Erythromycin (Ery) loaded into the micromotors and the micromotor@hydrogel system demonstrated excellent antibacterial effect. Micromotors released from the hydrogel underwent enhanced diffusion in the surroundings of bacteria without addition of exogenous hydrogen peroxide, which was manifested by their appearance in edge of the inhibition zone. The proposed micromotor@hydrogel drug delivery system offers a new strategy for the treatment of bacterial infections.

摘要

基于纳米/微米马达的药物输送系统已成为近年来的研究热点。然而,在复杂的生物环境下,裸露的微米马达可能会破裂或钝化,从而导致药物提前泄漏或自推进性能有限。在此,提出了一种用于保护微米马达免受外部环境影响的可注射微米马达@水凝胶药物输送系统。通过层层组装技术制备了微米马达。局部分布的铂纳米粒子催化的过氧化氢的不对称分解使微米马达能够在低浓度的过氧化氢中高效推进。为了保护微米马达,将其装载到席夫碱水凝胶中。微米马达@水凝胶系统可以直接注射到病变部位,以响应环境释放微米马达,从而减少外部对微米马达的影响并提高持续释放效果。载入微马达和微米马达@水凝胶系统的红霉素(Ery)表现出优异的抗菌效果。从水凝胶中释放的微米马达在没有外加过氧化氢的情况下在细菌周围进行了增强扩散,这表现在抑菌圈边缘出现了微米马达。所提出的微米马达@水凝胶药物输送系统为细菌感染的治疗提供了一种新策略。

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