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首页> 外文期刊>Biomaterials >Near-infrared light-controllable on-demand antibiotics release using thermo-sensitive hydrogel-based drug reservoir for combating bacterial infection
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Near-infrared light-controllable on-demand antibiotics release using thermo-sensitive hydrogel-based drug reservoir for combating bacterial infection

机译:利用热敏水凝胶基药储层释放近红外光可轻型可轻型抗生素释放,用于打击细菌感染

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摘要

A near-infrared (NIR) light-triggerable thermo-sensitive hydrogel-based drug reservoir that can realize on-demand antibiotics release and hyperthermia-assisted bacterial inactivation was prepared to combat bacterial infection and promote wound healing. The drug reservoir was fabricated by mixing ciprofloxacin (Cip, a potent antibiotic)-loaded polydopamine (PDA) nanoparticles (NPs) and glycol chitosan (GC) to form an injectable hydrogel (PDA NP-Cip/GC hydrogel, abbreviated as Gel-Cip). On the one hand, the positive charge of GC and the adsorbability of PDA NPs made bacteria be readily trapped on the surface of Gel-Cip. On the other hand, the Gel-Cip exhibited minimal leakage under physiological conditions, but could boost Cip release upon NIR light irradiation. Meanwhile, NIR light irradiation could activate the photothermal PDA NPs, and the generated local hyperthermia induced the destruction of the bacterial integrity, leading to bacterial inactivation in a synergistic way. Moreover, the exceptional bacterial killing activity and outstanding wound healing ability of the system were also verified by the S. aureus-infected mouse skin defect model. Taken together, the light-activatable hydrogel-based platform allows us to release antibiotics more precisely, eliminate bacteria more effectively, and inhibit bacteria-induced infections more persistently, which will advance the development of novel antibacterial agents and strategies.
机译:近红外(NIR)可轻盈的抗生素释放和热疗辅助细菌失活的近红外(NIR)可轻松的热敏水凝胶储层用于打击细菌感染和促进伤口愈合。通过混合环丙沙星(CIP,效率)加载的多德莫胺(PDA)纳米颗粒(NPS)和乙二醇壳聚糖(GC)来制造药物储存器以形成可注射水凝胶(PDA NP-CIP / GC水凝胶,缩写为凝胶CIP )。一方面,GC的正电荷和PDA NPS的吸附性使细菌被容易地捕获在凝胶 - CIP的表面上。另一方面,在生理条件下,凝胶CIP呈现最小的泄漏,但在NIR光照射时可以提高CIP释放。同时,NIR光照射可以激活光热PDA NPS,并且产生的局部热疗诱导摧毁细菌完整性,导致促进细菌灭活的方式。此外,S.U3Surus感染的小鼠皮肤缺陷模型还验证了系统的特殊细菌杀伤活性和系统的出色伤口愈合能力。占据了光激活的水凝胶的平台,使我们能够更精确地释放抗生素,更有效地消除细菌,并更持久地抑制细菌诱导的感染,这将推进新的抗菌剂和策略的发展。

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