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原位电纺姜黄素复合纳米纤维对耐药细菌的双重抗菌作用

Dual Antibacterial Effect of In Situ Electrospun Curcumin Composite Nanofibers to Sterilize Drug-Resistant Bacteria.

作者信息

Liu Chun-Li, Yang Jun, Bai Xiao-Han, Cao Zhi-Kai, Yang Chen, Ramakrishna Seeram, Yang Da-Peng, Zhang Jun, Long Yun-Ze

机构信息

Collaborative Innovation Center for Nanomaterials and Devices, College of Physics, Qingdao University, Qingdao, 266071, China.

Center for Nanofibers and Nanotechnology, Department of Mechanical Engineering, National University of Singapore, Singapore, 117574, Singapore.

出版信息

Nanoscale Res Lett. 2021 Apr 7;16(1):54. doi: 10.1186/s11671-021-03513-2.

Abstract

Bacterial infection especially caused by multidrug-resistant bacteria still endangers human life. Photodynamic therapy (PDT) can effectively kill bacteria, and nanofiber-based PDT can effectively reduce damage to normal tissues. However, current photosensitizers coated on the surfaces of fibers would release to the wound, causing some side effects. And nanofibers prepared by traditional method exhibit poor adhesion on the wound, which severely reduces the PDT effect due to its short-range effect. Herein, core-shell curcumin composite nanofibers are prepared by in situ electrospinning method via a self-made portable electrospinning device. The obtained composite nanofibers show superior adhesiveness on different biological surface than that of traditional preparation method. Upon 808-nm irradiation, these composite nanofibers effectively produced singlet oxygen (O) without curcumin falling off. After these composite nanofibers' exposure to drug-resistant bacteria, they exhibit dual antibacterial behaviors and efficiently kill the drug-resistant bacteria. These dual antibacterial nanofiber membranes with excellent adhesiveness may benefit the application of wound infection as antibacterial dressing.

摘要

细菌感染,尤其是由多重耐药菌引起的感染,仍然危及人类生命。光动力疗法(PDT)可以有效杀灭细菌,基于纳米纤维的光动力疗法可以有效减少对正常组织的损伤。然而,目前涂覆在纤维表面的光敏剂会释放到伤口,引发一些副作用。并且传统方法制备的纳米纤维在伤口上的粘附性较差,由于其短程效应,严重降低了光动力疗法的效果。在此,通过自制的便携式静电纺丝装置,采用原位静电纺丝法制备了核壳姜黄素复合纳米纤维。与传统制备方法相比,所制备的复合纳米纤维在不同生物表面上表现出优异的粘附性。在808 nm激光照射下,这些复合纳米纤维能有效产生活性单线态氧(O),且姜黄素不会脱落。这些复合纳米纤维与耐药菌接触后,表现出双重抗菌行为,能有效杀灭耐药菌。这些具有优异粘附性的双重抗菌纳米纤维膜有望作为抗菌敷料应用于伤口感染治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf5b/8026794/632193f9ec61/11671_2021_3513_Fig1_HTML.jpg

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