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具有 NIR 响应光疗的双金属 Cu-/Co-掺杂氮碳纳米酶功能化水凝胶的纳结构设计用于协同缓解耐药菌感染。

Nanoarchitectonics of Bimetallic Cu-/Co-Doped Nitrogen-Carbon Nanozyme-Functionalized Hydrogel with NIR-Responsive Phototherapy for Synergistic Mitigation of Drug-Resistant Bacterial Infections.

机构信息

State Key Laboratory Base of Eco-chemical Engineering, College of Chemical Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.

Department of Chemistry, College of Chemistry and Chemical Engineering, Qingdao University, Qingdao, Shandong 266071, China.

出版信息

ACS Appl Mater Interfaces. 2024 Apr 3;16(13):16011-16028. doi: 10.1021/acsami.4c01783. Epub 2024 Mar 26.

Abstract

Superbug infections and transmission have become major challenges in the contemporary medical field. The development of novel antibacterial strategies to efficiently treat bacterial infections and conquer the problem of antimicrobial resistance (AMR) is extremely important. In this paper, a bimetallic CuCo-doped nitrogen-carbon nanozyme-functionalized hydrogel (CuCo/NC-HG) has been successfully constructed. It exhibits photoresponsive-enhanced enzymatic effects under near-infrared (NIR) irradiation (808 nm) with strong peroxidase (POD)-like and oxidase (OXD)-like activities. Upon NIR irradiation, CuCo/NC-HG possesses photodynamic activity for producing singlet oxygen(O), and it also has a high photothermal conversion effect, which not only facilitates the elimination of bacteria but also improves the efficiency of reactive oxygen species (ROS) production and accelerates the consumption of GSH. CuCo/NC-HG shows a lower hemolytic rate and better cytocompatibility than CuCo/NC and possesses a positive charge and macroporous skeleton for restricting negatively charged bacteria in the range of ROS destruction, strengthening the antibacterial efficiency. Comparatively, CuCo/NC and CuCo/NC-HG have stronger bactericidal ability against methicillin-resistant (MRSA) and ampicillin-resistant (Amp) through destroying the cell membranes with a negligible occurrence of AMR. More importantly, CuCo/NC-HG plus NIR irradiation can exhibit satisfactory bactericidal performance in the absence of HO, avoiding the toxicity from high-concentration HO. In vivo evaluation has been conducted using a mouse wound infection model and histological analyses, and the results show that CuCo/NC-HG upon NIR irradiation can efficiently suppress bacterial infections and promote wound healing, without causing inflammation and tissue adhesions.

摘要

超级细菌感染和传播已经成为当代医学领域的主要挑战。开发新型抗菌策略以有效治疗细菌感染并克服抗菌药物耐药性(AMR)问题非常重要。本文构建了一种双金属 CuCo 掺杂氮碳纳米酶功能化水凝胶(CuCo/NC-HG)。它在近红外(NIR)照射(808nm)下表现出光响应增强的酶促效应,具有强烈的过氧化物酶(POD)样和氧化酶(OXD)样活性。在 NIR 照射下,CuCo/NC-HG 具有产生单线态氧(O)的光动力活性,并且还具有高光热转换效应,这不仅有助于消除细菌,而且提高了活性氧(ROS)产生的效率并加速了 GSH 的消耗。与 CuCo/NC 相比,CuCo/NC-HG 具有更低的溶血率和更好的细胞相容性,并且具有正电荷和大孔骨架,可以限制 ROS 破坏范围内的带负电荷的细菌,从而增强抗菌效率。相比之下,CuCo/NC 和 CuCo/NC-HG 通过破坏细胞膜对耐甲氧西林金黄色葡萄球菌(MRSA)和氨苄西林耐药(Amp)具有更强的杀菌能力,而不会产生 AMR。更重要的是,在不存在 HO 的情况下,CuCo/NC-HG 加 NIR 照射可以表现出令人满意的杀菌性能,从而避免了高浓度 HO 的毒性。使用小鼠伤口感染模型和组织学分析进行了体内评估,结果表明,CuCo/NC-HG 在 NIR 照射下可以有效抑制细菌感染并促进伤口愈合,而不会引起炎症和组织粘连。

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