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近红外光可控多功能介孔聚多巴胺纳米复合材料促进感染性伤口愈合。

Near-Infrared Light-Controllable Multifunction Mesoporous Polydopamine Nanocomposites for Promoting Infected Wound Healing.

机构信息

Orthopedic Research Institution, Department of Orthopedics, West China Hospital, Sichuan University, Chengdu 610041, China.

Health Management Center, West China Hospital/West China School of Medicine, Sichuan University, Chengdu 610041, China.

出版信息

ACS Appl Mater Interfaces. 2022 Jan 19;14(2):2534-2550. doi: 10.1021/acsami.1c19209. Epub 2022 Jan 5.

Abstract

The successful treatment of infected wounds requires strategies with effective antimicrobial, anti-inflammatory, and healing-promoting properties. Accordingly, the use of Cu and tetracycline (TC), which can promote angiogenesis, re-epithelialization, and collagen deposition, also antibacterial activity, at the wound site, has shown application prospects in promoting infected wound repair. However, realizing controllable release to prolong action time and avoid potential toxicities is critical. Moreover, near-infrared light (NIR)-activated mesoporous polydopamine nanoparticles (MPDA NPs) reportedly exert anti-inflammatory effects by eliminating the reactive oxygen species generated during inflammatory responses. In this study, we assess whether Cu and TC loaded in MPDA NPs can accelerate infected wound healing in mice. In particular, Cu is chelated and immobilized on the surface of MPDA NPs, while a thermosensitive phase-change material (PCM; melting point: 39-40 °C), combined with antibiotics, was loaded into the MPDA NPs as a gatekeeper (PPMD@Cu/TC). Results show that PPMD@Cu/TC exhibits significant great photothermal properties with NIR irradiation, which induces the release of Cu, while inducing PCM melting and, subsequent, TC release. In combination with anti-inflammatory therapy, NIR-triggered Cu and TC release enables the nanocomposite to eradicate bacterial wound infections and accelerate healing. Importantly, negligible damage to primary organs and satisfactory biocompatibility were observed in the murine model. Collectively, these findings highlight the therapeutic potential of this MPDA-based platform for controlling bacterial infection and accelerating wound healing.

摘要

受感染伤口的成功治疗需要具有有效抗菌、抗炎和促进愈合特性的策略。因此,在伤口部位使用铜和四环素(TC),它们可以促进血管生成、再上皮化和胶原蛋白沉积,同时具有抗菌活性,在促进感染性伤口修复方面显示出应用前景。然而,实现可控释放以延长作用时间并避免潜在毒性至关重要。此外,近红外光(NIR)激活的介孔聚多巴胺纳米粒子(MPDA NPs)据报道通过消除炎症反应过程中产生的活性氧来发挥抗炎作用。在本研究中,我们评估了负载在 MPDA NPs 中的铜和 TC 是否可以加速小鼠感染性伤口的愈合。具体来说,Cu 螯合并固定在 MPDA NPs 的表面,而将相变材料(PCM;熔点:39-40°C)与抗生素结合并装载到 MPDA NPs 中作为门控(PPMD@Cu/TC)。结果表明,PPMD@Cu/TC 在近红外照射下表现出显著的优异光热性能,这会诱导 Cu 的释放,同时诱导 PCM 熔化,随后释放 TC。结合抗炎治疗,NIR 触发的 Cu 和 TC 释放使纳米复合材料能够消除细菌感染并加速愈合。重要的是,在小鼠模型中观察到对主要器官的微小损伤和令人满意的生物相容性。总的来说,这些发现突出了基于这种 MPDA 的平台在控制细菌感染和加速伤口愈合方面的治疗潜力。

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