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铜基金属有机框架嵌入羧甲基壳聚糖-γ-谷胱甘肽/聚丙烯酰胺水凝胶用于杀菌和促进伤口愈合。

Copper metal-organic framework embedded carboxymethyl chitosan-g-glutathione/polyacrylamide hydrogels for killing bacteria and promoting wound healing.

机构信息

Institute of Polymer Materials, School of Materials Science and Engineering, South China University of Technology, Guangzhou, Guangdong 510275, PR China.

Shenzhen University General Hospital, Shenzhen University, Shenzhen, Guangdong 518055, PR China.

出版信息

Int J Biol Macromol. 2021 Sep 30;187:699-709. doi: 10.1016/j.ijbiomac.2021.07.139. Epub 2021 Jul 28.

Abstract

Bacterial infection and its induced oxidative stress as major clinical challenge during wound healing call for an urgent response for the development of medical dressings with multi-functions, such as antioxidant and antibacterial. To meet this demand, copper metal organic framework nanoparticles (HKUST NPs) and carboxymethyl chitosan-g-glutathione (CMCs-GSH) were synthesized and characterized. By embedding HKUST NPs into PAM/CMCs-GSH hydrogel (AOH), we developed a novel hydrogel dressing (HKUST-Hs) with dual effects of antibacterial and antioxidant. The morphology, swelling behavior, oxidation resistance and antibacterial properties of HKUST-Hs were investigated as well as the slow-release behavior of copper ions. Full-thickness cutaneous wound model of rats was created to assess the promoting effect of HKUST-Hs on wound healing. We found that HKUST NPs could be well dispersed in HKUST-Hs by shielding the positive charge of copper ions, and thus copper ions released were uniformly distributed and chelated with CMCs-GSH to promote the swelling stability of HKUST-Hs. Also, HKUST-Hs exhibited good free radical scavenging ability in vitro antioxidant assay. Meanwhile, a gradient sustained-release system of copper ions was formed in HKUST-Hs owing to the inhibition of HKUST NPs to copper release and the chelation of CMCs-GSH, which effectively inhibited the explosive release of copper ions and prolonged the release period, thereby reducing cytotoxicity. In vitro antibacterial test demonstrated there was synergistic antibacterial effect between the slow-released copper ions and CMCs-GSH, which improved the antibacterial activity and antibacterial persistence of HKUST-Hs. Finally, HKUST-Hs accelerated wound healing in vivo by continuously killing bacteria and inhibiting oxidative stress.

摘要

细菌感染及其诱导的氧化应激是伤口愈合过程中的主要临床挑战,因此迫切需要开发具有抗氧化和抗菌等多种功能的医用敷料。为了满足这一需求,合成并表征了铜金属有机骨架纳米粒子(HKUST NPs)和羧甲基壳聚糖-γ-谷胱甘肽(CMCs-GSH)。通过将 HKUST NPs 嵌入 PAM/CMCs-GSH 水凝胶(AOH)中,我们开发了一种具有抗菌和抗氧化双重作用的新型水凝胶敷料(HKUST-Hs)。研究了 HKUST-Hs 的形态、溶胀行为、抗氧化和抗菌性能以及铜离子的缓释行为。建立了大鼠全层皮肤创面模型,以评估 HKUST-Hs 对伤口愈合的促进作用。结果发现,通过屏蔽铜离子的正电荷,HKUST NPs 可以很好地分散在 HKUST-Hs 中,从而使释放的铜离子均匀分布并与 CMCs-GSH 螯合,促进 HKUST-Hs 的溶胀稳定性。此外,HKUST-Hs 在体外抗氧化试验中表现出良好的自由基清除能力。同时,由于 HKUST NPs 对铜释放的抑制作用和 CMCs-GSH 的螯合作用,在 HKUST-Hs 中形成了梯度持续释放铜离子的体系,有效抑制了铜离子的爆发式释放,延长了释放周期,从而降低了细胞毒性。体外抗菌试验表明,缓慢释放的铜离子与 CMCs-GSH 之间存在协同抗菌作用,提高了 HKUST-Hs 的抗菌活性和抗菌持久性。最后,HKUST-Hs 通过持续杀菌和抑制氧化应激作用在体内加速了伤口愈合。

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