伤口愈合
体内
单宁酸
化学
甲壳素
血管生成
壳聚糖
体外
药理学
生物化学
医学
癌症研究
外科
生物
生物技术
有机化学
作者
Jinhui Lin,Siyaqi Li,Yunfei Ying,Weilin Zheng,Jingcheng Wu,Peiyuan Wang,Xiaolong Liu
出处
期刊:ACS omega
[American Chemical Society]
日期:2024-01-16
卷期号:9 (4): 4386-4394
被引量:14
标识
DOI:10.1021/acsomega.3c06683
摘要
Triggering the healing process of drug-resistant bacteria-infected wounds has attracted great attention due to global morbidity that may induce gangrene, amputation, and even death. Here, a chitin derivative, carboxymethyl chitosan (CMC), tannic acid (TA), and Cu2+ were used for hydrogel engineering. Using sodium bicarbonate as the neutralizer and reductant, hydrogen bonds between CMC and TA and in situ Cu(OH)2 generation via ion coordination force between Cu2+ and TA facilitated the synthesis of CMC/TA/Cu hydrogel. Cu2+ and TA release, cytotoxicity, in vitro cell migration, angiogenesis, and antidrug-resistant bacteria were measured. Besides, wound closure was evaluated in vivo using the methicillin-resistant Staphylococcus aureus (MRSA)-infected excisional dermal wound mouse model. Negligible toxicity was observed both in vitro and in vivo. Dermal cell migration and angiogenesis were significantly enhanced. In vivo, the CMC/TA/Cu hydrogel induced effective re-epithelialization, collagen deposition, inflammatory alleviation, and MRSA inhibition during wound repair in mice. All these results confirmed that the CMC/TA/Cu hydrogel is a promising novel dressing for chronic wound healing in clinic.
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