Gong Wei, Huang Hai-Bo, Wang Xin-Chuang, He Wan-Ying, Hu Jiang-Ning
School of Food Science and Technology, Dalian Polytechnic University, Dalian 116034, China.
Collaborative Innovation Center of Seafood Deep Processing, Dalian Polytechnic University, Dalian 116034, China.
ACS Biomater Sci Eng. 2023 Jan 9;9(1):375-387. doi: 10.1021/acsbiomaterials.2c00716. Epub 2022 Dec 15.
Wound healing remains a critical challenge due to its vulnerability to bacterial infection and the complicated inflammatory microenvironment. Herein, we report a novel antibacterial hydrogel constructed only by gallic acid (GA) and phycocyanin (PC), which is expected for the treatment of bacteria-infected wounds. These GA/PC hydrogels (GP) was found to coassemble into fibrous networks with a diameter of around 2 μm mainly through noncovalent interactions of hydrogen bonds, van der Waals force, and π interaction. Notably, these GP hydrogels showed excellent rheological properties (i.e., storage modulus of more than 9.0 × 10 Pa) and outstanding biocompatibility and antibacterial activities. Thanks to the incorporation of GA and PC, the GP hydrogels enabled adherence to the moist wound tissue and achieved a sustained release of GA and PC into the wound skin, therefore effectively attenuating inflammation and accelerating wound healing both in normal mice and bacteria-infected mice through regulating the expression of the tight junction protein and the alleviation of oxidative stress. Considering these results, these GP hydrogels are demonstrated to be a promising candidate for bacteria-infected wound healing.
由于伤口易受细菌感染且炎症微环境复杂,伤口愈合仍然是一个严峻的挑战。在此,我们报道了一种仅由没食子酸(GA)和藻蓝蛋白(PC)构建的新型抗菌水凝胶,有望用于治疗细菌感染伤口。发现这些GA/PC水凝胶(GP)主要通过氢键、范德华力和π相互作用的非共价相互作用共组装成直径约为2μm的纤维网络。值得注意的是,这些GP水凝胶表现出优异的流变学性能(即储能模量超过9.0×10 Pa)以及出色的生物相容性和抗菌活性。由于GA和PC的掺入,GP水凝胶能够粘附于湿润的伤口组织,并实现GA和PC向伤口皮肤的持续释放,从而通过调节紧密连接蛋白的表达和减轻氧化应激,有效减轻正常小鼠和细菌感染小鼠的炎症并加速伤口愈合。考虑到这些结果,这些GP水凝胶被证明是细菌感染伤口愈合的有前途的候选材料。