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具有抗菌和抗炎功能的正电荷细菌纤维素水凝胶的生物合成及其在高效伤口愈合中的应用。

Biosynthesis of positively charged bacterial cellulose hydrogel with antibacterial and anti-inflammatory function for efficient wound healing.

机构信息

Engineering Research Center of Dairy Quality and Safety Control Technology, Ministry of Education, College of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot 010021, China.

Key Laboratory of Dairy Biotechnology and Engineering, Education Ministry of People's Republic of China, Inner Mongolia Agricultural University, Hohhot 010018, China.

出版信息

Int J Biol Macromol. 2024 Nov;279(Pt 3):135263. doi: 10.1016/j.ijbiomac.2024.135263. Epub 2024 Sep 5.

Abstract

In bacterial cellulose (BC)-based living materials, the effective and permanent incorporation of bactericidal agents into BC remains a persistent challenge. In this study, midazole quaternary ammonium salt was grafted onto a dispersion of bacterial cellulose, which was subsequently directly added to the fermentation medium of BC-producing bacteria to obtain BC-based hydrogel materials (BC/BC-[PQVI]Br) with inherent antibacterial properties. The BC/BC-[PQVI]Br hydrogel prepared in this study exhibits favorable tensile properties, with a maximum tensile stress of 970 KPa and water retention for up to 6 h. Moreover, it demonstrates acceptable antibacterial activity against S. aureus (93 %) and E. coli (71 %), respectively. Additionally, the hydrogel displays a high cell survival rate of 98 % after contact with NIH 3T3 cells, indicating its non-cytotoxic nature. Furthermore, the mouse wound experiment confirms the excellent wound healing effect of the hydrogel. This research presents an innovative approach towards developing environmentally friendly active wound dressings with microbial-derived antibacterial functionality.

摘要

在基于细菌纤维素(BC)的生物材料中,将杀菌剂有效且永久地掺入 BC 仍然是一个持续存在的挑战。在这项研究中,咪唑季铵盐被接枝到细菌纤维素的分散体上,然后将其直接添加到 BC 产生菌的发酵培养基中,从而获得具有固有抗菌性能的基于 BC 的水凝胶材料(BC/BC-[PQVI]Br)。本研究中制备的 BC/BC-[PQVI]Br 水凝胶具有良好的拉伸性能,最大拉伸应力为 970kPa,保水时间长达 6 小时。此外,它对金黄色葡萄球菌(93%)和大肠杆菌(71%)分别表现出良好的抗菌活性。此外,水凝胶与 NIH 3T3 细胞接触后细胞存活率高达 98%,表明其无细胞毒性。此外,小鼠伤口实验证实了水凝胶的优异伤口愈合效果。这项研究提出了一种开发具有微生物衍生抗菌功能的环保型活性伤口敷料的创新方法。

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