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用于伤口愈合实时监测与促进的智能壳聚糖基纳米纤维。

Smart chitosan-based nanofibers for real-time monitoring and promotion of wound healing.

作者信息

Liu Shuhan, Wang Jianing, Wang Xin, Tan Lintongqing, Liu Tao, Wang Yudie, Shi Yihan, Zhang Zhuoran, Ding Sheng, Hou Kexin, Zhang Wen, Li Fan, Meng Xin

机构信息

Key Laboratory of Industrial Microbiology, Ministry of Education, College of Biotechnology, Tianjin University of Science and Technology, Tianjin 300457, China.

Key Laboratory of Industrial Microbiology, Ministry of Education, College of Biotechnology, Tianjin University of Science and Technology, Tianjin 300457, China; Systems Engineering Institute, Academy of Military Sciences, People's Liberation Army, Tianjin 300161, China.

出版信息

Int J Biol Macromol. 2024 Dec;282(Pt 1):136670. doi: 10.1016/j.ijbiomac.2024.136670. Epub 2024 Oct 21.

Abstract

Timely healing of acute wounds and stopping wound chronicity are current and future priorities in wound therapy. It is urgent and relevant to develop a wound dressing that has antimicrobial and monitors the wound microenvironment in real time. In this study, quaternary ammonium chitosan (HTCC) was selected as the antimicrobial agent and CS/PEO/HTCC nanofiber membranes (CPHs) were prepared by electrostatic spinning technique. The nanofiber membrane (CPH91) with the best antimicrobial performance was screened by the disk diffusion method and drug susceptibility testing by dilution method, and its antimicrobial effect on S. aureus was better than that of E. coli. Subsequently, functional carbon dots (CDs) were synthesized by solvothermal method and doped into CPH91 nanofibers by electrospinning. A good linear relationship between pH value (5.0-8.0) and the fluorescence intensity of CDs was observed. In addition, the nanofibers (CPH91@CDs) had good morphology, hydrophilicity, and biocompatibility. Changes in fluorescence intensity of CPH91@CDs at different pH (5.0-8.0) were monitored and converted into RGB values that were linearly fitted to pH value. Finally, the potential of CPH91@CDs of improving wound healing and instantaneously controlling wound healing process was confirmed by an infected wound model (S. aureus) on the back of SD rats.

摘要

急性伤口的及时愈合以及阻止伤口慢性化是当前和未来伤口治疗的重点。开发一种具有抗菌性能并能实时监测伤口微环境的伤口敷料既紧迫又具有现实意义。在本研究中,选择季铵化壳聚糖(HTCC)作为抗菌剂,并通过静电纺丝技术制备了CS/PEO/HTCC纳米纤维膜(CPHs)。通过纸片扩散法和稀释法药敏试验筛选出抗菌性能最佳的纳米纤维膜(CPH91),其对金黄色葡萄球菌的抗菌效果优于大肠杆菌。随后,通过溶剂热法合成了功能化碳点(CDs),并通过静电纺丝将其掺杂到CPH91纳米纤维中。观察到pH值(5.0 - 8.0)与CDs荧光强度之间存在良好的线性关系。此外,纳米纤维(CPH91@CDs)具有良好的形态、亲水性和生物相容性。监测CPH91@CDs在不同pH(5.0 - 8.0)下荧光强度的变化,并将其转换为RGB值,这些值与pH值呈线性拟合。最后,通过SD大鼠背部的感染伤口模型(金黄色葡萄球菌)证实了CPH91@CDs在促进伤口愈合和即时控制伤口愈合过程方面的潜力。

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