Examining the wound healing potential of curcumin-infused electrospun nanofibers from polyglutamic acid and gum arabic

纳米纤维 姜黄素 伤口愈合 差示扫描量热法 傅里叶变换红外光谱 材料科学 生物医学工程 扫描电子显微镜 纺纱 化学 化学工程 纳米技术 生物化学 高分子化学 医学 外科 复合材料 物理 工程类 热力学
作者
Cuilin Cheng,Rongchun Wang,Jiapei Ma,Yingchun Zhang,Qiuju Jing,Weihong Lu
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:267: 131237-131237 被引量:11
标识
DOI:10.1016/j.ijbiomac.2024.131237
摘要

Advancements in medicine have led to continuous enhancements and innovations in wound dressing materials, making them pivotal in medical care. We used natural biological macromolecules, γ-polyglutamic acid and gum arabic as primary raw materials to create nanofibers laden with curcumin by blending electrostatic spinning technology in the current investigation. These nanofibers were meticulously characterized using fluorescence microscopy, scanning electron microscopy, Fourier transform infrared (FTIR) spectroscopy, differential scanning calorimetry (DSC), and X-ray diffraction (XRD). Our comprehensive analyses confirmed the successful encapsulation of curcumin within the nanofiber carrier and it has uniform diameter, good water absorption and mechanical properties. Subsequently, we evaluated the antimicrobial effects of these curcumin-loaded nanofibers against Staphylococcus aureus through an oscillating flask method. We created a mouse model with acute full-thickness skin defects to further investigate the wound healing potential. We conducted various biochemical assays to elucidate the mechanism of action. The results revealed that curcumin nanofibers profoundly impacted wound healing. They bolstered the expression of TGF-β1 and VEGF and reduced the expression of inflammatory factors, leading to an accelerated re-epithelialization process, enhanced wound contraction, and increased regeneration of new blood vessels and hair follicles. Furthermore, these nanofibers positively influenced the proportion of three different collagen types. This comprehensive study underscores the remarkable potential of curcumin-loaded nanofibers to facilitate wound healing and lays a robust experimental foundation for developing innovative, natural product-based wound dressings.
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