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壳聚糖稳定的氧化铜纳米结构功能化的紫外交联聚乙烯醇/壳聚糖静电纺丝膜作为增强型伤口敷料。

Chitosan-Stabilized CuO Nanostructure-Functionalized UV-Crosslinked PVA/Chitosan Electrospun Membrane as Enhanced Wound Dressing.

机构信息

Applied Chemistry and Chemical Engineering, University of Dhaka, Dhaka 1000, Bangladesh.

Biomedical Engineering, Bangladesh University of Engineering and Technology (BUET), Dhaka 1205, Bangladesh.

出版信息

ACS Appl Bio Mater. 2024 Feb 19;7(2):961-976. doi: 10.1021/acsabm.3c00958. Epub 2024 Feb 3.

Abstract

Electrospun nanofibrous membranes are of great interest for tissue engineering, active material delivery, and wound dressing. These nanofibers possess unique three-dimensional (3D) interconnected porous structures that result in a higher surface-area-to-volume ratio and porosity. This study was carried out to prepare nanofibrous membranes by electrospinning a blend of PVA/chitosan polymeric solution functionalized with different ratios of copper oxide. Chitosan-stabilized CuO nanoparticles (CH-CuO NPs) were biosynthesized successfully utilizing chitosan as the capping and reducing agent. XRD analysis confirmed the monoclinic structure of CH-CuO NPs. In addition, the electrospun nanofibrous membranes were UV-crosslinked for a definite time. The membranes containing CH-CuO NPs were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), differential scanning calorimetry (DSC), Fourier transform infrared (FTIR) spectroscopy, ultraviolet-visible (UV-vis) spectrophotometry, and dynamic light scattering (DLS). SEM results showed the nanosize of the fiber diameter in the range of 147-207 nm. The FTIR spectroscopy results indicated the successful incorporation of CH-CuO NPs into the PVA/chitosan nanofibrous membranes. DSC analysis proved the enhanced thermal stability of the nanofibrous membranes due to UV-crosslinking. Swelling and degradation tests were carried out to ensure membrane stability. Greater antimicrobial activity was observed in the nanoparticle-loaded membrane. An in vitro release study of Cu ions from the membrane was carried out for 24 h. The cytotoxicity of CH-CuO NP-incorporated membranes was investigated to estimate the safe dose of nanoparticles. An in vivo test using the CH-CuO NP-loaded PVA/chitosan membrane was conducted on a mice model, in which wound healing occurred in approximately 12 days. These results confirmed that the biocompatible, nontoxic nanofibrous membranes are ideal for wound-dressing applications.

摘要

静电纺丝纳米纤维膜在组织工程、活性物质输送和伤口敷料等方面具有重要意义。这些纳米纤维具有独特的三维(3D)互联多孔结构,导致更高的表面积与体积比和孔隙率。本研究通过静电纺丝聚乙烯醇/壳聚糖聚合物溶液来制备纳米纤维膜,该溶液中加入了不同比例的氧化铜进行功能化。壳聚糖稳定的氧化铜纳米粒子(CH-CuO NPs)成功地利用壳聚糖作为包覆和还原剂进行生物合成。X 射线衍射(XRD)分析证实了 CH-CuO NPs 的单斜结构。此外,还对静电纺丝纳米纤维膜进行了一定时间的紫外线交联。用 X 射线衍射(XRD)、扫描电子显微镜(SEM)、差示扫描量热法(DSC)、傅里叶变换红外(FTIR)光谱、紫外可见分光光度法(UV-vis)和动态光散射(DLS)对含有 CH-CuO NPs 的纳米纤维膜进行了表征。SEM 结果表明,纤维直径的纳米尺寸范围在 147-207nm 之间。FTIR 光谱结果表明,CH-CuO NPs 成功地掺入到 PVA/壳聚糖纳米纤维膜中。DSC 分析证明了由于紫外线交联,纳米纤维膜的热稳定性得到了提高。进行了溶胀和降解测试以确保膜的稳定性。在载有纳米粒子的膜中观察到更大的抗菌活性。对膜中 Cu 离子的 24 小时体外释放进行了研究。对载有 CH-CuO NP 的膜进行了细胞毒性研究,以评估纳米粒子的安全剂量。在小鼠模型上进行了载有 CH-CuO NP 的 PVA/壳聚糖膜的体内试验,大约 12 天伤口愈合。这些结果证实了具有生物相容性、无毒的纳米纤维膜是伤口敷料应用的理想选择。

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