壳聚糖
膜
纳米纤维素
肿胀 的
伤口愈合
材料科学
生物相容性
细菌纤维素
抗菌剂
生物降解
抗菌活性
纳米颗粒
生物材料
纤维素
化学工程
化学
复合材料
纳米技术
细菌
有机化学
外科
医学
生物化学
生物
工程类
冶金
遗传学
作者
Fatima Amir,Muhammad Bilal Khan,Umer Shahzad Malik,Zaib Jahan,Saadia Andleeb,Tahir Ahmad,Zartasha Mustansar
标识
DOI:10.1016/j.ijbiomac.2023.128831
摘要
Wound healing is an intricate and ever-evolving phenomenon that involves a series of biological processes and multiple stages. Despite the growing utilization of nanoparticles to enhance wound healing, these approaches often overlook properties like mechanical stability, toxicity, and efficacy. Hence, a multifunctional wound dressing is fabricated using Chitosan-PVA membrane crosslinked with vanillin and reinforced with nano-cellulose and CuO-Ag nanoparticles in this study. FTIR, SEM, and XRD were employed to study the morphology and structural properties of the membrane. Biomedical tests including biodegradability, antimicrobial study, cytotoxicity, and animal models were conducted to evaluate the membrane's performance as a wound healing material. The membrane displayed impressive mechanical strength, measuring as high as 49.985 ± 2.31 MPa, and had a hydrophilic nature, with moisture retention values up to 98.84 % and swelling percentages as high as 191.67 %. It also demonstrated biodegradable properties and high cell viability of up to 92.30 %. Additionally, the fabricated membranes exhibited excellent antimicrobial activity against both gram-positive and gram-negative bacteria, with maximum zone of inhibition measuring 16.8 ± 0.7 mm and 9.2 ± 0.1 mm, respectively. Moreover, the membranes also demonstrated superior wound healing properties. These results suggested great potential of fabricated membranes as an effective wound dressing material.
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