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载壳聚糖负载氧化铁和银纳米粒子的交联水凝胶作为烧伤创面敷料。

Crosslinked hydrogel loaded with chitosan-supported iron oxide and silver nanoparticles as burn wound dressing.

机构信息

Department of Pharmaceutical Control, Student Research Committee, School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, Iran.

Nanotechnology Research Center, Pharmaceutical Technology Institute, Mashhad University of Medical Sciences, Mashhad, Iran.

出版信息

Pharm Dev Technol. 2023 Dec;28(10):962-977. doi: 10.1080/10837450.2023.2278613. Epub 2023 Dec 18.

Abstract

Burns can result in infection, disability, psychosocial and economic issues. Advanced wound dressings like hydrogel absorb exudate and maintain moisture. Considering the antimicrobial properties of silver nanoparticles and iron oxide nanoparticles, the efficiency of cross-linked hydrogel loaded with chitosan-supported iron oxide and silver nanoparticles for burn wounds repair was investigated in animal model. Cellulose hydrogel dressing made from carboxymethylcellulose and hydroxyethylcellulose crosslinked with different concentrations of citric acid (10, 15, 20, and 30%) was produced. The physicochemical characteristics of the synthetized hydrogels including Fourier-Transform Infrared spectroscopy, Thermal behavior, Swelling properties, and Scanning Electron Microscope (SEM) were evaluated. The silver nanoparticles and iron nanoparticles were produced and the characteristics, cytotoxicity, antimicrobial activities and their synergistic effect were investigated. After adding nanoparticles to hydrogels, the effects of the prepared wound dressings were investigated in a 14-day animal model of burn wound. The results showed that the mixture comprising 12.5 ppm AgNps, and IONPs at a concentration ≤100 ppm was non-cytotoxic. Moreover, the formulations with 20% CA had a swelling ratio of almost 250, 340, and 500 g/g at pHs of 5, 6.2, and 7.4 after one hour, which are lower than those of formulations with 5 and 10% CA. The total mass loss (59.31%) and the exothermic degradation happened in the range of 273-335 °C and its was observed at 318.52 °C for hydrogels with 20% CA. Thus, the dressing comprising 20% CA which was loaded with 12.5 ppm silver nanoparticles (AgNPs) and 100 ppm iron oxide nanoparticles (IONPs) indicated better physicochemical, microbial and non-cytotoxic characteristics, and accelerated the process of wound healing after 14 days. It was concluded that the crosslinked hydrogel loaded with 12.5 ppm AgNPs and 100 ppm IONPs possesses great wound healing activity and could be regarded as an effective topical burn wound healing treatment.

摘要

烧伤可导致感染、残疾、心理社会和经济问题。水凝胶等先进的伤口敷料可吸收渗出物并保持水分。考虑到银纳米粒子和氧化铁纳米粒子的抗菌特性,研究了壳聚糖负载氧化铁和银纳米粒子交联水凝胶对动物模型烧伤创面修复的效率。用不同浓度的柠檬酸(10、15、20 和 30%)交联羧甲基纤维素和羟乙基纤维素制备了纤维素水凝胶敷料。评估了合成水凝胶的物理化学特性,包括傅里叶变换红外光谱、热行为、溶胀性能和扫描电子显微镜(SEM)。制备了银纳米粒子和铁纳米粒子,并研究了它们的特性、细胞毒性、抗菌活性及其协同作用。将纳米粒子加入水凝胶后,在 14 天的烧伤动物模型中研究了制备的伤口敷料的效果。结果表明,包含 12.5ppm AgNps 和 IONPs 的混合物在浓度≤100ppm 时无细胞毒性。此外,在 pH 值为 5、6.2 和 7.4 时,CA 含量为 20%的配方在 1 小时后溶胀率分别为近 250、340 和 500g/g,低于 CA 含量为 5%和 10%的配方。总质量损失(59.31%)和放热降解发生在 273-335°C 范围内,其在 318.52°C 下观察到 CA 含量为 20%的水凝胶。因此,负载 12.5ppm 银纳米粒子(AgNPs)和 100ppm 氧化铁纳米粒子(IONPs)的 20%CA 敷料表现出更好的物理化学、微生物和非细胞毒性特性,并在 14 天后加速了伤口愈合过程。结果表明,负载 12.5ppmAgNPs 和 100ppmIONPs 的交联水凝胶具有很强的伤口愈合活性,可作为有效的局部烧伤创面治疗方法。

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