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评价丝素-芦荟凝胶膜治疗糖尿病足溃疡的安全性和愈合潜力。

Evaluation of the safety and healing potential of a fibroin-aloe gel film for the treatment of diabetic foot ulcers.

机构信息

Division Plastic and Reconstructive Surgery, Department of Surgery, Faculty of Medicine, Naresuan University, Phitsanulok, Thailand.

Department of Pharmaceutical Technology, Faculty of Pharmaceutical Sciences and Center of Excellence for Innovation in Chemistry, Naresuan University, Phitsanulok, Thailand.

出版信息

J Wound Care. 2021 Dec 2;30(12):1020-1028. doi: 10.12968/jowc.2021.30.12.1020.

Abstract

OBJECTIVE

This study aimed to develop a wound dressing prepared from the blending of silkworm fibroin and aloe gel extract for use in the treatment of diabetic foot ulcers (DFUs).

METHODS

Fibroin extracted from silkworm cocoons and aloe gel extract were dissolved in deionised water. pH levels were then adjusted with lactic acid solution. A simple casting technique was used to obtain the fibroin-aloe gel film. The surface morphology, hardness, flexibility and infrared spectrum of the sterilised film were tested. Swelling ratio was measured from changes in weight. The cytocompatibility of the film to human dermal fibroblast was determined using XTT assay. Hard-to-heal DFUs (grade I Wagner score) were treated with the film for four weeks. The application site was assessed for allergic reactions and/or sensitisation. Wound size was measured using standardised digital photography.

RESULTS

A total of five hard-to-heal DFUs were treated. The obtained film sterilised with ozonation showed a non-porous structure. The elongation at break and tensile strength of the wet film were 9.00±0.95% and 6.89±1.21N, respectively. Fourier-transform infrared spectroscopy data indicated the presence of amides I, II and III, of peptide linkage, which are the chemical characteristics of the fibroin. Functional groups relating to healing activity of the aloe gel extract were also found. The swelling ratio of the film immersed in water for 24 hours was 0.8±0.01. In three DFUs (40-50mm in size), a wound area reduction of 0.4-0.8mm/day was observed and were healed in 2-3 weeks. The remaining two SFUs (500mm in size) showed a wound area reduction of 4mm/day and were almost closed at four weeks. No allergic reaction or infection was observed in any of the wounds.

CONCLUSION

The obtained film showed a non-porous structure, and its strength and flexibility were adequate for storage and handling. The film tended to increase the proliferation of fibroblasts. The wound dressing showed potential for accelerating the healing rate of DFUs.

摘要

目的

本研究旨在开发一种由丝素蛋白和芦荟凝胶提取物混合制成的伤口敷料,用于治疗糖尿病足溃疡(DFUs)。

方法

从蚕茧中提取丝素蛋白和芦荟凝胶提取物,溶解于去离子水中。然后用乳酸溶液调节 pH 值。采用简单的浇铸技术获得丝素-芦荟凝胶膜。测试了灭菌膜的表面形貌、硬度、柔韧性和红外光谱。通过重量变化测量溶胀率。采用 XTT 法测定薄膜对人真皮成纤维细胞的细胞相容性。对 5 例(Wagner 评分 I 级)难愈性 DFUs 应用该膜治疗 4 周。评估用药部位是否存在过敏反应和/或致敏反应。采用标准数字化摄影测量伤口大小。

结果

共治疗 5 例难愈性 DFUs。经臭氧消毒的所得薄膜呈无孔结构。湿膜的断裂伸长率和拉伸强度分别为 9.00±0.95%和 6.89±1.21N。傅里叶变换红外光谱数据表明存在酰胺 I、II 和 III,即肽键的化学特征,还发现了与芦荟凝胶提取物愈合活性相关的功能基团。薄膜在水中浸泡 24 小时的溶胀率为 0.8±0.01。在 3 例(40-50mm 大小)DFUs 中,观察到每天伤口面积减少 0.4-0.8mm,并在 2-3 周内愈合。其余 2 例 SFUs(500mm 大小)显示每天伤口面积减少 4mm,在 4 周时几乎闭合。所有伤口均未观察到过敏反应或感染。

结论

所得薄膜呈无孔结构,其强度和柔韧性足以满足储存和处理要求。薄膜倾向于增加成纤维细胞的增殖。伤口敷料有望加速 DFUs 的愈合速度。

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