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用于加速糖尿病小鼠伤口愈合的丝素衍生制剂。

Silk derived formulations for accelerated wound healing in diabetic mice.

作者信息

Tariq Muniba, Tahir Hafiz Muhammad, Butt Samima Asad, Ali Shaukat, Ahmad Asma Bashir, Raza Chand, Summer Muhammad, Hassan Ali, Nadeem Junaid

机构信息

Department of Zoology, Government College University Lahore, Lahore, Pakistan.

出版信息

PeerJ. 2021 Jan 8;9:e10232. doi: 10.7717/peerj.10232. eCollection 2021.

Abstract

BACKGROUND

The present study aimed to prepare effective silk derived formulations in combination with plant extract ( gel) to speed up the wound healing process in diabetic mice.

METHODS

Diabetes was induced in albino mice by using alloxan monohydrate. After successful induction of diabetes in mice, excision wounds were created via biopsy puncture (6 mm). Wound healing effect of silk sericin (5%) and silk fibroin (5%) individually and in combination with 5% gel was evaluated by determining the percent wound contraction, healing time and histological analysis.

RESULTS

The results indicated that the best biocompatible silk combination was of 5% silk fibroin and 5% gel in which wounds were healed in 13 days with wound contraction: 98.33 ± 0.80%. In contrast, the wound of the control group (polyfax) healed in 19 day shaving 98.5 ± 0.67% contraction. Histological analysis revealed that the wounds which were treated with silk formulations exhibited an increased growth of blood vessels, collagen fibers, and much reduced inflammation.

CONCLUSION

It can be concluded that a combination of silk and gel is a natural biomaterial that can be utilized in wound dressings and to prepare more innovative silk based formulations for speedy recovery of chronic wounds.

摘要

背景

本研究旨在制备有效的丝素衍生制剂,并与植物提取物(凝胶)联合使用,以加速糖尿病小鼠的伤口愈合过程。

方法

通过使用一水合四氧嘧啶在白化小鼠中诱导糖尿病。在小鼠成功诱导糖尿病后,通过活检穿刺(6毫米)创建切除伤口。通过测定伤口收缩百分比、愈合时间和组织学分析,评估丝胶蛋白(5%)和丝素蛋白(5%)单独以及与5%凝胶联合使用时的伤口愈合效果。

结果

结果表明,最佳的生物相容性丝素组合是5%丝素蛋白和5%凝胶,其中伤口在13天内愈合,伤口收缩率为98.33±0.80%。相比之下,对照组(聚法克斯)的伤口在19天内愈合,收缩率为98.5±0.67%。组织学分析显示,用丝素制剂治疗的伤口血管、胶原纤维生长增加,炎症明显减轻。

结论

可以得出结论,丝素和凝胶的组合是一种天然生物材料,可用于伤口敷料,并制备更多创新的基于丝素的制剂,以促进慢性伤口的快速恢复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23a2/7798629/1ffa3975d9d0/peerj-09-10232-g001.jpg

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