局部应用长叶Eurycoma Longifolia Jack (TA)根提取物水凝胶对体内切除伤口模型伤口愈合过程中血管内皮生长因子(VEGF)表达的影响

Maryam Riyadh Yaseen Al-Bayati, G. Faisal, Azliana Abd Fuaat, Khairunisa Ahmad Affandi, Batoul Alallam
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引用次数: 1

摘要

简介:药用植物因其刺激皮肤血管生成对伤口愈合的积极影响而闻名。长叶Eurycoma longifolia Jack在当地被称为东革阿里(TA),是一种具有抗炎和抗氧化作用的药用植物。材料与方法:20只雄性sd大鼠背部,用消毒后的外科手术刀刀片切开标记皮肤,形成直径15mm × 15mm,深度2mm的切口,然后用手术剪刀和齿钳切除皮肤。将受伤大鼠分为4组,每组5只(n=5)。实验组分为:未处理(-ve)对照组、Hydrocyn®水凝胶(+ve)对照组、载体水凝胶和TA水凝胶。所有处理均从第一天(受伤日)开始,每日2次,共5天。在损伤后第5天,收集各组肉芽组织,通过免疫组织化学检测血管内皮生长因子(VEGF)的表达。结果:TA水凝胶和载药水凝胶处理大鼠皮肤肉芽组织中VEGF表达较未处理(-ve)对照组显著升高,p值分别为0.040和0.029。虽然TA组、Hydrocyn®水凝胶(+ve)对照组和载药水凝胶组大鼠皮肤肉芽组织中VEGF表达无显著差异,但我们的研究组VEGF表达较高。结论:我们的研究表明,外用TA水凝胶可提高大鼠皮肤肉芽组织中VEGF的表达,VEGF是创面愈合必需的生长因子。因此,TA水凝胶有很大的潜力成为处理皮肤伤口的有效伤口愈合剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effect of The Topical Application of Eurycoma Longifolia Jack (TA) Root Extract Hydrogel on Vascular Endothelial Growth Factor (VEGF) Expression During Wound Healing in vivo Excisional Wound Model
INTRODUCTION: Medicinal plants are known for their positive impacts on wound healing by stimulating angiogenesis in the skin. Eurycoma longifolia Jack locally known as Tongkat Ali (TA), is a medicinal plant characterised by anti-inflammatory and antioxidant effects. MATERIALS AND METHODS: Excisional wound (15mm × 15mm) in diameter and (2mm) depth was created at the back of 20 male Sprague Dawley rats by incising the marked skin with sterilized surgical scalpel blade then excised the skin by surgical scissors and toothed forceps. The wounded rats were divided into 4 groups, each group contained 5 rats (n=5). Experimental groups were formed as follows: untreated (-ve) control, Hydrocyn® aqua gel (+ve) control, vehicle hydrogel, and TA hydrogel. All the treatments were applied twice daily for 5 days starting on the first day (wounding day). On Day 5 post-wounding, the granulation tissue was harvested from all groups and evaluated by immunohistochemistry assay for Vascular endothelial growth factor (VEGF) expression. RESULTS: VEGF expression in granulation tissue of rat’s skin treated with TA hydrogel and vehicle hydrogel increased significantly compared to that in the untreated (-ve) control group with p-values of 0.040 and 0.029, respectively. Although there was no significant difference in VEGF expression in granulation tissue of rat’s skin treated with the TA group, Hydrocyn® aqua gel (+ve) control, and vehicle hydrogel groups, our study group showed higher expression of VEGF. CONCLUSION: Our study showed that the topical application of TA hydrogel increased the VEGF expression in granulation tissue of rat’s skin, which is an essential growth factor for wound healing. Thus, there is great potential for TA hydrogel to be an effective wound-healing agent for managing cutaneous wounds.  
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