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首页> 外文期刊>Saudi Pharmaceutical Journal >Stability, permeation, and cytotoxicity reduction of capsicum extract nanoparticles loaded hydrogel containing wax gourd extract
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Stability, permeation, and cytotoxicity reduction of capsicum extract nanoparticles loaded hydrogel containing wax gourd extract

机译:钙质提取物的稳定性,渗透和细胞毒性还原含有蜡葫芦提取物的水凝胶

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The aim of this study was to develop hydrogel loaded with capsicum extract nanoparticles and wax gourd extract for transdermal delivery of capsaicin. The addition of wax gourd extract was supposed to reduce cytotoxicity of capsaicin in capsicum extract against HaCaT keratinocyte cell line. Capsicum extract nanoparticles were prepared by solvent displacement method using hyaluronic acid as a stabilizer. The physical and chemical stability of capsicum extract nanoparticles were investigated by dynamic light scattering technique and UV–Visible spectrophotometry, respectively. Hydrogel loaded with capsicum extract nanoparticles and wax gourd fruit extract was then formulated by using Carbopol 940? as a gelling agent for transdermal delivery. The skin permeability of capsaicin from the hydrogel was evaluated by Franz diffusion cell approach. The cytotoxicity reduction of capsicum extract nanoparticles and capsicum extract nanoparticles by mixing with wax gourd extract was determined by MTT assay The results showed that capsicum extract nanoparticles exhibited an average diameter of 168.4?±?5.3?nm with a polydispersity index and zeta potential value of 0.26?±?0.01 and ?45.7?±?7.1?mV, respectively. After two month-storage, particle size, polydispersity index, and zeta potential values of capsicum extract nanoparticles stored at 4° C, 30° C, and 45?°C did not significantly change. The capsaicin content decreased to 78%, 71%, and 72% when stored at 4?°C, 30?°C, and 45?°C for three months, respectively. The pH values of hydrogel containing capsicum extract nanoparticles were found to be in the range of 5.58–6.05 indicating good stability. The hydrogel exhibited a pseudoplastic character. The rate of permeation flux of capsaicin from hydrogel was 7.96?μg/cmsup2/sup/h. A significant increase in cell viability was observed when the cells were incubated with capsicum extract nanoparticles mixed with wax gourd, compared to capsicum extract nanoparticles alone. The wax gourd extract in the hydrogel protected HaCaT cells from capsaicin cytotoxicity, thus may provide a new approach for delivery of capsaicin to reduce cytotoxicity to skin cells.
机译:本研究的目的是用辣椒蛋白提取物纳米粒子和蜡葫芦提取物进行加氢凝胶,用于胶囊的透皮递送。应该添加蜡葫芦提取物,以减少辣椒蛋白提取物的辣椒蛋白的细胞毒性,对阵Hacat角蛋白细胞细胞系。通过使用透明质酸作为稳定剂,通过溶剂位移方法制备辣椒提取物纳米颗粒。通过动态光散射技术和UV可见光光度法研究了辣椒提取物纳米粒子的物理和化学稳定性。然后通过使用Carbopol 940配制用胶囊提取物纳米粒子和蜡葫芦果提取物的水凝胶进行配制?作为透皮递送的胶凝剂。通过Franz扩散细胞方法评估来自水凝胶的辣椒素的皮肤渗透性。通过MTT测定法测定通过与蜡谷蛋白提取物混合的胶囊提取纳米颗粒和辣椒提取物纳米粒子的细胞毒性还原结果表明,辣椒提取物纳米粒子的平均直径显示为168.4Ωα≤5.3Ω.3.3Ω·纳米0.26?±0.01和?45.7?±7.1?mV。经过两个月的储存,粒度,多分散性指数和储存在4℃,30℃和45Ω·℃的辣椒提取物纳米颗粒的Zeta电位值并没有显着变化。当储存在4℃,30℃,45℃,45°C时,辣椒素含量降低至78%,71%和72%。发现含有辣椒胶蛋白提取物纳米粒子的pH值为5.58-6.05,表明稳定性良好。水凝胶表现出假塑性特征。水凝胶的辣椒素的渗透通量率为7.96Ωμg/ cm 2 / h。单独的辣椒提取物纳米粒子将细胞与蜡庚醇孵育细胞孵育细胞,观察到细胞活力的显着增加。水凝胶中的蜡葫芦提取物受到来自辣椒素细胞毒性的HACAT细胞,因此可以提供一种新方法,用于减少对皮肤细胞的细胞毒性降低细胞毒性。

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