DESIGN AND DEVELOPMENT OF NANOEMULSION OF SMILAX CHINA FOR ANTI-PSORIASIS ACTIVITY

Vishal Bodke, Pradnya Kumbhar, Shreeya Belwalkar, Akash S. Mali, Karishma Waghmare
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Abstract

Objective: The present investigation aimed to prepare a smilax china loaded nanoemulsion using tween 80 as a surfactant and propylene glycol as a co-surfactant. Formulation of such drugs in nanoparticulate drug delivery will be advantageous for reducing dosing frequency, longer residence time, improved permeation, and patient compliance. Methods: High-speed homogenization method. The smilax china oil was prepared by collecting the extract of smilax china leaves into the coconut oil and then used as a solvent. The authentication studies of smilax china and coconut oil were evaluated for their organoleptic and physicochemical characteristics. The quantitative estimation and pre-formulation study of quercetin was carried out which has major anti-psoriatic properties. Surfactant and co-surfactant were selected and the solubility studies of oil and Surfactants were done. The nanoemulsion was characterized by particle size, polydispersity index, zeta potential, and entrapment efficiency (%). Results: This nanoemulsion provides the particle size and entrapment efficiency range between 80.52 to 89.78 nm and 68.66 to 70.16 % respectively. Batch SC1 showed the lowest particle size, PDI, and optimized drug entrapment effectiveness (%), indicating good particle size consistency within the remaining formulation batches. The optimized formulation SC 1 was found to be stable for 90 d. Conclusion: The formulated nanoemulsion showed significant antipsoriasis activity due to the presence of quercetin which has a rhetorical yield of 1.066 mg per 5 gm powder of smilax china leaves. Formulated smilax china-loaded nanoemulsion, has the potential as an effective antipsoriasis agent with a good spreading property with faster absorption which is beneficial for reducing drug concentration with maximum therapeutic effect.
设计和开发具有抗牛皮癣活性的中国菝葜纳米乳液
研究目的本研究旨在以吐温 80 为表面活性剂,丙二醇为辅助表面活性剂,制备一种含菝葜的纳米乳液。将此类药物配制成纳米颗粒给药剂将有利于减少给药次数、延长停留时间、改善渗透性和患者依从性。方法:采用高速均质法,将菝葜叶提取物加入椰子油中作为溶剂,制备菝葜油。对烟叶和椰子油的感官和理化特性进行了鉴定研究。对具有主要抗银屑病特性的槲皮素进行了定量评估和预配方研究。选择了表面活性剂和辅助表面活性剂,并对油和表面活性剂进行了溶解度研究。纳米乳液的特征包括粒度、多分散指数、ZETA电位和夹带效率(%):该纳米乳液的粒度和固着效率分别介于 80.52 至 89.78 nm 和 68.66 至 70.16 % 之间。批次 SC1 显示出最低的粒度、PDI 和优化药物包埋效率(%),表明其余配方批次的粒度一致性良好。结论:优化配方 SC1 在 90 天内稳定:由于槲皮素的存在,配制的纳米乳液显示出显著的抗牛皮癣活性,每 5 克菝葜叶粉的槲皮素产量为 1.066 毫克。所配制的含槲皮素纳米乳液具有良好的铺展性和更快的吸收速度,有利于降低药物浓度,从而达到最大的治疗效果,因此有可能成为一种有效的抗牛皮癣药物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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