Formulasi Self-Nanoemulsifiying Drug Delivery System (SNEDDS) Asam Mefenamat menggunakan VCO dengan Kombinasi Surfaktan Tween dan Span

Muhamad Handoyo Sahumena, S. Suryani, Neni Rahmadani
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引用次数: 5

Abstract

Mefenamic acid is a non-steroidal anti-inflammatory drug (NSAID) which has analgesic, anti-inflammatory and antipyretic effects. Mefenamic acid works by inhibiting prostaglandin synthesis as an inflammatory mediator. Mefenamic acid has low drug solubility and a long process of dissolution in the body which greatly affects the speed of absorption and bioavailability of the drug. In this study, mefenamic acid nanoemulsion formulation was carried out through a Self-Nanoemulsifying Drug Delivery System (SNEDDS) delivery system. SNEDDS is a drug delivery method through isotropic oil extraction, surfactants, cosurfactans and drug that form oil in water (m/a) emulsions which when in contact with the water phase in the digestive tract wiil from a nanoemulsion that occurs spontaneously so that the drug dissolves with a particle size small so as to increase the effective surface area for absorption. The purpose of the study was to determine the ratio of surfactant and cosurfactant composition to the optimum formula of SNEDDS of mefenamic acid with VCO as an oil phase. The SNEDDS formula was obtained by mixing the surfactants tween 80 and span 80, cosurfactant PEG 400 and VCO as the oil phase using the characterization of determining the optimum formula, namely emulsion formation, transmittance and emulsification time. The composition of the optimum formula of SNEDDS of mefenamic acid is 1 mL VCO; 1 mL PEG 400; 6 mL tween 80; 1 mL span 80. Optimum formula showed clear emulsion results, with transmittance values of 89,04% and emulsification time under 1 minute. In this study produced the optimum formula SNEDDS the met the criteria based on droplet size parameters of 153,5 nm, potential zeta value of 8,2 mV and showed good stability.
甲氧胺酸是一种非甾体抗炎药(NSAID),具有镇痛、抗炎和解热作用。甲氧胺酸通过抑制前列腺素的合成而起炎症介质的作用。甲氧胺酸在体内溶解度低,溶解过程长,严重影响药物的吸收速度和生物利用度。本研究通过自纳米乳化给药系统(SNEDDS)给药系统制备甲氧胺酸纳米乳。SNEDDS是一种通过各向同性油提取、表面活性剂、共表面聚糖和药物形成油在水中(m/a)的乳剂的给药方法,当与消化道中的水相接触时,会从自发发生的纳米乳剂中分离出来,使药物以较小的粒径溶解,从而增加吸收的有效表面积。本研究的目的是确定表面活性剂和助表面活性剂的组成比,以确定以VCO为油相的甲胺酸SNEDDS的最佳配方。以表面活性剂tween 80和span 80、共聚表面活性剂peg400和VCO为油相,通过表征乳化形成、透光率和乳化时间确定最佳配方,得到SNEDDS配方。甲氧胺酸SNEDDS的最佳配方为1ml VCO;1 mL PEG 400;6 mL之间80;1毫升跨度80。优化后的配方乳化效果清晰,透光率为89,04%,乳化时间在1 min以内。以液滴粒径为155.3 nm,电位zeta值为8.2 mV为条件,得到了sndds的最佳配方,并具有良好的稳定性。
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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