Preparation and Characterization of Betel Leaves (Piper betle Linn) Extract Nanoparticle with Ionic Gelation Method

Dwi Saryanti, Dian Nugraheni, Nisa Sindi Astuti
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引用次数: 2

Abstract

Nanoparticles are used in drug delivery which can increase mass transfer so increase the absorption and effectiveness of the drug. Therefore, its prospect to improve antibacterial and antioxidants activities of betel leaves. The research aimed to preparation and characterization of betel leaf extract using ionic gelation technique. The formulation of nanoparticles from betel leaf extract with ionic gelation method using alginate and CaCl2 with a ratio of 2.5: 1. The characterization of the nanoparticles includes particle size analysis, zeta potential, particle morphology and determination of flavonoid content. Particle size analysis demonstrated that the betel leaf extract nanoparticles had a particle size of 243,03 ± 1,48 nm, zeta potential of -23,0 ± 0,35 mV and morphology of particle showed that a flat shape. The betle leaf exctract nanoparticle positively contained flavonoid with Rf 0.7 equivalent to quercetin. The betel leaf extract can be made nanoparticles with ionic gelation method using alginate and CaCl2.
离子凝胶法制备槟榔叶提取物纳米颗粒及表征
纳米颗粒用于药物递送,可以增加传质,从而增加药物的吸收和有效性。因此,它有望提高槟榔叶的抗菌和抗氧化活性。采用离子凝胶技术制备槟榔叶提取物并对其进行表征。以离子凝胶法从槟榔叶提取物中配制纳米颗粒,使用藻酸盐和CaCl2,比例为2.5∶1。纳米颗粒的表征包括粒度分析、ζ电位、颗粒形态和类黄酮含量的测定。粒径分析表明,槟榔叶提取物纳米颗粒的粒径为243,03±1.48nm,ζ电位为-23,0±0.35 mV,颗粒形态呈扁平状。槟榔叶提取物纳米颗粒含有Rf 0.7相当于槲皮素的黄酮类化合物。槟榔叶提取物可以用海藻酸盐和CaCl2离子凝胶法制成纳米颗粒。
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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