Formulation and Characterization of Rutin Loaded Chitosan Nanoparticles

M. Raju, M. Srivani, N. V. L. Suvarchala Reddy, G. S. Priya
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Abstract

New drug delivery technologies are transforming drug discovery and development, as well as establishing research and development-focused pharmaceutical firms that are accelerating global progress. The bioactive rutin molecule is used in a wide range of food and medicinal goods. Its limited bioavailability and poor water solubility are major issues. Rutin is a polyphenolic natural compound with antibacterial, anticancer, antioxidant, chemopreventive, and anti-inflammatory activities. However, no research has been published to yet to improve its bioavailability and efficacy. As a result, an attempt was made in this study to load rutin into a nanoparticlulate system in order to improve its bioavailability and efficacy. Six formulations (F1-F6) of nanoparticles were prepared by solvent evaporation technique and were evaluated for particle size and shape using Zeta Sizer, Scanning Electron Microscopy (SEM) and Fourier Transform Infra-Red (FT-IR) Spectroscopy. The optimized formulation was further subjected to in vitro evaluation. Practical percent yield, drug entrapment efficiency and In vitro drug release were evaluated. Out of various formulations F1 have shown best results in particle size 80.71 (1-100 nm), particle shape (spherical nanoparticles with a smoothed surface), average size distribution (105.0), zeta potential (-20.6) percentage yield (70.83), drug entrapment efficiency (83.6%) and drug loading (95%). Pure rutin showed incomplete dissolution of 47.69% in 330 min while Rutin loaded nanoparticles gave 94.75% release in 330 min. It is obvious from the foregoing that rutin chitosan nanoparticles were used as a novel drug delivery technology to improve therapeutic efficacy and sustained release features while overcoming issues such as poor solubility and limited bioavailability.
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负载芦丁的壳聚糖纳米颗粒的制备与表征
新的药物输送技术正在改变药物发现和开发,并建立了以研究和开发为重点的制药公司,加速了全球进步。具有生物活性的芦丁分子广泛应用于食品和药品中。其有限的生物利用度和水溶性差是主要问题。芦丁是一种多酚类天然化合物,具有抗菌、抗癌、抗氧化、化学预防和抗炎活性。然而,目前还没有发表任何研究来提高其生物利用度和功效。因此,本研究试图将芦丁加载到纳米颗粒系统中,以提高其生物利用度和功效。采用溶剂蒸发技术制备了6个配方(F1-F6)纳米颗粒,并利用Zeta浆料机、扫描电镜(SEM)和傅里叶变换红外光谱(FT-IR)对纳米颗粒的粒径和形状进行了评价。进一步对优化后的配方进行体外评价。考察了实际收率、包封效率和体外释药效果。在不同的配方中,F1在粒径80.71 (1-100 nm)、颗粒形状(表面光滑的球形纳米颗粒)、平均粒径分布(105.0)、zeta电位(-20.6)、产率(70.83)、包封效率(83.6%)和载药量(95%)方面表现出最佳效果。纯芦丁在330 min内溶出率为47.69%,负载芦丁的纳米颗粒在330 min内释放率为94.75%。综上所述,芦丁壳聚糖纳米颗粒作为一种新型的给药技术,在克服溶解度差和生物利用度有限的同时,提高了药物的治疗效果和缓释特性。
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