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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Eco-friendly HPTLC method for simultaneous analysis of sofosbuvir and ledipasvir in biological and pharmaceutical samples: Stability indicating study
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Eco-friendly HPTLC method for simultaneous analysis of sofosbuvir and ledipasvir in biological and pharmaceutical samples: Stability indicating study

机译:生态友好型HPTLC方法,用于同时分析生物和药物样品中的Sofosbuvir和Ledipasvir:稳定性表明研究

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Recently, many single-pill combinations are used as a promising choice in hepatitis C treatment. However, this trend made a serious challenge to drug analysts due to difficulty of analysis of two or more drugs simultaneously. In this study, sofosbuvir (SF) and ledipasvir (LD) were simultaneously analyzed by developing a simple, inexpensive, rapid and eco-friendly high-performance thin layer chromatographic (HPTLC) method with densitometric detection. Separation was carried out using aluminum HPTLC plates silica gel 60 F254 as the stationary phase developed using the mobile phase ethyl acetate: methanol: water: glacial acetic acid (30: 1.5: 1: 0.2% v/v). Development was done in a twin-trough chamber followed by densitometric detection of SF and LD at 260 and 320 nm, respectively. The calibration curves for standard solutions showed a rectilinear relationship for SF and LD in the range of 2 -12 and 0.45-6.0 mu g band(-1), respectively with correlation coefficients > 0.9995 and limits of detection of 0.6 and 0.1 mu g band(-1) for SF and LD, respectively. While, calibration curves for biological samples showed linear relationships for SF and LD in the range of 1.0-20 and 0.2-6.0 mu g mL(-1), respectively with correlation coefficients > 0.99 and limits of detection of 0.21 and 0.27 mu g mL(-1) for SF in plasma and urine samples, respectively and 0.05 and 0.03 mu g mL(-1) for LD in plasma and urine samples, respectively. Also, it was effectively used in the analysis of the investigated drugs within their pharmaceutical form and biological fluids without any matrix interference with high precision (% RSD < 2%) and good accuracy with % Er value < 2%. Moreover, SF and LD were analyzed along with their degradation products after performing forced degradation studies.
机译:最近,许多单丸组合用作丙型肝炎治疗中有希望的选择。然而,由于同时分析了两种或更多种药物,这一趋势对药物分析师进行了严峻的挑战。在该研究中,通过开发具有密度测量检测的简单,廉价,快速和环保的高性能薄层色谱(HPTLC)方法,同时分析Sofosbuvir(SF)和LEDIPASVIR(LD)。使用铝HPTLC板硅胶60F254进行分离,因为使用流动相乙酸乙酯:甲醇:水:冰醋酸(30:1.5:1:0.2%v / v),如静止相。在双槽室中完成开发,然后分别在260和320nm处的SF和LD的密度测量检测。标准溶液的校准曲线分别在2 -12和0.45-6.0μg(-1)范围内的SF和LD的直线关系,分别具有相关系数> 0.9995和0.6和0.1μg频段的检测限。 (-1)分别为SF和LD。虽然生物样品的校准曲线分别在1.0-20和0.2-6.0μg(-1)范围内的SF和LD的线性关系分别具有相关系数> 0.99和0.21和0.27μg的检测限。 (-1)分别在血浆和尿液中的SF,分别为血浆和尿液样品的LD和0.05和0.03μg(-1)。此外,它有效地用于分析其药物形式和生物流体的研究,而没有任何基质干扰,高精度(%RSD <2%)和良好的精度,%ER值<2%。此外,在进行强制降解研究后,分析SF和LD以及其降解产物。

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