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首页> 外文期刊>Pharmaceutical Methods >Oxidative Degradation Kinetic Study of Thiocolchicoside using Stability Indicating High Performance Thin Layer Chromatographic Method
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Oxidative Degradation Kinetic Study of Thiocolchicoside using Stability Indicating High Performance Thin Layer Chromatographic Method

机译:稳定性指示高效薄层色谱法研究硫秋水仙苷的氧化降解动力学

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Stability indicating HPTLC method was developed using aluminium plates precoated with silica gel 60 F254 as thestationary phase and toluene: acetone: water (1.5:7.5:1.0, v/v/v) as mobile phase with detection wavelength 370 nm.Thiocolchicoside was subjected to degradation in alkaline, acidic, oxidative, neutral, dry heat and photolytic conditions.Linearity was observed in the concentration range 100-500 ng/spot with correlation coefficient (R2) 0.9979 and 0.9960 at370 nm. The developed method was validated for specificity, accuracy, precision, LOD and LOQ as per ICH guideline.The proposed method was successfully applied for the estimation of thiocolchicoside in pharmaceutical dosage forms andassay results was found to be in good agreement with labeled claim of pharmaceutical dosage forms of thiocolchicoside.The proposed method was also applied for degradation kinetic study of thiocolchicoside in 0.5, 1.0 and 1.5% H2O2 atdifferent temperatures. The degradation of thiocolchicoside in all acidic conditions was found to be first order and highestdegradation was found in 3.0 N HCl at 80°C temperature. The prediction of degradation rate constant was also done atdifferent temperature and strengths of HCl using Design Expert software–9. The degradation products of thiocolchicosideformed in acidic medium were isolated and characterized using IR, Mass and NMR spectroscopy.
机译:稳定性表明HPTLC方法是使用预先涂有硅胶60 F254的铝板作为固定相并以甲苯:丙酮:水(1.5:7.5:1.0,v / v / v)作为流动相开发的,检测波长为370 nm。在碱性,酸性,氧化,中性,干热和光解条件下会发生降解。在浓度范围为100-500 ng / spot时,在370 nm处具有相关系数(R2)为0.9979和0.9960的线性。按照ICH指南对所开发的方法进行了特异性,准确性,精密度,LOD和LOQ的验证。该方法还适用于不同温度下0.5%,1.0%和1.5%H2O2中硫代秋水仙苷的降解动力学研究。发现在所有酸性条件下硫代秋水仙苷的降解都是一级的,在80 N的温度下于3.0 N HCl中发现的降解程度最高。还可以使用Design Expert软件–9在不同的温度和HCl浓度下对降解速率常数进行预测。分离在酸性介质中形成的硫代秋水仙苷的降解产物,并使用IR,质谱和NMR光谱进行表征。

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