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首页> 外文期刊>Journal of Advanced Pharmaceutical Technology Research >Spectrophotometric methods for the determination of letrozole in bulk and pharmaceutical dosage forms
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Spectrophotometric methods for the determination of letrozole in bulk and pharmaceutical dosage forms

机译:分光光度法测定散装和药物剂型来曲唑

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Ultraviolet (UV), first derivative, second derivative, and AUC-spectrophotometric methods for the determination of letrozole in pharmaceutical formulations have been developed. For UV-spectrophotometry, the standard solutions were measured at 240.0 nm. The linearity ranges were found to be 0.25–20.0 μgml–1 in methanol and the regression equation was A=1.20×10–1C+2.22×10–2(r2=0.9994). For the first derivative spectrophotometry, the response (dA/dλ) of standard solutions was measured at 224.0 nm. The calibration curve was constructed by plotting dA/dλ values against concentrations 0.25–20.0 μgml–1, of letrozole. The regression equation of the linear calibration graph was calculated as D1=3.89×10–3C+1.85×10–4(r2=0.9987). For the second derivative spectrophotometry, the response (d2A/dλ2) of standard solutions was measured at 241.0 nm. The calibration curve was constructed by plotting d2A/dλ2 values against concentrations 0.5–20.0 μgml–1 of letrozole standards in methanol. The regression equation of the linear calibration graph was calculated as D2=-1.59×10–3C-4.66×10–4(r2=0.9985). The AUC-spectrophotometric method was based on the calculation of Area under Curve (AUC), for analysis of letrozole in the wavelength range of 235.0–245.0 nm. The calibration curve was constructed by plotting AUC values against concentrations 0.25–20.0 μgml–1, of letrozole. The regression equation of the linear calibration graph was calculated as AUC=1.132C+0.2153 (r2=0.9994). The methods were validated by following the analytical performance parameters suggested by the International Conference on Harmonization (ICH). All validation parameters were within the acceptable range. The developed methods were successfully applied to estimate the amount of letrozole in pharmaceutical formulations.Keywords: AUC-spectrophotometry, derivative-spectrophotometry, letrozole, UV-spectrophotometry
机译:已经开发了用于测定药物制剂中来曲唑的紫外线(UV),一阶导数,二阶导数和AUC分光光度法。对于紫外分光光度法,标准溶液在240.0 nm处测量。在甲醇中线性范围为0.25–20.0 μgml–1,回归方程为A = 1.20×10–1C + 2.22×10–2(r2 = 0.9994)。对于一阶导数分光光度法,在224.0 nm处测量标准溶液的响应(dA /dλ)。通过将dA /dλ值相对于来曲唑的浓度0.25–20.0 μgml–1作图,可以构建校准曲线。线性校准图的回归方程计算为D1 = 3.89×10-3C + 1.85×10-4(r2 = 0.9987)。对于二阶导数分光光度法,在241.0 nm处测量标准溶液的响应(d2A /dλ2)。通过将d2A /dλ2值相对于甲醇中来曲唑标准品的浓度0.5–20.0 μgml–1作图,可绘制出校准曲线。线性校准图的回归方程计算为D2 = -1.59×10-3C-4.66×10-4(r2 = 0.9985)。 AUC分光光度法基于计算曲线下面积(AUC),用于分析235.0–245.0 nm波长范围内的来曲唑。通过将AUC值相对于来曲唑的浓度0.25–20.0 μgml–1绘制图,可以构建校准曲线。线性校准图的回归方程计算为AUC = 1.132C + 0.2153(r2 = 0.9994)。通过遵循国际协调大会(ICH)建议的分析性能参数对方法进行了验证。所有验证参数均在可接受范围内。所开发的方法已成功地用于估计药物制剂中来曲唑的含量。关键词:AUC分光光度法,导数分光光度法,来曲唑,紫外分光光度法

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