基于最小二乘支持向量机和模糊推理系统的紫外分光光度法同时测定注射用混悬液中的丙酸雌二醇和醋酸甲羟孕酮激素:与高效液相色谱法的比较。

Maryam Valizadeh, Zahra Ameri Braki, Erfan Smiley
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引用次数: 0

摘要

背景:丙酸雌二醇(ECA)和醋酸甲羟孕酮(MPA)联合应用可预防妇女妊娠。ECA和MPA组合的分析揭示了由于这些化合物的光谱的强烈重叠而带来的挑战。目的:分光光度法和化学计量学方法简便、快速、准确、低成本,可同时测定复方制剂中ECA和MPA的含量,包括最小二乘支持向量机(LSSVM)和模糊推理系统(FIS)以及分光光度法被提出来解决这种具有挑战性的重叠。结果:基于交叉验证方法,LSSVM模型中的正则化参数(γ)和函数宽度(σ)得到了优化,ECA和MDA的均方根误差(RMSE)分别为0.3957和0.2839。ECA和MDA的平均回收率分别为99.87%和99.63%。FIS结合主成分分析(PCA)显示ECA和MDA的平均回收率分别为99.05%和99.50%。两组分的均方根误差均小于0.3。结论:采用单因素方差分析(ANOVA)检验,将所提出方法对真实样品(注射液混悬液)的分析结果与高效液相色谱(HPLC)进行比较,结果无显著差异。亮点:提出了同时测定ECA和MPA的智能方法。使用最小二乘支持向量机和模糊推理系统以及分光光度法。采用高效液相色谱法作为参考方法,并与化学计量学方法进行比较。所提出的方法具有快速、简单、低成本和准确的优点。
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Simultaneous Determination of Estradiol Cypionate and Medroxyprogesterone Acetate Hormones in Injectable Suspension by UV Spectrophotometry Based on Least-Squares Support Vector Machine and Fuzzy Inference System: Comparison with HPLC.

Background: The combination of estradiol cypionate (ECA) and medroxyprogesterone acetate (MPA) is used to prevent pregnancy in women. The analysis of the ECA and MPA combination reveals a challenge due to the strong overlap of the spectra of these compounds.

Objective: Spectrophotometry techniques along with chemometrics methods are simple, fast, precise, and low-cost for the simultaneous determination of ECA and MPA in a combined pharmaceutical dosage form.

Methods: Two developed approaches, the least-squares support vector machine (LSSVM) and fuzzy inference system (FIS), along with a spectrophotometric method were proposed to solve such a challenging overlap.

Results: Based on the cross-validation method, the regularization parameter (γ) and width of the function (σ) in the LSSVM model were optimized and the root mean square error (RMSE) values were found to be 0.3957 and 0.2839 for ECA and MDA, respectively. The mean recovery values were 99.87 and 99.63% for ECA and MDA, respectively. The FIS coupled with principal component analysis (PCA) showed mean recovery percentages equal to 99.05 and 99.50% for ECA and MDA, respectively. Also, the RMSE of both components was lower than 0.3.

Conclusion: The analysis results of a real sample (injection suspension) using the proposed methods were compared with HPLC by a one-way analysis of variance (ANOVA) test, and no significant differences were found in the results.

Highlights: Intelligent methods were proposed for the simultaneous determination of ECA and MPA. The least-squares support vector machine and fuzzy inference system along with spectrophotometry were used. HPLC as a reference method was performed and compared with chemometrics methods. The benefits of the proposed approaches are that they are rapid, simple, low-cost, and accurate.

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