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用于监测与化疗药物联合使用的昂丹司琼治疗药物的实验设计电化学传感器。

Experimentally designed electrochemical sensor for therapeutic drug monitoring of Ondansetron co-administered with chemotherapeutic drugs.

作者信息

Abdel Rahman Mona A, Atty Shimaa A, El-Mosallamy Sally S, Elghobashy Mohamed R, Zaazaa Hala E, Saad Ahmed S

机构信息

Analytical Chemistry Department, Faculty of Pharmacy, October 6 University, 6 October City, PO box 12858, Giza, Egypt.

Pharmaceutical Chemistry Department, Egyptian Drug Authority, 51 Wezaret El-Zeraa St, Cairo, Egypt.

出版信息

BMC Chem. 2022 Oct 13;16(1):77. doi: 10.1186/s13065-022-00871-5.

Abstract

The experimental design extracts valuable information about the main effects and interactions from the least number of experiments. The current work constructs a solid-state sensor for selective assay of Ondansetron (OND) in pharmaceutical dosage form and plasma samples. During optimization, the Design Expert statistical package constructed a custom design of 15 sensors with different recipes. We fed the software with the experimentally observed performance parameters for each sensor (slope, LOQ, correlation coefficient, and selectivity coefficient for sodium ions). The computer software analyzed the results to construct a prediction model for each response. The desirability function was adjusted to optimize the Nernstian slope, minimize the LOQ and selectivity coefficients, and maximize the correlation coefficient (r). The practical responses of the optimized sensor were close to those predicted by the model (slope = 60.23 mV/decade slope, LOQ = 9.09 × 10 M, r = 0.999, sodium selectivity coefficient = 1.09 × 10). The sensor successfully recovered OND spiked to tablets and human plasma samples with mean percentage recoveries of 100.01 ± 1.082 and 98.26 ± 2.227, respectively. Results were statistically comparable to those obtained by the reference chromatographic method. The validated potentiometric method can be used for fast and direct therapeutic drug monitoring of OND co-administered with chemotherapeutic drugs in plasma samples.

摘要

实验设计能从最少数量的实验中提取有关主效应和相互作用的有价值信息。当前工作构建了一种固态传感器,用于选择性测定药物剂型和血浆样品中的昂丹司琼(OND)。在优化过程中,Design Expert统计软件包构建了一个包含15种不同配方传感器的定制设计。我们将每个传感器的实验观测性能参数(斜率、定量限、相关系数和钠离子选择性系数)输入该软件。计算机软件分析结果以构建每个响应的预测模型。调整合意函数以优化能斯特斜率、最小化定量限和选择性系数,并最大化相关系数(r)。优化后传感器的实际响应与模型预测值接近(斜率 = 60.23 mV/十年斜率,定量限 = 9.09×10 M,r = 0.999,钠选择性系数 = 1.09×10)。该传感器成功回收了添加到片剂和人血浆样品中的OND,平均回收率分别为100.01±1.082和98.26±2.227。结果在统计学上与参考色谱法获得的结果相当。经过验证的电位法可用于快速直接监测血浆样品中与化疗药物联合使用的OND的治疗药物浓度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43de/9563805/ba43d9a6ddbf/13065_2022_871_Fig1_HTML.jpg

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