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异吲哚荧光团衍生物在西格列汀抗糖尿病药物测定中的新应用:在剂型和生物体液评价中的应用。

A new application of isoindole fluorophore derivative in sitagliptin antidiabetic medication assay: Application to dosage forms and biological fluid evaluation.

机构信息

Department of Pharmaceutical Sciences, College of Pharmacy, Shaqra University, Shaqra, Saudi Arabia.

Department of Pharmaceutical Analytical Chemistry, Faculty of Pharmacy, South Valley University, Qena, Egypt.

出版信息

Luminescence. 2023 Jun;38(6):744-752. doi: 10.1002/bio.4502. Epub 2023 May 9.

Abstract

Dipeptidyl peptidase-4 enzyme suppressant is a unique category of oral antidiabetic medication. Sitagliptin (STG) is a perfect member of this category and is pharmaceutically marketed alone or in combination with metformin. Here, the ideal application of an isoindole derivative for STG assay was developed using a feasible, easy-to-use, economic, and affordable method. STG as an amino group donor can form a luminescent derivative: isoindole on interaction with o-phthalaldehyde and the existence of (2-mercaptoethanol) 0.02% (v/v) as a thiol group donor. Excitation (339.7 nm) and emission (434.6 nm) wavelengths were used to monitor the isoindole fluorophore yield; moreover, each experimental variable was carefully investigated and adjusted. The calibration graph was constructed by plotting fluorescence intensities against STG concentrations, and controlled linearity was observed at concentrations ranging from 50 to 1000 ng/ml. The International Council for Harmonisation of Technical Requirements for Pharmaceuticals for Human Use guidelines were analyzed in depth to prove the technique validation. The implementation of the present technique was extended successfully to the evaluation of various types of STG dose forms and spiking samples of human plasma and urine. The developed technique was shown to be an effective, simple, and quick replacement for quality control and clinical study evaluation of STG.

摘要

二肽基肽酶-4 酶抑制剂是一种独特的口服抗糖尿病药物类别。西他列汀(STG)是该类别的完美成员,单独或与二甲双胍联合在药物市场上销售。在这里,开发了一种使用可行、易用、经济且负担得起的方法,以将异吲哚衍生物理想地应用于 STG 测定。STG 作为氨基供体,可以与邻苯二醛相互作用形成发光衍生物:异吲哚,并存在 0.02%(v/v)的(2-巯基乙醇)作为巯基供体。使用激发(339.7nm)和发射(434.6nm)波长来监测异吲哚荧光团的产率;此外,还仔细研究和调整了每个实验变量。通过将荧光强度与 STG 浓度绘制曲线来构建校准曲线,并观察到在 50 至 1000ng/ml 的浓度范围内存在受控的线性关系。深入分析了人用药品技术要求国际协调理事会的指导原则,以证明该技术的验证。本技术的实施成功扩展到评估各种类型的 STG 剂型以及人血浆和尿液的加标样品。所开发的技术被证明是一种有效、简单和快速的替代方法,可用于 STG 的质量控制和临床研究评估。

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