Chemistry Department, Faculty of Science, Al-Azhar University, Assiut, Egypt.
Pharmaceutical Analytical Chemistry Department, Faculty of Pharmacy, Merit University, New Sohag, Egypt.
Luminescence. 2022 Apr;37(4):543-550. doi: 10.1002/bio.4178. Epub 2022 Feb 10.
To analyze alogliptin in its pharmaceutical dosage forms and human plasma, a sensitive, inexpensive, simple, and precise spectrofluorimetric method was developed and tested. This method was also used to investigate the drug's pharmacokinetic behaviour in the blood of rats. This was based on the Hantzsch reaction, which produces yellowish luminous products that can be detected spectrofluorometrically at 480 and 415 nm for emission and excitation, respectively, when the primary amine group in the examined drug reacts with acetylacetone and formaldehyde. Several experimental parameters that affect the reaction product's development and stability were explored and improved. The curve of fluorescence and concentration for alogliptin was linear in the concentration range 0.05-3.60 μg ml . The proposed approach was validated according to International Council for Harmonization criteria. The method was successfully utilized to evaluate the examined drug in dose formulations and spiked human plasma with high accuracy.
为分析阿格列汀的药物制剂和人血浆中的含量,开发并测试了一种灵敏、经济、简便、精确的分光荧光法。该方法还用于研究该药物在大鼠血液中的药代动力学行为。这是基于 Hantzsch 反应,当被测药物中的伯胺基团与乙酰丙酮和甲醛反应时,会产生黄色发光产物,可以在 480nm 和 415nm 处分别通过分光荧光法检测到发射和激发。探讨并改进了影响反应产物形成和稳定性的几个实验参数。阿格列汀的荧光和浓度曲线在 0.05-3.60μg/ml 的浓度范围内呈线性。该方法根据国际协调理事会的标准进行了验证。该方法成功地用于评估剂量制剂中的被测药物和加标人血浆中的药物,具有很高的准确性。