Pharmaceutical Analytical Chemistry Department, Deraya University, New Minia, Minia 61519, Egypt.
Analytical Chemistry Department, Faculty of Pharmacy, Minia University, Minia 61519, Egypt.
Spectrochim Acta A Mol Biomol Spectrosc. 2024 Dec 5;322:124838. doi: 10.1016/j.saa.2024.124838. Epub 2024 Jul 16.
In this work, the xanthene dye, erythrosine B, was employed as a probe for the determination of olanzapine using two fast and highly simple analytical approaches. The assay was based on the formation of a binary complex between the drug and erythrosine B in a slightly acidic aqueous buffered solution. In the first method, the absorbance of the formed product was monitored at 558 nm. The reaction stoichiometry was investigated, and the stability constant of the formed complex was estimated. The linear range of the method that obeyed Beer's law was in the concentration range of 0.6-8.0 µg/ml. The calculated detection and quantitation limits were 0.2 and 0.6 µg/mL. Upon adding the drug solution to erythrosine B, the native fluorescence of the dye was quenched and monitored at 550 nm after excitation at 528 nm. Thus, the fluorescence quenching was utilized as the quantitative signal in the spectrofluorimetric approach. The extent of quenching in the fluorescence intensity was rectilinear with the drug concentration in a range of 0.1-2.5 µg/ml with a detection limit of 0.032 µg/ml. Both approaches were analytically validated based on the guiding rules of the ICH with acceptable results, and were utilized efficiently in the analysis of olanzapine in commercial tablets containing the cited drug. In addition, owing to its high sensitivity and selectivity, the spectrofluorimetric method was applied for drug analysis in spiked human plasma with satisfactory % recoveries. Finally, the greenness of the methods was confirmed using eco-score scale and Analytical Green Evaluation metrics.
在这项工作中,我们使用了呫吨染料赤藓红 B 作为探针,通过两种快速且非常简单的分析方法来测定奥氮平。该测定法基于在微酸性水缓冲溶液中,药物与赤藓红 B 形成二元配合物。在第一种方法中,监测形成产物的吸光度在 558nm 处。研究了反应的化学计量,并估算了形成配合物的稳定常数。该方法的线性范围在 0.6-8.0μg/ml 范围内服从比尔定律。计算出的检测限和定量限分别为 0.2 和 0.6μg/mL。在向赤藓红 B 溶液中加入药物后,染料的本征荧光被猝灭,并在 528nm 激发后在 550nm 处监测荧光。因此,荧光猝灭被用作荧光分光光度法中的定量信号。荧光强度的猝灭程度与药物浓度呈线性关系,在 0.1-2.5μg/ml 的范围内,检测限为 0.032μg/ml。两种方法均基于 ICH 的指导原则进行了分析验证,结果令人满意,并有效地用于分析含有该药物的市售片剂中的奥氮平。此外,由于其高灵敏度和选择性,该荧光分光光度法还用于人血浆中加标药物的分析,回收率令人满意。最后,使用生态评分和分析绿色评估指标确认了方法的绿色性。