Ayman Aya, Wahba M E K, El-Gindy Alaa El-Din M A, El-Shabrawy Yasser, Mostafa Aziza E
Department of Pharmaceutical Analytical Chemistry, Faculty of Pharmacy, Suez Canal University, Ismailia, Egypt.
Pharmaceutical Chemistry Department, Faculty of Pharmacy, Delta University for Science and Technology, Gamasa 35712, Egypt.
R Soc Open Sci. 2024 Jul 3;11(7):231642. doi: 10.1098/rsos.231642. eCollection 2024 Jul.
Two rapid, simple, sensitive and selective derivative spectrofluorimetric methods (first and second derivative synchronous spectrofluorimetric (FDSFS and SDSFS) procedures) have been developed for the analysis of florfenicol in the presence of its various degradation products. FDSFS was applied to assay the drug in the presence of its alkaline, oxidative and photolytic degradation products while SDSFS was used to quantify it in the presence of its acidic degradation product. These methods permitted quantification of florfenicol at corresponding of 288, 287, 279 and 284 nm without interferences from any of its degradation products. Full validation procedures were applied to the suggested method according to International Conference of Harmonization guidelines. Moreover, different degradation kinetic parameters were calculated such as half-life ( ), degradation rate constant () and activation energy ( ). Using the analytical eco-scale, green analytical procedure index and analytical greenness metric approach AGREE as greenness assessment tools, the proposed method was found to be environmentally friendly.
已开发出两种快速、简单、灵敏且具选择性的导数荧光分光光度法(一阶和二阶导数同步荧光分光光度法(FDSFS和SDSFS)程序),用于在存在多种氟苯尼考降解产物的情况下分析氟苯尼考。FDSFS用于在其碱性、氧化和光解降解产物存在下测定该药物,而SDSFS用于在其酸性降解产物存在下对其进行定量。这些方法允许在288、287、279和284nm处相应波长下对氟苯尼考进行定量,而不受其任何降解产物的干扰。根据国际协调会议指南,对所建议的方法应用了完整的验证程序。此外,还计算了不同的降解动力学参数,如半衰期()、降解速率常数()和活化能()。使用分析生态规模、绿色分析程序指数和分析绿色度度量方法AGREE作为绿色度评估工具,发现所提出的方法对环境友好。