Department of Pharmaceutical Analytical Chemistry, Faculty of Pharmacy, Mansoura University, Mansoura 35516, Egypt.
Department of Pharmaceutical Chemistry, College of Pharmacy, Shaqra University, Shaqra 11961, Saudi Arabia; Department of Pharmaceutical Analytical Chemistry, Faculty of Pharmacy, South Valley University, Qena 83523, Egypt.
Spectrochim Acta A Mol Biomol Spectrosc. 2025 Jan 15;325:125067. doi: 10.1016/j.saa.2024.125067. Epub 2024 Aug 30.
This contribution aims to design and validate a new green, cheap, and fast approach for determining the anti-GERD drug pantoprazole in different matrices. New S and N-doped carbon nanomaterials (S,N-CNMs) have been prepared via microwave irradiation of a mixture of widely available household sources. Remarkably, the utilization of a blend of carbamide and thiocarbamide with table sugar yields S,N-CNMs exhibiting the utmost quantum yield (54 %), hydrophilicity, as well as stable, homogeneous, and diminutive particle size distribution. Fourier transform infrared spectroscopy, transmission electron microscopy, spectrophotometry, and fluorescence spectroscopy were applied to characterize the S,N-CNMs. The S,N-CNMs have been used as a turn-off fluorescence probe to determine pantoprazole via a synergism of the inner filter effect and static quenching mechanisms. The fluorescence quenching is linearly correlated to pantoprazole concentration over the range of 1.0-25.0 µg/mL with a detection limit of 0.16 µg/mL. The developed probe exhibited good selectivity for pantoprazole in the presence of variability of substances. Therefore, it was applied for quality control of pantoprazole in pharmaceutical tablets and vials with an average recovery % of 100.10 ± 0.77 % and 100.33 ± 0.92 %, respectively. Moreover, it was successfully implemented to examine the content uniformity of pantoprazole in tablets. Furthermore, the prepared S,N-CNMs have been successfully used for the analysis of pantoprazole in human plasma after a simple protein precipitation step with a recovery % of 97.88 ± 5.72 %. The greenness and blueness of the developed method have been positively assessed by recent tools showing the eco-friendliness and applicability of the developed method.
本研究旨在设计并验证一种新的绿色、廉价且快速的方法,用于测定不同基质中的抗 GERD 药物泮托拉唑。通过微波辐照由广泛可得的家用来源混合物制备了新型 S 和 N 掺杂碳纳米材料(S,N-CNMs)。值得注意的是,利用尿素和硫脲与白砂糖的混合物可以得到具有最高量子产率(54%)、亲水性以及稳定、均匀和微小的颗粒尺寸分布的 S,N-CNMs。傅里叶变换红外光谱、透射电子显微镜、分光光度法和荧光光谱用于表征 S,N-CNMs。S,N-CNMs 被用作关闭荧光探针,通过内滤效应和静态猝灭机制协同作用来测定泮托拉唑。荧光猝灭与泮托拉唑浓度在 1.0-25.0 µg/mL 范围内呈线性相关,检测限为 0.16 µg/mL。在存在多种物质的情况下,该探针对泮托拉唑表现出良好的选择性。因此,它被用于药物片剂和小瓶中泮托拉唑的质量控制,平均回收率分别为 100.10 ± 0.77%和 100.33 ± 0.92%。此外,它还成功地用于检测片剂中泮托拉唑的含量均匀性。此外,在简单的蛋白质沉淀步骤后,所制备的 S,N-CNMs 已成功用于人血浆中泮托拉唑的分析,回收率为 97.88 ± 5.72%。最近的工具对开发方法的绿色性和蓝色性进行了积极评估,表明了开发方法的生态友好性和适用性。