Almalki Atiah H, Abdelazim Ahmed H, Alosaimi Manal E, Abduljabbar Maram H, Alnemari Reem M, Bamaga Ahmed K, Serag Ahmed
Department of Pharmaceutical Chemistry, College of Pharmacy, Taif University P. O. Box 11099 21944 Taif Saudi Arabia.
Addiction and Neuroscience Research Unit, Taif University Health Science Campus, P. O. Box 11099 21944 Taif Saudi Arabia.
RSC Adv. 2024 Jan 29;14(6):4089-4096. doi: 10.1039/d3ra07365c. eCollection 2024 Jan 23.
This study presents the development of an eco-friendly and highly selective mitrogen-doped carbon quantum dot based sensor (N-CQDs) for the detection of gabapentin - a commonly misused drug. A detailed characterization of N-CQDs spectral features and their interaction with gabapentin is provided. The optimal conditions for sensing, including pH value, buffer volume, N-CQDs concentration, and incubation time, were established. The results showed excellent fluorescence quenching at 475 nm ( = 380 nm) due to the dynamic quenching mechanism, and the sensor demonstrated excellent linearity in the 0.5-8.0 μg mL concentration range with correlation coefficients of more than 0.999, a limit of detection (LOD) of 0.160 and limit of quantification (LOQ) of 0.480 μg mL. The accuracy of the proposed sensor was acceptable with a mean accuracy of 99.91 for gabapentin detection. In addition, precision values were within the acceptable range, with RSD% below 2% indicating good repeatability and reproducibility of the sensor. Selectivity was validated using common excipients and pooled plasma samples. The proposed sensor accurately estimated gabapentin concentration in commercial pharmaceutical formulations and spiked plasma samples, exhibiting excellent comparability with previously published methods. The 'greenness' of the sensing system was evaluated using the Analytical GREEnness calculator, revealing low environmental impact and strong alignment with green chemistry principles with a greenness score of 0.76. Thus, the developed N-CQDs-based sensor offers a promising, eco-friendly, and effective tool for gabapentin detection in various situations, ranging from clinical therapeutics to forensic science.
本研究展示了一种用于检测加巴喷丁(一种常用的滥用药物)的基于氮掺杂碳量子点的环保且高选择性传感器(N-CQDs)的开发。提供了N-CQDs光谱特征及其与加巴喷丁相互作用的详细表征。确定了传感的最佳条件,包括pH值、缓冲液体积、N-CQDs浓度和孵育时间。结果表明,由于动态猝灭机制,在475nm(激发波长为380nm)处有出色的荧光猝灭,该传感器在0.5 - 8.0μg/mL浓度范围内表现出出色的线性,相关系数大于0.999,检测限(LOD)为0.160,定量限(LOQ)为0.480μg/mL。所提出的传感器用于加巴喷丁检测的准确度可接受,平均准确度为99.91。此外,精密度值在可接受范围内,相对标准偏差(RSD%)低于2%,表明该传感器具有良好的重复性和再现性。使用常见辅料和混合血浆样本验证了选择性。所提出的传感器准确估计了市售药物制剂和加标血浆样本中的加巴喷丁浓度,与先前发表的方法具有出色的可比性。使用分析绿色度计算器评估了传感系统的“绿色度”,结果显示其对环境影响低,与绿色化学原则高度契合,绿色度评分为0.76。因此,所开发的基于N-CQDs的传感器为从临床治疗到法医学等各种情况下的加巴喷丁检测提供了一种有前景、环保且有效的工具。