Department of Pharmaceutical Chemistry, College of Pharmacy, Taif University, P.O. Box 11099, Taif, Saudi Arabia.
Addiction and Neuroscience Research Unit, Health Science Campus, Taif University, P.O. Box 11099, Taif, Saudi Arabia.
Luminescence. 2024 Jul;39(7):e4812. doi: 10.1002/bio.4812.
Attention deficit hyperactivity disorder (ADHD) is a neurological condition frequently identified in early childhood and frequently co-occurs with other neuropsychological disorders, particularly autism. Viloxazine hydrochloride, a non-stimulant medication, has recently gained approval for treating attention-deficit hyperactivity disorder. This paper describes the first spectrofluorimetric method for precisely measuring the content of viloxazine in pharmaceutical capsules and rat plasma. This method employed NBD-Cl (4-chloro-7-nitrobenzo-2-oxa-1,3-diazole) as a fluorescent probe, which transformed viloxazine in an alkaline environment into a remarkably sensitive fluorescent adduct. Upon excitation at 476 nm, this adduct becomes detectable at a wavelength of 536 nm. The method was validated using ICH criteria, revealing acceptable linearity across a concentration range of 200-2000 ng/ml and high sensitivity with LOD and LOQ values of 46.774 ng/ml and 141.741 ng/ml, respectively. This method was adeptly applied in a pharmacokinetic study of viloxazine in rat plasma following a single oral dose (10 mg/kg), yielding a mean peak plasma concentration (C) of 1721 ng/ml, achieved within 1.5 h. Furthermore, the environmental impact of the technique was assessed using two greenness assessment tools, revealing a notable level of eco-friendliness and sustainability.
注意缺陷多动障碍(ADHD)是一种常见于儿童早期的神经疾病,常与其他神经心理障碍同时发生,尤其是自闭症。盐酸威洛沙嗪是一种非兴奋剂药物,最近已被批准用于治疗注意力缺陷多动障碍。本文描述了一种用于精确测量药物胶囊和大鼠血浆中威洛沙嗪含量的首次荧光分光光度法。该方法使用 NBD-Cl(4-氯-7-硝基苯并-2-氧杂-1,3-二唑)作为荧光探针,在碱性环境中将威洛沙嗪转化为一种非常灵敏的荧光加合物。在 476nm 处激发,该加合物在 536nm 处可检测到。该方法使用 ICH 标准进行验证,显示出在 200-2000ng/ml 浓度范围内具有可接受的线性关系,并且具有较高的灵敏度,LOD 和 LOQ 值分别为 46.774ng/ml 和 141.741ng/ml。该方法成功应用于大鼠血浆中单剂量(10mg/kg)口服后威洛沙嗪的药代动力学研究,得出平均血浆峰浓度(C)为 1721ng/ml,在 1.5 小时内达到。此外,使用两种绿色评估工具评估了该技术的环境影响,结果显示出显著的生态友好性和可持续性。