Aboelghar Sohair M, Hegazy Maha A, Wagdy Hebatallah A
Pharmaceutical Chemistry Department, Faculty of Pharmacy, The British University in Egypt, P.O. Box 43, El-Sherouk City, Cairo, 11837, Egypt.
Health Research Center of Excellence, Drug Research and Development Group, Faculty of Pharmacy, The British University in Egypt, El-Sherouk City, Egypt.
J Fluoresc. 2024 Aug 16. doi: 10.1007/s10895-024-03851-1.
Remdesivir and acetyl salicylic acid are often co-administered medications in the treatment of COVID-19, specifically targeting the viral infection and thromboembolism associated with the condition. Hence, it is essential to establish a technique that enables the concurrent quantification of these pharmaceutical compounds in plasma while also keeping environmentally friendly methods. Accordingly, the aim of this work is to simultaneously determine remdesivir and acetyl salicylic acid through a bioanalytical validated synchronous spectrofluorimetric method with applying principles of green chemistry. Since, the two drugs showed severe overlap after excitation at 242.0 nm, 284.0 nm for remdesivir and acetyl salicylic acid, respectively. The overlap was effectively overcome by using synchronous mode with a wavelength difference (Δλ) of 160.0 nm for remdesivir and 100.0 nm for acetyl salicylic acid. Different parameters have been optimized such as Δλ, solvent, pH and surfactant. A linear calibration was obtained over the concentration range 0.01-4.00 µg/mL for remdesivir and 0.01-3.00 µg/mL for acetyl salicylic acid and the method was precise and accurate. The method was successfully used for the investigation of pharmaceutical formulation and the quantification of the maximum plasma concentration (C) of the two drugs. The method has been evaluated as an excellent green analytical method based on three greenness assessment tools.
瑞德西韦和乙酰水杨酸是治疗新冠肺炎时常用的联合用药,专门针对该疾病相关的病毒感染和血栓栓塞。因此,建立一种能够同时定量血浆中这些药物化合物且保持环境友好的方法至关重要。相应地,本研究的目的是通过应用绿色化学原理,采用经过生物分析验证的同步荧光光谱法同时测定瑞德西韦和乙酰水杨酸。由于,两种药物在分别于242.0 nm(瑞德西韦)和284.0 nm(乙酰水杨酸)激发后显示出严重的重叠。通过使用同步模式有效克服了这种重叠,瑞德西韦的波长差(Δλ)为160.0 nm,乙酰水杨酸的波长差为100.0 nm。对不同参数进行了优化,如Δλ、溶剂、pH值和表面活性剂。在0.01 - 4.00 μg/mL(瑞德西韦)和0.01 - 3.00 μg/mL(乙酰水杨酸)的浓度范围内获得了线性校准,该方法精确且准确。该方法成功用于药物制剂的研究以及两种药物最大血浆浓度(C)的定量。基于三种绿色度评估工具,该方法被评估为一种优秀的绿色分析方法。