Identification of degradation products of saquinavir mesylate by LC-MS: Molecular docking and in silico ADME prediction studies

Kiran Gangarapu, Julakanti Venu, Mulagada Monja, T. Gouthami, V. Bakshi
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Abstract

Saquinavir mesylate (SQM) is subjected to forced degradation under conditions of hydrolysis, oxidation, dry heat, photolysis as recommended by International conference on Harmonization guideline Q1A (R2). In total, (I-V) degradation products (DPs) were formed in acidic hydrolytic, alkaline hydrolytic and oxidative conditions. Successful separation of SQM and its DPs was achieved on C18(4.6mm×75mm) 3.5μg column at ambient temperature (30 ̊C) with mobile phase A (10mM ammonium acetate in water), B100% acetonitrile at 2.0ml/min flow rate in the gradient mode. The injection volume was fixed at 20μl and detection wavelength at 238nm. The HPLC method was found to be linear, accurate, precise, sensitive, specific, rugged, and robust for quantification of SQM as well as degradation products. The major degradation products (DP-1) formed in hydrolytic acid conditions was identified and characterized by LC-MS/MS and proposed the fragmentation patterns by comparing with SQM. Further, DP-1 were isolated through column chromatography and analyzed by 1H NMR. In Silico molecular docking studies on HIV protease (PDB: 4qgi) for DPs and SQM was estimated and found to be pharmacologically inactive than SQM. Prediction of Toxicity and ADME properities were performed for DP-1 and SQM and found to less toxic.
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甲磺酸沙奎那韦降解产物的LC-MS鉴定:分子对接和硅ADME预测研究
甲磺酸沙奎那韦(SQM)按照国际协调会议指南Q1A (R2)的建议,在水解、氧化、干热、光解等条件下进行强制降解。总的来说,(I-V)降解产物(DPs)在酸性水解、碱性水解和氧化条件下形成。在C18(4.6mm×75mm) 3.5μg色谱柱上,在室温(30℃)条件下,以流动相A (10mM乙酸铵水溶液)、B100%乙腈为流动相,梯度流速2.0ml/min,成功分离了SQM及其DPs。注射量为20μl,检测波长为238nm。该方法线性、准确、精密度高、灵敏度高、特异性强、坚固耐用,适用于SQM和降解产物的定量分析。采用LC-MS/MS对水解酸条件下形成的主要降解产物DP-1进行了鉴定和表征,并通过与SQM的比较提出了其破碎模式。通过柱层析分离得到DP-1,并进行1H NMR分析。在计算机上对DPs和SQM的HIV蛋白酶(PDB: 4qgi)进行了分子对接研究,发现DPs和SQM的药理活性比SQM低。对DP-1和SQM进行了毒性和ADME性能预测,发现毒性较小。
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