DETERMINATION OF THE IONIZATION CONSTANT OF FAVIPIRAVIR API

Yu. V. Scrypynets, G. O. Fedosenko, G. V. Maltsev, I. I. Chebotars'ka, D. I. Aleksandrova, S. N. Kashutskуy, A. V. Yegorova
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Abstract

One of the aspects of studying the physical and chemical properties of compounds is the establishment of their ionization constants. These indicators are extremely important from both a theoretical and a practical point of view. Theoretical analysis of proteolytic equilibria and potentiometric titration of an aqueous solution of an oral antiviral drug approved for the treatment of influenza in Japan, AFI favipiravir, were carried out in the paper. The presence of a hydroxy group in the third position of the pyrazine cycle in the molecule determines the ability of favipiravir to exhibit acid-base properties. According to acid-base titration, the ionization constant of Favipiravir API was determined: pKa = 5.05 ± 0.02. On the basis of the found pK value, the degree of formation of protolytic forms was calculated depending on the pH of the solution. It was established that favipiravir API in solutions exists in two protonated (non-ionized), tautomeric forms A1H and A2H and one deprotonated (ionized) form A-. Based on the calculations, the following conclusions can be drawn: - at a pH value of the solution from 0 to 3.5, approximately 100% of the substance will be in two protonated (non-ionized), tautomeric forms A1H and A2H; - at pH = 5, approximately 50% of the substance will be in two protonated (non-ionized), tautomeric forms, A1H and A2H; - at a pH value > 6.5, approximately 100% of the substance will be in one deprotonated (ionized) form of A-. This is confirmed by the nature of the electronic absorption spectra of aqueous solutions of favipiravir. In the spectrum of favipiravir in a 0.1 M hydrochloric acid solution, there are two bands at the wavelengths of 322 nm and 365 nm, which correspond to the two tautomeric forms A1H and A2H. In the spectrum of favipiravir in 0.1 M sodium hydroxide solution, there is one band at a wavelength of 364 nm, which corresponds to one ionized form of A-. At the stage of pharmaceutical development, these data on the acid-base properties of the Favipiravir API can be used in the development of production technology, the creation of quality control methods and their validation, as well as in the study of the solubility of the API and the dissolution profiles of the finished medicinal product.
法匹拉韦原料药电离常数的测定
研究化合物的物理和化学性质的一个方面是建立它们的电离常数。从理论和实践的角度来看,这些指标都极其重要。本文对日本批准用于治疗流感的口服抗病毒药物favipiravir水溶液的蛋白水解平衡进行了理论分析和电位滴定。在分子中吡嗪循环的第三位羟基的存在决定了favipiravir表现出酸碱性质的能力。采用酸碱滴定法测定Favipiravir原料药的电离常数:pKa = 5.05±0.02。根据发现的pK值,根据溶液的pH值计算原解形式的形成程度。确定了favipiravir原料药在溶液中以两种质子化(非电离)的互变异构形式A1H和A2H存在,一种去质子化(电离)形式A-存在。根据计算,可以得出以下结论:—在溶液pH值为0 ~ 3.5时,大约100%的物质将以两种质子化(非电离)的互变异构形式A1H和A2H;-在pH = 5时,大约50%的物质将以两种质子化(非电离)的互变异构形式存在,A1H和A2H;- pH值>6.5,大约100%的物质将以A-的一种去质子化(电离)形式存在。法匹拉韦水溶液的电子吸收光谱性质证实了这一点。在0.1 M盐酸溶液中favipiravir的光谱中,存在322 nm和365 nm两个波长波段,分别对应A1H和A2H两种互变异构形式。在0.1 M氢氧化钠溶液中favipiravir的光谱中,在364 nm波长处有一个波段,对应于a -的一种电离形式。在药物开发阶段,这些关于Favipiravir原料药酸碱性质的数据可用于生产技术的开发,质量控制方法的创建及其验证,以及原料药的溶解度和成品药物溶出谱的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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