CHARACTERISATION AND STUDY OF 1- [2- (2-BENZOYLPHENOXY) ETHYL] -6-METHYLURACIL MECHANISM OF ACTION

E. A. Jain (Korsakova), D. Demchenko, A. Ozerov, M. Makarova, V. Makarov, V. Balabanyan
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Abstract

The aim of the study is to identify 1-[2-(2-benzoylphenoxy) ethyl]-6-methyluracil using various methods of analysis, as well as to study its action mechanism against wild-type and mutant forms of HIV-1 reverse transcriptase (RT).Materials and methods. To characterize the structure of the test substance, a few kinds of analysis (X-ray diffraction, elemental, thermal) as well as a few kinds of spectroscopy (UV, IR, and NMR) have been used. The study of the action mechanism of the compound as a potential drug was carried out by evaluating the inhibitory activity against HIV-1 RT wild-type and its mutant forms corresponding to drug-resistant viral strains.Results. The studies have been carried out to confirm the structure of 1-[2-(2-benzoylphenoxy)ethyl]-6-methyluracil. The UV spectrum has a pronounced absorption maximum when measuring a solution of the substance in tetrahydrofuran at the concentration of 0.10 mg / ml. In the IR spectrum, there are specific bands in the range of 4000-370 cm–1. These factors make it possible to use UV and IR spectra to identify the test compound in the substance. It has also been established that the number and mutual arrangement of functional groups, the integrated intensity of signals in the 1H-NMR spectrum, as well as the structure of the carbon skeleton, correspond to the structure of 1-[2-(2-benzoylphenoxy) ethyl]-6-methyluracil. The results of studying the action mechanism showed that the test compound is an effective inhibitor of wild-type HIV-1 RT with an inhibition constant of 0.2 µM, as well as an enzyme inhibitor (mutation G190A) with an inhibition constant of 8 µM; enzyme (mutation Y181C) with an inhibition constant of 10 µM, as well as a reverse transcriptase (RT) inhibitor (mutation L100I, K103N, V106A) and a double mutant K103N / Y181C with an inhibition constant of more than 20 µM.Conclusion. As a result of the performed X-ray structural, elemental, 1H-NMR and 13C-NMR analyzes, the structure of 1-[2-(2-benzoylphenoxy)ethyl]-6-methyluracil has been confirmed. The possibility of using UV, IR and NMR spectroscopy, as well as thermal analyzes to confirm the authenticity during the verification of 1-[2-(2-benzoylphenoxy)ethyl]-6-methyluracil, has been shown. The developed methods can be used in the quality control and included in the draft of practice guidelines for the investigated substance. The studies of the action mechanism of the compound of HIV-1 RT reverse transcriptase have shown that this compound belongs to the group of non-nucleoside reverse transcriptase inhibitors (NNRTIs) of HIV-1.
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1-[2-(2-苯甲酰苯氧基)乙基]-6-甲基尿嘧啶的表征及作用机理研究
本研究的目的是通过各种分析方法鉴定1-[2-(2-苯甲酰苯氧基)乙基]-6-甲基尿嘧啶,并研究其对野生型和突变型HIV-1逆转录酶(RT)的作用机制。材料和方法。为了表征测试物质的结构,使用了几种分析(x射线衍射,元素,热)以及几种光谱(紫外,红外和核磁共振)。通过评价该化合物对HIV-1 RT野生型及其对应的耐药病毒株的抑制活性,对其作为潜在药物的作用机制进行了研究。研究证实了1-[2-(2-苯甲酰苯氧基)乙基]-6-甲基尿嘧啶的结构。当四氢呋喃溶液浓度为0.10 mg / ml时,紫外光谱有明显的最大吸收,红外光谱在4000-370 cm-1范围内有特定的波段。这些因素使得利用紫外和红外光谱来鉴别物质中的被试化合物成为可能。同时还确定了其官能团的数量和相互排列、1H-NMR谱信号的综合强度以及碳骨架的结构与1-[2-(2-苯甲酰苯氧基)乙基]-6-甲基尿嘧啶的结构相对应。作用机制研究结果表明,该化合物是野生型HIV-1 RT的有效抑制剂,抑制常数为0.2µM,同时也是酶抑制剂(突变G190A),抑制常数为8µM;一个逆转录酶(RT)抑制剂(突变为L100I、K103N、V106A)和一个双突变体K103N / Y181C,其抑制常数均大于20µM。通过x射线结构、元素、1H-NMR和13C-NMR分析,证实了1-[2-(2-苯甲酰苯氧基)乙基]-6-甲基尿嘧啶的结构。在验证1-[2-(2-苯甲酰苯氧基)乙基]-6-甲基尿嘧啶的过程中,利用紫外、红外和核磁共振光谱以及热分析来确认其真实性的可能性已经被证明。所开发的方法可用于质量控制,并可纳入所研究物质的实施指南草案。对HIV-1 RT逆转录酶化合物作用机制的研究表明,该化合物属于HIV-1的非核苷类逆转录酶抑制剂(NNRTIs)。
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