SYNTHESIS METHOD OF OPTICALLY PURE ENANTIOMERS OF 5-ARYL SUBSTITUTED3-METHYL‑7- NITRO‑1,2-DIHYDRO‑3H‑1,4-BENZODIAZEPIN‑2-ONES

A. Y. Kornylov, A. A. Krysko, O. Krysko, S. E. Sambursky
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Abstract

The aim of this work is to develop a simple, fast and efficient method for the synthesis of optically pure enantiomers of some 5-aryl-substituted 3-methyl‑7-nitro‑1,2-dihydro‑3H‑1,4-benzodiazepin‑2-ones using simple reagents. In the course of the study, we found that the interaction of 2-amino‑5-nitrobenzophenone or 2-amino‑2’-chloro‑5-nitrobenzophenone with optically active L- or D‑α-alanine N‑carboxyanhydrides in the presence of two equivalents of trifluoroacetic acid does not leads to the formation of the corresponding reaction intermediates (2-amino-N-(2-benzoylphenyl)propanamide), even when refluxed for 24 hours in xylene. Acylation of 5-nitro‑2-aminobenzophenones with hydrochlorides of L- or D‑α-alanine acid chlorides, followed by cyclization under mild conditions, leads to target 3-methyl‑7-nitro‑1,2-dihydro‑3H‑1,4-benzodiazepin‑2-ones characterized by high optical purity. It is noteworthy that these reactions allow the coupling of acid chlorides derived from stereospecific α-alanines with weakly reactive 5-nitro derivatives of 2-aminobenzophenone without racemization. It is important to note that the acid chloride hydrochlorides of optically active α-alanines, which are chemically unstable and extremely sensitive to moisture, are used as building blocks in the work. In this case, acid chlorides of individual antipodes of L- or D‑α-alanine were synthesized in absolute chloroform using phosphorus pentachloride and the products were isolated by simple filtration of precipitates, without applying additional purification to them. The structure of the title compound was confirmed by spectroscopy 1H and 13C NMR, and FAB mass spectrometry methods, purity was controlled by HPLC. To analyze the optical purity of the1,2-dihydro‑3H‑1,4-benzodiazepines synthesized in this work, HPLC was applied using stationary chiral phase CiraDex®. This simple preparation method is of potential practical importance for the design and synthesis of optically pure enantiomers of various 3-alkyl derivatives of 1,2-dihydro‑3H‑1,4-benzodiazepin‑2-ones with a wide spectrum of biological activity.
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5-芳基取代3-甲基- 7-硝基- 1,2-二氢- 3h - 1,4-苯二氮杂酮对映体的合成方法
本工作的目的是开发一种简单、快速、高效的方法,用简单的试剂合成一些5-芳基取代的3-甲基- 7-硝基- 1,2-二氢- 3H - 1,4-苯二氮杂平- 2-酮的光学纯对映体。在研究过程中,我们发现2-氨基- 5-硝基二苯甲酮或2-氨基- 2 ' -氯- 5-硝基二苯甲酮与光学活性L-或D - α-丙氨酸N-羧基氢化物在两种等量的三氟乙酸存在下的相互作用,即使在二甲苯中回流24小时也不会导致形成相应的反应中间体(2-氨基-N-(2-苯甲酰苯基)丙酰胺)。5-硝基- 2-氨基苯甲酮与L-或D - α-丙氨酸氯化物的盐酸酰化,然后在温和条件下环化,得到具有高光学纯度的目标3-甲基- 7-硝基- 1,2-二氢- 3H - 1,4-苯二氮杂平- 2-酮。值得注意的是,这些反应允许由立体特异性α-丙氨酸衍生的酸性氯化物与2-氨基苯甲酮的弱反应性5-硝基衍生物偶联而不发生外消旋。值得注意的是,光学活性α-丙氨酸的酸性氯化物氢氯化物在化学上不稳定,对水分极其敏感,在这项工作中被用作基石。在这种情况下,使用五氯化磷在绝对氯仿中合成L-或D - α-丙氨酸的单个对映体的酸性氯化物,并通过沉淀物的简单过滤分离产物,而无需对其进行额外的纯化。标题化合物的结构经1H、13C NMR和FAB质谱法证实,纯度经HPLC控制。为了分析本研究合成的1,2-二氢- 3H - 1,4-苯二氮卓类药物的光学纯度,采用CiraDex®固定手性相高效液相色谱法。这种简单的制备方法对于设计和合成具有广泛生物活性的1,2-二氢- 3H - 1,4-苯二氮杂平- 2-酮的各种3-烷基衍生物的光学纯对映体具有潜在的实际意义。
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CHEMOSORPTION COMPOSITIONS BASED ON PHLOGOPITE FOR LOW-TEMPERATURE AIR PURIFICATION FROM SULFUR DIOXIDE IN MEMORY OF VALENTYNA FEDORIVNA SAZONOVA (1943–2021) SORPTION OF APOLAR LIQUIDS BY NATURAL HIGH MOLECULAR COMPOUNDS SYNTHESIS AND STRUCTURE OF COORDINATION COMPOUND OF COBALT(II) 5-SULFOSALICYLATE WITH BENZOHYDRAZIDE COPOLYMERIZATION OF UNSATURATED OLIGOESTERS MODIFIED WITH NITROGEN-CONTAINING COMPOUNDS WITH METHYL METHACRYLATE
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