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小茴香酮和樟脑腙与5-酰基-4-吡喃酮的反应:一种合成新型聚羰基共轭物的方法——互变异构平衡和抗病毒活性

The Reaction of Fenchone and Camphor Hydrazones with 5-Acyl-4-Pyrones as a Method for the Synthesis of New Polycarbonyl Conjugates: Tautomeric Equilibrium and Antiviral Activity.

作者信息

Viktorova Viktoria V, Obydennov Dmitrii L, Kovaleva Kseniya S, Yarovaya Olga I, Khasanov Shokhrukh A, Bormotov Nikolay I, Esaulkova Iana L, Serova Olga A, Zarubaev Vladimir V, Shishkina Larisa N, Salakhutdinov Nariman F, Sosnovskikh Vyacheslav Y

机构信息

Institute of Natural Sciences and Mathematics, Ural Federal University, 620000, Ekaterinburg, Russian Federation.

N. N. Vorozhtsov Novosibirsk Institute of Organic Chemistry, 630090, Novosibirsk, Russian Federation.

出版信息

Chem Biodivers. 2025 Jan;22(1):e202401461. doi: 10.1002/cbdv.202401461. Epub 2024 Oct 29.

Abstract

Selective synthesis of polycarbonyl conjugates of (+)-fenchone and (+)-camphor was carried out (44-91 % yields) via the ring-opening transformation of 5-acyl-4-pyrones with hydrazones of the corresponding monoterpenoids. A strong influence of the hydrazone fragment on the observed tautomeric equilibrium of the tricarbonyl system was shown. Although the major tautomer of the conjugates is the acyclic polycarbonyl form, the camphor-based conjugates undergo new type of ring-chain tautomerism, diketoenaminone-dihydropyridone equilibrium, and predominantly exist in the cyclic dihydropyridone form in DMSO-d. The polyketones can undergo intramolecular cyclization to form N-amino-4-pyridones in high selectivity. In vitro screening for activity against the influenza virus H1 N1 and vaccinia virus was estimated for the obtained conjugates. The (+)-fenchone derivatives demonstrated the higher activity against vaccinia virus than camphor derivatives. The conjugate, which was prepared from diethyl isochelidonate and hydrazone (+)-fenchone, showed the highest activity against vaccinia virus (SI=17).

摘要

通过5-酰基-4-吡喃酮与相应单萜腙的开环转化,实现了(+)-葑酮和(+)-樟脑的聚羰基共轭物的选择性合成(产率44-91%)。研究表明,腙片段对观察到的三羰基体系的互变异构平衡有很大影响。虽然共轭物的主要互变异构体是无环聚羰基形式,但基于樟脑的共轭物会发生新型的环链互变异构,即二酮烯胺酮-二氢吡啶酮平衡,并且在氘代二甲亚砜中主要以环状二氢吡啶酮形式存在。聚酮可以进行分子内环化,以高选择性形成N-氨基-4-吡啶酮。对所得到的共轭物进行了抗甲型流感病毒H1N1和痘苗病毒活性的体外筛选。(+)-葑酮衍生物对痘苗病毒的活性高于樟脑衍生物。由异螯合剂二乙酯和(+)-葑酮腙制备的共轭物对痘苗病毒表现出最高活性(SI=17)。

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