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由合成呋喃黄酮化合物生成的pH依赖性多态系统:花色苷多态化学物种的始祖

pH-Dependent Multistate System Generated by a Synthetic Furanoflavylium Compound: An Ancestor of the Anthocyanin Multistate of Chemical Species.

作者信息

Alejo-Armijo A, Parola A Jorge, Pina Fernando

机构信息

LAQV-REQUIMTE, Departamento de Química, Faculdade de Ciências e Tecnologia, Universidade NOVA de Lisboa, 2829-516 Caparica, Portugal.

出版信息

ACS Omega. 2019 Feb 22;4(2):4091-4100. doi: 10.1021/acsomega.8b03696. eCollection 2019 Feb 28.

Abstract

The multistate of chemical species generated by 4'-hydroxy-3,2'-furanoflavylium is similar to that of anthocyanins and related compounds. This furanoflavylium multistate system was fully characterized by UV-visible and NMR spectroscopy, allowing determination of the respective equilibrium and rate constants. In contrast to the multistate generated by flavylium cations derived from anthocyanins and related compounds, the furanoflavylium multistate is characterized by much slower hydration and tautomerization (pyran ring opening-closing). In addition, the isomerization of the chalcones of this system (2'-hydroxyaurones) is extremely slow when compared with anthocyanins. The observed similar order of magnitude for tautomerization and isomerization rate constants leads to peculiar kinetics from the flavylium cation (pH = 1) to the stable -chalcone (higher pH values). The hemiketal appears and disappears during the first stages of the kinetics, which gives the intermediate -chalcone (pseudo-equilibrium). This last species disappears in a much slower process, as fully characterized by H NMR, to give the final -chalcone.

摘要

由4'-羟基-3,2'-呋喃黄酮鎓生成的化学物种的多态性与花青素及相关化合物的类似。该呋喃黄酮鎓多态系统通过紫外可见光谱和核磁共振光谱进行了全面表征,从而能够确定各自的平衡常数和速率常数。与源自花青素及相关化合物的黄酮鎓阳离子所产生的多态性不同,呋喃黄酮鎓多态性的特征在于水合作用和互变异构(吡喃环开合)要慢得多。此外,与花青素相比,该系统查耳酮(2'-羟基噢哢)的异构化极其缓慢。互变异构和异构化速率常数观察到的相似数量级导致了从黄酮鎓阳离子(pH = 1)到稳定的查耳酮(较高pH值)的特殊动力学。半缩酮在动力学的最初阶段出现并消失,从而产生中间查耳酮(准平衡)。如通过核磁共振氢谱充分表征的那样,最后一种物种在一个慢得多的过程中消失,从而产生最终的查耳酮。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d69d/6648164/8e446e24867f/ao-2018-03696z_0011.jpg

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