USING QUANTUM-CHEMICAL PARAMETERS FOR PREDICTING ANTIRADICAL (HO•) ACTIVITY OF RELATED STRUCTURES CONTAINING A CINNAMOIL FRAGMENT. IV. STRUCTURE-ACTIVITY RELATIONSHIP BETWEEN UNSATURATION INDICES AND FLAVONE DERIVATIVES WITH FLOROGLUCIN RING “A”

E. Oganesyan, S. S. Shatokhin
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Abstract

The quantum-chemical parameters of 52 derivatives related to flavanones, flavanonoles, flavones and flavonoles with a phloroglucinic type of the A ring and containing electron-donating substituents in the B ring were studied.The aim is the analysis of the dynamics of changes in the electron density, bond numbers, free valence indices and unsaturation indices on carbon atoms C-7 → C-8 of the vinyl group of the main conjugation chain in relation to the position and number of substituents in the “B” ring and the type of the pharmacological activity.Materials and methods. The quantum-chemical parameters of the 4 analyzed groups of the compounds, have been calculated by the semi-empirical method PM7 (WinMopac 2016 program) on the workstation with an Intel Xeon E5-1620 3.5 GHz processor, 20 GB of RAM.Results and discussion. When comparing the quantum chemical parameters of the analyzed compounds, it was established that when the C-7 → C-8 multiple bond is formed, the free valency and unsaturation indices increase on both carbon atoms of the vinylene group in flavones and flavonols compared to the corresponding flavanones and flavanonols. This is explained by the fact that the value of the bond numbers Nµ on these atoms, on the contrary, decreases (Fµ = 4.732-Nµ). The transition from flavanone to flavone is accompanied by the formation of a vinyl group C-7 → C-8, and therefore both atoms from the sp3-hybridized state go into the sp2-state. The consequence of this transformation is a change in the electronegativity value and an increase in the unsaturation index of C-7 and C-8 atoms: C sp3 = 2.5;  Csp2 = 2.8. At the same time, the transition from flavanone to flavone leads to the formation of a conjugated system with the participation of π-electrons of the aromatic system “B”, C-7, C-8 atoms and the carbonyl group, which is commonly called the “main conjugation chain”. These structural changes, namely, the transition from a less oxidized flavanone to a more oxidized flavone, contribute to a decrease in the electron density on C-7 and C-8 atoms, and an increase in the total unsaturation of the molecules in general. Mulliken charges on C-7 of all groups of compounds are characterized by a positive value. As for the carbon atoms of the B fragment, the following features are revealed here: in the presence of one substituent -OH or -OCH3 on the carbon atom to which the substituent is bounded, the Mulliken charge is positive; if there are two substituents in the B ring -OH or -OCH3, as well as two -OCH3 groups, then the carbon atoms bonded to the indicated substituents also have a positive Mulliken charge; in the case of trihydroxy substituted in the C-2, C-3 and C-4 B ring, all three carbon atoms are characterized by a positive Mulliken charge; if there are methoxy groups in positions C-2, C-3 and C-4, then the positive Mulliken charge is concentrated only on C-2 and C-4 atoms, and on C-3 atom this charge has a negative value.Conclusion. The above data on the quantum-chemical parameters of the main conjugation chain indicate that the transition of C-7 and C-8 atoms to the sp2-hybrid state, leads to a decrease in the electron density and a decrease in the bond numbers, with a simultaneous increase in the indices of unsaturation and free valence on these atoms. Thus, the trigger mechanism of the anti-radical activity, primarily with respect to the HO • radical, is determined by the fact that this particle, electrophilic in its properties, will attach in the C-8  atom during an initial attack. 
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利用量子化学参数预测含有肉桂油片段的相关结构的抗自由基活性。四、含“a”环的黄酮衍生物与不饱和指数的构效关系
研究了52种黄酮类、黄酮酮类、黄酮类和黄酮类衍生物的量子化学参数,这些衍生物的a环为间苯三酚型,B环上含有供电子取代基。目的是分析主共轭链乙烯基上碳原子C-7→C-8的电子密度、键数、自由价指数和不饱和指数随B环取代基位置、数目和药理活性类型的动态变化。材料和方法。在Intel Xeon E5-1620 3.5 GHz处理器、20gb RAM的工作站上,采用半经验方法PM7 (WinMopac 2016程序)计算了所分析化合物的4个基团的量子化学参数。结果和讨论。通过比较所分析化合物的量子化学参数,发现当C-7→C-8多键形成时,黄酮和黄酮醇中乙烯基碳原子的游离价和不饱和指数均高于相应的黄烷酮和黄烷醇。这是因为这些原子上的键数Nµ反而减小了(Fµ= 4.732-Nµ)。从黄酮到黄酮的转变伴随着乙烯基C-7→C-8的形成,因此两个原子都从sp3杂化态进入sp2态。这种转变的结果是C-7和C-8原子的电负性值发生变化,不饱和指数增加:C sp3 = 2.5;Csp2 = 2.8。同时,从黄酮过渡到黄酮,芳香族体系“B”的π电子、C-7、C-8原子和羰基参与形成共轭体系,通常称为“主共轭链”。这些结构变化,即从氧化程度较低的黄酮类化合物转变为氧化程度较高的黄酮类化合物,导致C-7和C-8原子上的电子密度降低,总体上增加了分子的总不饱和度。所有基团化合物的C-7上的Mulliken电荷都以正值为特征。对于B片段的碳原子,这里揭示了以下特征:当取代基所结合的碳原子上有一个取代基-OH或-OCH3时,Mulliken电荷为正;如果B环上有两个取代基-OH或-OCH3,以及两个-OCH3基团,那么与所指示取代基相连的碳原子也带正电荷;在C-2、C-3和c - 4b环上取代的三羟基的情况下,三个碳原子都带一个正的Mulliken电荷;如果C-2、C-3和C-4位置上有甲氧基,则正电荷只集中在C-2和C-4原子上,而C-3原子上的正电荷为负值。上述主共轭链的量子化学参数数据表明,C-7和C-8原子跃迁至sp2杂化态,导致电子密度降低,键数减少,同时这些原子的不饱和指数和自由价指数增加。因此,抗自由基活性的触发机制,主要是关于HO•自由基的,是由这样一个事实决定的,即在初始攻击期间,这种具有亲电性的粒子会附着在C-8原子上。
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