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Theoretical Reactivity Study of Indol-4-Ones and Their Correlation with Antifungal Activity

机译:吲哚-4-酮的理论反应性研究及其与抗真菌活性的关系

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摘要

Chemical reactivity descriptors of indol-4-ones obtained via density functional theory (DFT) and hard–soft acid–base (HSAB) principle were calculated to prove their contribution in antifungal activity. Simple linear regression was made for global and local reactivity indexes. Results with global descriptors showed a strong relationship between antifungal activity vs. softness (S) (r = 0.98) for series I (>6, >7a–>g), and for series II (>8a–>g) vs. chemical potential (µ), electronegativity (χ) and electrophilicity (ω) (r = 0.86), p < 0.05. Condensed reactivity descriptors sk+, ωk for different fragments had strong relationships for series I and II (r = 0.98 and r = 0.92). Multiple linear regression was statistically significant for S (r = 0.98), η (r = 0.91), and µ/ω (r = 0.91) in series I. Molecular electrostatic potential maps (MEP) showed negative charge accumulation around oxygen of carbonyl group and positive accumulation around nitrogen. Fukui function isosurfaces showed that carbons around nitrogen are susceptible to electrophilic attack, whereas the carbon atoms of the carbonyl and phenyl groups are susceptible to nucleophilic attack for both series. The above suggest that global softness in conjunction with softness and electrophilicity of molecular fragments in enaminone systems and pyrrole rings contribute to antifungal activity of indol-4-ones.
机译:计算了通过密度泛函理论(DFT)和硬-软酸碱(HSAB)原理获得的吲哚-4-酮的化学反应性描述符,以证明它们在抗真菌活性中的作用。对全局和局部反应性指数进行了简单的线性回归。具有全局描述符的结果显示,系列I(> 6 ,> 7a – > g 的抗真菌活性与柔软度(S)之间有很强的关系(r = 0.98)。 strong>),对于系列II(> 8a – > g )与化学势(µ),电负性(χ)和亲电性(ω)(r = 0.86), p <0.05。不同片段的缩合反应性描述符sk + ,ωk-在I和II系列中具有很强的关系(r = 0.98和r = 0.92)。系列I的S(r = 0.98),η(r = 0.91)和µ /ω(r = 0.91)的多元线性回归具有统计学意义。分子静电势图(MEP)显示羰基氧周围的负电荷积累和氮周围的正积累。 Fukui函数等值面表明,氮和碳原子周围的碳均易受亲电性攻击,而羰基和苯基的碳原子均易受亲核性攻击。以上表明整体柔软度与烯胺酮系统和吡咯环中分子片段的柔软度和亲电子性一起有助于吲哚-4-酮的抗真菌活性。

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