Molecules2017,Vol.22Issue(3) :16.DOI:10.3390/molecules22030427

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

de los Angeles Zermeno-Macias, Maria Martin Gonzalez-Chavez, Marco Mendez, Francisco Gonzalez-Chavez, Rodolfo Richaud, Arlette
Molecules2017,Vol.22Issue(3) :16.DOI:10.3390/molecules22030427

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

de los Angeles Zermeno-Macias, Maria 1Martin Gonzalez-Chavez, Marco 2Mendez, Francisco 3Gonzalez-Chavez, Rodolfo 2Richaud, Arlette3
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作者信息

  • 1. Univ Autonoma San Luis Potosi, Ciencias Farmacobiol, San Luis Potosi 78210, Mexico
  • 2. Univ Autonoma San Luis Potosi, Fac Ciencias Quim, Zona Univ, Av Dr Manuel Nava 6, San Luis Potosi 78210, Mexico
  • 3. Univ Autonoma Metropolitana, Div Ciencias Basicas & Ingn, Dept Quim, Unidad Iztapalapa, Mexico City 09340, DF, Mexico
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Abstract

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 (mu), electronegativity () and electrophilicity () (r = 0.86), p < 0.05. Condensed reactivity descriptors s(k)(+), (-)(k) 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), (r = 0.91), and mu/ (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.

Key words

DFT/HSAB principle/indol-4-ones/Fukui function/MEP/antifungal activity/structure-activity analysis

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出版年

2017
Molecules

Molecules

SCI
ISSN:1420-3049
被引量5
参考文献量52
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