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Global chemical reactivity parameters for several chiral beta-blockers from the Density Functional Theory viewpoint
BACKGROUND AND AIM: Beta-adrenergic antagonists have been established as first line treatment in the medical management of hypertension, acute coronary syndrome and other cardiovascular diseases, as well as for the prevention of initial episodes of gastrointestinal bleeding in patients with cirrhosi...
Autores principales: | , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Iuliu Hatieganu University of Medicine and Pharmacy
2016
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5111492/ https://www.ncbi.nlm.nih.gov/pubmed/27857521 http://dx.doi.org/10.15386/cjmed-610 |
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author | TALMACIU, MONA MARIA BODOKI, EDE OPREAN, RADU |
author_facet | TALMACIU, MONA MARIA BODOKI, EDE OPREAN, RADU |
author_sort | TALMACIU, MONA MARIA |
collection | PubMed |
description | BACKGROUND AND AIM: Beta-adrenergic antagonists have been established as first line treatment in the medical management of hypertension, acute coronary syndrome and other cardiovascular diseases, as well as for the prevention of initial episodes of gastrointestinal bleeding in patients with cirrhosis and esophageal varices, glaucoma, and have recently become the main form of treatment of infantile hemangiomas. The aim of the present study is to calculate for 14 beta-blockers several quantum chemical descriptors in order to interpret various molecular properties such as electronic structure, conformation, reactivity, in the interest of determining how such descriptors could have an impact on our understanding of the experimental observations and describing various aspects of chemical binding of beta-blockers in terms of these descriptors. METHODS: The 2D chemical structures of the beta-blockers (14 molecules with one stereogenic center) were cleaned in 3D, their geometry was preoptimized using the software MOPAC2012, by PM6 method, and then further refined using standard settings in MOE; HOMO and LUMO descriptors were calculated using semi-empirical molecular orbital methods AM1, MNDO and PM3, for the lowest energy conformers and the quantum chemical descriptors (HLG, electronegativity, chemical potential, hardness and softness, electrophilicity) were then calculated. RESULTS: According to HOMO-LUMO gap and the chemical hardness the most stable compounds are alprenolol, bisoprolol and esmolol. The softness values calculated for the study molecules revolve around 0.100. Propranolol, sotalol and timolol have among the highest electrophilicity index of the studied beta-blocker molecules. Results obtained from calculations showed that acebutolol, atenolol, timolol and sotalol have the highest values for the electronegativity index. CONCLUSIONS: The future aim is to determine whether it is possible to find a valid correlation between these descriptors and the physicochemical behavior of the molecules from this class. The HLG could be correlated to the experimentally recorded electrochemical properties of the molecules. HOMO could be correlated to the observed oxidation potential, since the required voltage is related to the energy of the HOMO, because only the electron from this orbital is involved in the oxidation process. |
format | Online Article Text |
id | pubmed-5111492 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Iuliu Hatieganu University of Medicine and Pharmacy |
record_format | MEDLINE/PubMed |
spelling | pubmed-51114922016-11-17 Global chemical reactivity parameters for several chiral beta-blockers from the Density Functional Theory viewpoint TALMACIU, MONA MARIA BODOKI, EDE OPREAN, RADU Clujul Med Original Research BACKGROUND AND AIM: Beta-adrenergic antagonists have been established as first line treatment in the medical management of hypertension, acute coronary syndrome and other cardiovascular diseases, as well as for the prevention of initial episodes of gastrointestinal bleeding in patients with cirrhosis and esophageal varices, glaucoma, and have recently become the main form of treatment of infantile hemangiomas. The aim of the present study is to calculate for 14 beta-blockers several quantum chemical descriptors in order to interpret various molecular properties such as electronic structure, conformation, reactivity, in the interest of determining how such descriptors could have an impact on our understanding of the experimental observations and describing various aspects of chemical binding of beta-blockers in terms of these descriptors. METHODS: The 2D chemical structures of the beta-blockers (14 molecules with one stereogenic center) were cleaned in 3D, their geometry was preoptimized using the software MOPAC2012, by PM6 method, and then further refined using standard settings in MOE; HOMO and LUMO descriptors were calculated using semi-empirical molecular orbital methods AM1, MNDO and PM3, for the lowest energy conformers and the quantum chemical descriptors (HLG, electronegativity, chemical potential, hardness and softness, electrophilicity) were then calculated. RESULTS: According to HOMO-LUMO gap and the chemical hardness the most stable compounds are alprenolol, bisoprolol and esmolol. The softness values calculated for the study molecules revolve around 0.100. Propranolol, sotalol and timolol have among the highest electrophilicity index of the studied beta-blocker molecules. Results obtained from calculations showed that acebutolol, atenolol, timolol and sotalol have the highest values for the electronegativity index. CONCLUSIONS: The future aim is to determine whether it is possible to find a valid correlation between these descriptors and the physicochemical behavior of the molecules from this class. The HLG could be correlated to the experimentally recorded electrochemical properties of the molecules. HOMO could be correlated to the observed oxidation potential, since the required voltage is related to the energy of the HOMO, because only the electron from this orbital is involved in the oxidation process. Iuliu Hatieganu University of Medicine and Pharmacy 2016 2016-10-20 /pmc/articles/PMC5111492/ /pubmed/27857521 http://dx.doi.org/10.15386/cjmed-610 Text en http://creativecommons.org/licenses/by-nc-nd/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License |
spellingShingle | Original Research TALMACIU, MONA MARIA BODOKI, EDE OPREAN, RADU Global chemical reactivity parameters for several chiral beta-blockers from the Density Functional Theory viewpoint |
title | Global chemical reactivity parameters for several chiral beta-blockers from the Density Functional Theory viewpoint |
title_full | Global chemical reactivity parameters for several chiral beta-blockers from the Density Functional Theory viewpoint |
title_fullStr | Global chemical reactivity parameters for several chiral beta-blockers from the Density Functional Theory viewpoint |
title_full_unstemmed | Global chemical reactivity parameters for several chiral beta-blockers from the Density Functional Theory viewpoint |
title_short | Global chemical reactivity parameters for several chiral beta-blockers from the Density Functional Theory viewpoint |
title_sort | global chemical reactivity parameters for several chiral beta-blockers from the density functional theory viewpoint |
topic | Original Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5111492/ https://www.ncbi.nlm.nih.gov/pubmed/27857521 http://dx.doi.org/10.15386/cjmed-610 |
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