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Anticancer Activities of Re(I) Tricarbonyl and Its Imidazole-Based Ligands: Insight from a Theoretical Approach

[Image: see text] Rhenium complexes have been observed experimentally to exhibit good inhibitory activity against malignant cells. Hence, our motivation is to explore this activity from a theoretical perspective. In the present study, density functional theory (DFT) and in silico molecular docking a...

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Autores principales: Matlou, Mabu L., Louis, Hitler, Charlie, Destiny E., Agwamba, Ernest C., Amodu, Ismail O., Tembu, Vuyelwa J., Manicum, Amanda-Lee E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10035000/
https://www.ncbi.nlm.nih.gov/pubmed/36969470
http://dx.doi.org/10.1021/acsomega.2c07779
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author Matlou, Mabu L.
Louis, Hitler
Charlie, Destiny E.
Agwamba, Ernest C.
Amodu, Ismail O.
Tembu, Vuyelwa J.
Manicum, Amanda-Lee E.
author_facet Matlou, Mabu L.
Louis, Hitler
Charlie, Destiny E.
Agwamba, Ernest C.
Amodu, Ismail O.
Tembu, Vuyelwa J.
Manicum, Amanda-Lee E.
author_sort Matlou, Mabu L.
collection PubMed
description [Image: see text] Rhenium complexes have been observed experimentally to exhibit good inhibitory activity against malignant cells. Hence, our motivation is to explore this activity from a theoretical perspective. In the present study, density functional theory (DFT) and in silico molecular docking approaches were utilized to unravel the unique properties of metal-based rhenium tricarbonyl complexes as effective anticancer drugs. All DFT calculations and geometric optimizations were conducted using the well-established hybrid functional B3LYP-GD(BJ)/Gen/6-311++G(d,p)/LanL2DZ computational method. The FT-IR spectroscopic characterization of the complexes: fac-[Re(Pico)(CO)(3)(Pz)] (R1), fac-[Re(Pico)(CO)(3)(Py)] (R2), fac-[Re(Dfpc)(CO)(3)(H(2)O)] (R3), fac-[Re(Dfpc)(CO)(3)(Pz)] (R4), fac-[Re(Dfpc)(CO)(3)(Py)] (R5), fac-[Re(Tfpc)(CO)(3)(H(2)O)] (R6), fac-[Re(Tfpc)(CO)(3)(Py)] (R7), and fac-[Re(Tfpc)(CO)(3)(Im)] (R8) was explored. To gain insights into the electronic structural properties, bioactivity, and stability of these complexes, the highest occupied molecular orbital–lowest unoccupied molecular orbital analysis, binding energy, and topological analysis based on quantum theory of atoms-in-molecules were considered. The anticancer activities of the complexes were measured via in silico molecular docking against human BCL-2 protein (IG5M) and proapoptotic (agonist) BAX 1 protein (450O). The results showed that the studied complexes exhibited good binding affinity (−3.25 to −10.16 kcal/mol) and could cause significant disruption of the normal physiological functions of the studied proteins. The results of DFT calculations also showed that the studied complexes exhibited good stability and are suitable candidates for the development of anticancer agents.
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spelling pubmed-100350002023-03-24 Anticancer Activities of Re(I) Tricarbonyl and Its Imidazole-Based Ligands: Insight from a Theoretical Approach Matlou, Mabu L. Louis, Hitler Charlie, Destiny E. Agwamba, Ernest C. Amodu, Ismail O. Tembu, Vuyelwa J. Manicum, Amanda-Lee E. ACS Omega [Image: see text] Rhenium complexes have been observed experimentally to exhibit good inhibitory activity against malignant cells. Hence, our motivation is to explore this activity from a theoretical perspective. In the present study, density functional theory (DFT) and in silico molecular docking approaches were utilized to unravel the unique properties of metal-based rhenium tricarbonyl complexes as effective anticancer drugs. All DFT calculations and geometric optimizations were conducted using the well-established hybrid functional B3LYP-GD(BJ)/Gen/6-311++G(d,p)/LanL2DZ computational method. The FT-IR spectroscopic characterization of the complexes: fac-[Re(Pico)(CO)(3)(Pz)] (R1), fac-[Re(Pico)(CO)(3)(Py)] (R2), fac-[Re(Dfpc)(CO)(3)(H(2)O)] (R3), fac-[Re(Dfpc)(CO)(3)(Pz)] (R4), fac-[Re(Dfpc)(CO)(3)(Py)] (R5), fac-[Re(Tfpc)(CO)(3)(H(2)O)] (R6), fac-[Re(Tfpc)(CO)(3)(Py)] (R7), and fac-[Re(Tfpc)(CO)(3)(Im)] (R8) was explored. To gain insights into the electronic structural properties, bioactivity, and stability of these complexes, the highest occupied molecular orbital–lowest unoccupied molecular orbital analysis, binding energy, and topological analysis based on quantum theory of atoms-in-molecules were considered. The anticancer activities of the complexes were measured via in silico molecular docking against human BCL-2 protein (IG5M) and proapoptotic (agonist) BAX 1 protein (450O). The results showed that the studied complexes exhibited good binding affinity (−3.25 to −10.16 kcal/mol) and could cause significant disruption of the normal physiological functions of the studied proteins. The results of DFT calculations also showed that the studied complexes exhibited good stability and are suitable candidates for the development of anticancer agents. American Chemical Society 2023-03-07 /pmc/articles/PMC10035000/ /pubmed/36969470 http://dx.doi.org/10.1021/acsomega.2c07779 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Matlou, Mabu L.
Louis, Hitler
Charlie, Destiny E.
Agwamba, Ernest C.
Amodu, Ismail O.
Tembu, Vuyelwa J.
Manicum, Amanda-Lee E.
Anticancer Activities of Re(I) Tricarbonyl and Its Imidazole-Based Ligands: Insight from a Theoretical Approach
title Anticancer Activities of Re(I) Tricarbonyl and Its Imidazole-Based Ligands: Insight from a Theoretical Approach
title_full Anticancer Activities of Re(I) Tricarbonyl and Its Imidazole-Based Ligands: Insight from a Theoretical Approach
title_fullStr Anticancer Activities of Re(I) Tricarbonyl and Its Imidazole-Based Ligands: Insight from a Theoretical Approach
title_full_unstemmed Anticancer Activities of Re(I) Tricarbonyl and Its Imidazole-Based Ligands: Insight from a Theoretical Approach
title_short Anticancer Activities of Re(I) Tricarbonyl and Its Imidazole-Based Ligands: Insight from a Theoretical Approach
title_sort anticancer activities of re(i) tricarbonyl and its imidazole-based ligands: insight from a theoretical approach
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10035000/
https://www.ncbi.nlm.nih.gov/pubmed/36969470
http://dx.doi.org/10.1021/acsomega.2c07779
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