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DFT investigation on the application of pure and doped X(12)N(12) (X = B and Al) fullerene-like nano-cages toward the adsorption of temozolomide

The sensitivity of pure and doped X(12)N(12) (X = B and Al) fullerene-like nano-cages (FLNs) toward the anti-cancer drug temozolomide (TMZ) is probed herein at DFT/M06-2X-D3/6-311G(d,p) theoretical level in both gas phase and water. A noticeable affinity of the FLNs toward TMZ was observed along wit...

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Autores principales: Ndjopme Wandji, Brice Laure, Tamafo Fouegue, Aymard Didier, Nkungli, Nyiang Kennet, Ntieche, Rahman Abdoul, Wahabou, Abdoul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8992703/
https://www.ncbi.nlm.nih.gov/pubmed/35401995
http://dx.doi.org/10.1098/rsos.211650
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author Ndjopme Wandji, Brice Laure
Tamafo Fouegue, Aymard Didier
Nkungli, Nyiang Kennet
Ntieche, Rahman Abdoul
Wahabou, Abdoul
author_facet Ndjopme Wandji, Brice Laure
Tamafo Fouegue, Aymard Didier
Nkungli, Nyiang Kennet
Ntieche, Rahman Abdoul
Wahabou, Abdoul
author_sort Ndjopme Wandji, Brice Laure
collection PubMed
description The sensitivity of pure and doped X(12)N(12) (X = B and Al) fullerene-like nano-cages (FLNs) toward the anti-cancer drug temozolomide (TMZ) is probed herein at DFT/M06-2X-D3/6-311G(d,p) theoretical level in both gas phase and water. A noticeable affinity of the FLNs toward TMZ was observed along with the negative gas-phase adsorption energies −1.37 and −2.09 eV for the most stable configurations of pure B(12)N(12) and Al(12)N(12) pristines, respectively. Considerable charge transfer from TMZ to the FLNs was also revealed via NBO analysis and the Hirshfeld atomic charges, making the dipole moment vector of the molecular complexes to be oriented from the nano-cages to the TMZ moiety. Furthermore, a percentage decrease in the HOMO-LUMO energy gap (ΔE(g)) of 38.09 and 17.72% was obtained for the B(12)N(12) and Al(12)N(12) nano-cages, respectively. The percentage change in ΔE(g) was found to be reduced upon doping and solvation of the FLNs. Finally, a recovery time in vacuum ultraviolet light of 1.06 s is found for the complex with pure B(12)N(12), which in addition to the above-mentioned parameters make this boron nitride cage the best sensor for TMZ, among the FLNs considered in the present work.
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spelling pubmed-89927032022-04-08 DFT investigation on the application of pure and doped X(12)N(12) (X = B and Al) fullerene-like nano-cages toward the adsorption of temozolomide Ndjopme Wandji, Brice Laure Tamafo Fouegue, Aymard Didier Nkungli, Nyiang Kennet Ntieche, Rahman Abdoul Wahabou, Abdoul R Soc Open Sci Chemistry The sensitivity of pure and doped X(12)N(12) (X = B and Al) fullerene-like nano-cages (FLNs) toward the anti-cancer drug temozolomide (TMZ) is probed herein at DFT/M06-2X-D3/6-311G(d,p) theoretical level in both gas phase and water. A noticeable affinity of the FLNs toward TMZ was observed along with the negative gas-phase adsorption energies −1.37 and −2.09 eV for the most stable configurations of pure B(12)N(12) and Al(12)N(12) pristines, respectively. Considerable charge transfer from TMZ to the FLNs was also revealed via NBO analysis and the Hirshfeld atomic charges, making the dipole moment vector of the molecular complexes to be oriented from the nano-cages to the TMZ moiety. Furthermore, a percentage decrease in the HOMO-LUMO energy gap (ΔE(g)) of 38.09 and 17.72% was obtained for the B(12)N(12) and Al(12)N(12) nano-cages, respectively. The percentage change in ΔE(g) was found to be reduced upon doping and solvation of the FLNs. Finally, a recovery time in vacuum ultraviolet light of 1.06 s is found for the complex with pure B(12)N(12), which in addition to the above-mentioned parameters make this boron nitride cage the best sensor for TMZ, among the FLNs considered in the present work. The Royal Society 2022-04-06 /pmc/articles/PMC8992703/ /pubmed/35401995 http://dx.doi.org/10.1098/rsos.211650 Text en © 2022 The Authors. https://creativecommons.org/licenses/by/4.0/Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, provided the original author and source are credited.
spellingShingle Chemistry
Ndjopme Wandji, Brice Laure
Tamafo Fouegue, Aymard Didier
Nkungli, Nyiang Kennet
Ntieche, Rahman Abdoul
Wahabou, Abdoul
DFT investigation on the application of pure and doped X(12)N(12) (X = B and Al) fullerene-like nano-cages toward the adsorption of temozolomide
title DFT investigation on the application of pure and doped X(12)N(12) (X = B and Al) fullerene-like nano-cages toward the adsorption of temozolomide
title_full DFT investigation on the application of pure and doped X(12)N(12) (X = B and Al) fullerene-like nano-cages toward the adsorption of temozolomide
title_fullStr DFT investigation on the application of pure and doped X(12)N(12) (X = B and Al) fullerene-like nano-cages toward the adsorption of temozolomide
title_full_unstemmed DFT investigation on the application of pure and doped X(12)N(12) (X = B and Al) fullerene-like nano-cages toward the adsorption of temozolomide
title_short DFT investigation on the application of pure and doped X(12)N(12) (X = B and Al) fullerene-like nano-cages toward the adsorption of temozolomide
title_sort dft investigation on the application of pure and doped x(12)n(12) (x = b and al) fullerene-like nano-cages toward the adsorption of temozolomide
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8992703/
https://www.ncbi.nlm.nih.gov/pubmed/35401995
http://dx.doi.org/10.1098/rsos.211650
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