Interaction of Crizotinib (as an anti lung cancer drug) on Pure, Boron-Doped, and Carboxylated C60 Fullerene: Based on Density Functional Theory

Notwithstanding the enormous benefit of crizotinib, as anti lung cancer, severe toxicity as side effects are the main problem for this drug. In this research, the interaction of crizotinib over NH2 agent with C60 fullerene, boron-doped fullerene (C59B), and carboxylated fullerenes (C60COOH) using de...

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Main Authors: Ashrafsadat Ghasemi, Mohmmad kia Kiani, fateme ravari
Format: Article
Language:English
Published: Iranian Environmental Mutagen Society 2020-10-01
Series:Journal of Water and Environmental Nanotechnology
Subjects:
aim
dft
nbo
Online Access:http://www.jwent.net/article_239870_d478bce898211236c84fbfb5fac06c39.pdf
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spelling doaj-48d1f817e0164df588af8f851827093e2021-02-17T13:34:42ZengIranian Environmental Mutagen SocietyJournal of Water and Environmental Nanotechnology2476-72042476-66152020-10-015436937710.22090/jwent.2020.04.007239870Interaction of Crizotinib (as an anti lung cancer drug) on Pure, Boron-Doped, and Carboxylated C60 Fullerene: Based on Density Functional TheoryAshrafsadat Ghasemi0Mohmmad kia Kiani1fateme ravari2Chemistry Department, Payame Noor University, Tehran, IranChemistry Department, Payame Noor University, Tehran, IranChemistry Department, Payame Noor University, Tehran, IranNotwithstanding the enormous benefit of crizotinib, as anti lung cancer, severe toxicity as side effects are the main problem for this drug. In this research, the interaction of crizotinib over NH2 agent with C60 fullerene, boron-doped fullerene (C59B), and carboxylated fullerenes (C60COOH) using density functional theory at B3LYP/6-311G(d) theoretical level in the gaseous phase and the water solvent were evaluated. Comparison of the drug-fullerenes complex in terms of structure, energy, type of interaction was performed through optimization, frequency, natural bond orbital, and atoms in molecules calculations. The results showed that the interaction of the drug with fullerenes due to the positive interaction energy and the unstable complexation could not be proper interaction between the drug and the nanoparticle. Binding between crizotinib and C59B is covalent, and the drug absorption is chemical. The interaction between crizotinib with C60COOH has been recognized as appropriate due to some properties such as higher solubility in water, relative stability, hydrogen bonding, and physical absorption of the drug. The result of this research can be counted as a promising strategy to reduce the toxicity and develop the anti lung cancer activity of crizotinib.http://www.jwent.net/article_239870_d478bce898211236c84fbfb5fac06c39.pdfaimc60 fullerenecrizotinibdftnbo
collection DOAJ
language English
format Article
sources DOAJ
author Ashrafsadat Ghasemi
Mohmmad kia Kiani
fateme ravari
spellingShingle Ashrafsadat Ghasemi
Mohmmad kia Kiani
fateme ravari
Interaction of Crizotinib (as an anti lung cancer drug) on Pure, Boron-Doped, and Carboxylated C60 Fullerene: Based on Density Functional Theory
Journal of Water and Environmental Nanotechnology
aim
c60 fullerene
crizotinib
dft
nbo
author_facet Ashrafsadat Ghasemi
Mohmmad kia Kiani
fateme ravari
author_sort Ashrafsadat Ghasemi
title Interaction of Crizotinib (as an anti lung cancer drug) on Pure, Boron-Doped, and Carboxylated C60 Fullerene: Based on Density Functional Theory
title_short Interaction of Crizotinib (as an anti lung cancer drug) on Pure, Boron-Doped, and Carboxylated C60 Fullerene: Based on Density Functional Theory
title_full Interaction of Crizotinib (as an anti lung cancer drug) on Pure, Boron-Doped, and Carboxylated C60 Fullerene: Based on Density Functional Theory
title_fullStr Interaction of Crizotinib (as an anti lung cancer drug) on Pure, Boron-Doped, and Carboxylated C60 Fullerene: Based on Density Functional Theory
title_full_unstemmed Interaction of Crizotinib (as an anti lung cancer drug) on Pure, Boron-Doped, and Carboxylated C60 Fullerene: Based on Density Functional Theory
title_sort interaction of crizotinib (as an anti lung cancer drug) on pure, boron-doped, and carboxylated c60 fullerene: based on density functional theory
publisher Iranian Environmental Mutagen Society
series Journal of Water and Environmental Nanotechnology
issn 2476-7204
2476-6615
publishDate 2020-10-01
description Notwithstanding the enormous benefit of crizotinib, as anti lung cancer, severe toxicity as side effects are the main problem for this drug. In this research, the interaction of crizotinib over NH2 agent with C60 fullerene, boron-doped fullerene (C59B), and carboxylated fullerenes (C60COOH) using density functional theory at B3LYP/6-311G(d) theoretical level in the gaseous phase and the water solvent were evaluated. Comparison of the drug-fullerenes complex in terms of structure, energy, type of interaction was performed through optimization, frequency, natural bond orbital, and atoms in molecules calculations. The results showed that the interaction of the drug with fullerenes due to the positive interaction energy and the unstable complexation could not be proper interaction between the drug and the nanoparticle. Binding between crizotinib and C59B is covalent, and the drug absorption is chemical. The interaction between crizotinib with C60COOH has been recognized as appropriate due to some properties such as higher solubility in water, relative stability, hydrogen bonding, and physical absorption of the drug. The result of this research can be counted as a promising strategy to reduce the toxicity and develop the anti lung cancer activity of crizotinib.
topic aim
c60 fullerene
crizotinib
dft
nbo
url http://www.jwent.net/article_239870_d478bce898211236c84fbfb5fac06c39.pdf
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AT mohmmadkiakiani interactionofcrizotinibasanantilungcancerdrugonpureborondopedandcarboxylatedc60fullerenebasedondensityfunctionaltheory
AT fatemeravari interactionofcrizotinibasanantilungcancerdrugonpureborondopedandcarboxylatedc60fullerenebasedondensityfunctionaltheory
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