Journal of Modern Physics

Volume 5, Issue 4 (February 2014)

ISSN Print: 2153-1196   ISSN Online: 2153-120X

Google-based Impact Factor: 0.86  Citations  h5-index & Ranking

Molecular Dynamics Simulations of the DNA-CNT Interaction Process: Hybrid Quantum Chemistry Potential and Classical Trajectory Approach

HTML  XML Download Download as PDF (Size: 886KB)  PP. 137-144  
DOI: 10.4236/jmp.2014.54023    3,839 Downloads   6,788 Views  Citations

ABSTRACT

In this work the quantum chemistry Tersoff potential in combination with classical trajectory calculations was used to investigate the interaction of the DNA molecule with a carbon nanotube (CNT). The so-called hybrid approach—the classical and quantum-chemical modeling, where the force fields and interaction between particles are based on a definite (but not unique) description method, has been outlined in some detail. In such approach the molecules are described as a set of spheres and springs, thereby the spheres imitate classical particles and the spring the interaction force fields provided by quantum chemistry laws. The Tersoff potential in hybrid molecular dynamics (MD) simulations correctly describes the nature of covalent bonding. The aim of the present work was to estimate the dynamical and structural behavior of the DNA-CNT system at ambient temperature conditions. The dynamical configurations were built up for the DNA molecule interacting with the CNT. The analysis of generated МD configurations for the DNA-CNT complex was carried out. For the DNA-CNT system the observations reveal an encapsulation-like behavior of the DNA chain inside the CNT chain. The discussions were made on possible use of the DNA-CNT complex as a candidate material in drug delivery and related systems.

Share and Cite:

Khusenov, M. , Dushanov, E. and Kholmurodov, K. (2014) Molecular Dynamics Simulations of the DNA-CNT Interaction Process: Hybrid Quantum Chemistry Potential and Classical Trajectory Approach. Journal of Modern Physics, 5, 137-144. doi: 10.4236/jmp.2014.54023.

Cited by

[1] Different forms of silicon nanotubes and their interactions with DNA nucleotides: A molecular dynamics study
Physica B: Condensed Matter, 2022
[2] Interpretation of in-solution small-angle scattering data using molecular dynamics simulations
2020
[3] ИССЛЕДОВАНИЕ ЭЛЕКТРОННОЙ СТРУКТУРЫ УГЛЕРОДНОЙ НАНОТРУБКИ (3, 3) ТИПА" КРЕСЛО" НА ОСНОВЕ ТЕОРИИ ФУНКЦИОНАЛА ПЛОТНОСТИ
2019
[4] МОЛЕКУЛЯРНАЯ ДИНАМИКА ПРОЦЕССОВ ВЗАИМОДЕЙСТВИЯ УГЛЕРОДНОЙ НАНОТРУБКИ, МЕТАЛЛИЧЕСКИХ НАНОЧАСТИЦ И НУКЛЕОТИДОВ
2019
[5] Молекулярная динамика процессов переноса нуклеотидной цепочки внутри углеродной нанотрубки взаимодействующие с наночастицами золота
2018
[6] МОДЕЛСОЗИИ ДИНАМИКАИ МОЛЕКУЛИИ СИСТЕМАИ НАНОНАЙЧАИ КАРБОНӢ-НУКЛЕОТИД-НАНОЗАРРАҲОИ ТИЛЛО
2018
[7] УСТНЫЕ И ПИСЬМЕННЫЕ ТРАДИЦИИ ТАДЖИКСКОЙ ЛИТЕРАТУРЫ В БАДАХШАНЕ (ВТОРАЯ ПОЛОВИНА XIX И НАЧАЛО XX ВВ.)
2018
[8] Моделирование системы углеродная нанотрубка-нук-леотиды-наночастицы золота методом молекулярной динамики
2018
[9] The Optical Phenomena of Interplay between Nanobio Complexes: A Theoretical Insight into Their Biomedical Applications
Optoelectronics Advanced Device Structures, 2017
[10] Molecular dynamics studies on the interaction and encapsulation processes of the nucleotide and peptide chains inside of a carbon nanotube matrix with inclusion of …
2017
[11] Molecular dynamics studies on the interaction and encapsulation processes of the nucleotide and peptide chains inside of a carbon nanotube matrix with inclusion of gold nanoparticles
Journal of Physics: Conference Series, 2017
[12] On Correlation Effect of the Van-der-Waals and Intramolecular Forces for the Nucleotide Chain-Metallic Nanoparticles-Carbon Nanotube Binding
The open biochemistry journal, 2016
[13] DNA Computing Using Carbon Nanotube-DNA Hybrid Nanostructure
Handbook of Research on Natural Computing for Optimization Problems, 2016
[14] Молекулярно-динамическое моделирование Ван-дер-Ваальсовой системы из нуклеотидной цепочки с наночастицами золота в матрице углеродной …
2016
[15] Молекулярно-динамическое моделирование ван-дер-ваальсовой системы из нуклеотидной цепочки с наночастицами золота в матрице углеродной …
2016
[16] МД моделирование процессов инкапсуляции пептидных цепочек в матрице углеродной нанотрубки с наночастицами золота, часть I
2016
[17] Correlation Effect of the Van-der-Waals and Intramolecular Forces for the Nucleotide Chain-Metallic Nanoparticles Binding in a Carbon Nanotube Matrix of Periodic …
2015
[18] Молекулярно-динамическое моделирование из нуклеотидной цепочки с наночастицами золота в матрице углеродной нанотрубки с периодическими …
2015
[19] Конференция ?Ломоносов 2015?
2015
[20] Molecular Dynamics Simulations of the Nucleotides and Metallic Nanoparticles Interaction on a Carbon Nanotube Matrix
MATERIALS TRANSACTIONS, 2015
[21] Correlation Effect of the Van-der-Waals and Intramolecular Forces for the Nucleotide Chain-Metallic Nanoparticles Binding in a Carbon Nanotube Matrix of Periodic Boundaries
British Journal of Applied Science & Technology, 2015
[22] Молекулярно-динамическое моделирование нуклеотидной цепочки с наночастицами золота в матрице углеродной нанотрубки
2015
[23] Correlation Effect of the Van-der-Waals and Intramolecular Forces for the Nucleotide Chain-Metallic Nanoparticles Binding in a Carbon Nanotube Matrix of …
2015
[24] ON MOLECULAR DYNAMICS MODELING OF THE DNA–CNT INTERACTION PROCESSES: THE DIAGNOSTIC APPLICATION AND SIMULATION ASPECTS
7th RUSSIAN-JAPANESE INTERNATIONAL WORKSHOP MSSMBS’14 “Molecular, 2014
[25] Конференция «Ломоносов 2015»
2014
[26] Молекулярно-динамическое моделирование взаимодействия ДНК с углеродной нанотрубкой на основе гибридного подхода: квантово-химического …
2014
[27] ЭЛЕКТРОННАЯ СТРУКТУРА УГЛЕРОДНОЙ НАНОТРУБКИ (3, 3)

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.