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Structure, dynamics, and energetics of siRNA-Cationic vector complexation: A molecular dynamics study
Ouyang D.1; Zhang H.1; Herten D.-P.2; Parekh H.S.1; Smith S.C.1
2010-07-22
Source PublicationJournal of Physical Chemistry B
ISSN15205207 15206106
Volume114Issue:28Pages:9220-9230
Abstract

The design and synthesis of safe and efficient nonviral vectors for gene delivery has attracted significant attention in recent years. Previous experiments have revealed that the charge density of a polycation (the carrier) plays a crucial role in complexation and the release of the gene from the complex in the cytosol. In this work, we adopt an atomistic molecular dynamics simulation approach to study the complexation of short strand duplex RNA with six cationic carrier systems of varying charge and surface topology. The simulations reveal detailed molecular-level pictures of the structures and dynamics of the RNA-polycation complexes. Estimates for the binding free energy indicate that electrostatic contributions are dominant followed by van der Waals interactions. The binding free energy between the 8polymers and the RNA is found to be larger than that of the 4polymers, in general agreement with previously published data. Because reliable binding free energies provide an effective index of the ability of the polycationic carrier to bind the nucleic acid and also carry implications for the process of gene release within the cytosol, these novel simulations have the potential to provide us with a much better understanding of key mechanistic aspects of gene-polycation complexation and thereby advance the rational design of nonviral gene delivery systems. © 2010 American Chemical Society.

DOI10.1021/jp911906e
URLView the original
Language英語English
WOS IDWOS:000279787400016
Scopus ID2-s2.0-77954694522
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Citation statistics
Document TypeJournal article
CollectionInstitute of Chinese Medical Sciences
Affiliation1.University of Queensland
2.Universität Heidelberg
Recommended Citation
GB/T 7714
Ouyang D.,Zhang H.,Herten D.-P.,et al. Structure, dynamics, and energetics of siRNA-Cationic vector complexation: A molecular dynamics study[J]. Journal of Physical Chemistry B, 2010, 114(28), 9220-9230.
APA Ouyang D.., Zhang H.., Herten D.-P.., Parekh H.S.., & Smith S.C. (2010). Structure, dynamics, and energetics of siRNA-Cationic vector complexation: A molecular dynamics study. Journal of Physical Chemistry B, 114(28), 9220-9230.
MLA Ouyang D.,et al."Structure, dynamics, and energetics of siRNA-Cationic vector complexation: A molecular dynamics study".Journal of Physical Chemistry B 114.28(2010):9220-9230.
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