Coarse-Grained Molecular Dynamics Studies of the Concentration and Size Dependence of Fifth- and Seventh-Generation PAMAM Dendrimers on Pore Formation in DMPC Bilayer
- 10 June 2008
- journal article
- research article
- Published by American Chemical Society (ACS) in The Journal of Physical Chemistry B
- Vol. 112 (26) , 7778-7784
- https://doi.org/10.1021/jp802606y
Abstract
We have performed molecular dynamics (MD) simulations of multiple copies of unacetylated G5 and G7 and acetylated G5 dendrimers in dimyristoylphosphatidylcholine bilayers with explicit water using the coarse-grained model developed by Marrink et al. (J. Phys. Chem. B2007, 111, 7812) with the inclusion of long-range electrostatics. When initially clustered together near the bilayer, neutral acetylated dendrimers aggregate, whereas cationic unacetylated dendrimers do not aggregate, but separate from each other, similar to the observations from atomic force microscopy by Mecke et al. (Chem. Phys. Lipids2004, 132, 3). The bilayers interacting with unacetylated dendrimers of higher concentration are significantly deformed and show pore formation on the positively curved portions, while acetylated dendrimers are unable to form pores. Unacetylated G7 dendrimers bring more water molecules into the pores than do unacetylated G5 dendrimers. These results agree qualitatively with experimental results showing that significant cytoplasmic-protein leakage is produced by unacetylated G7 dendrimers at concentrations as low as 10 nM, but only at a much higher concentration of 400 nM for unacetylated G5 dendrimers (Bioconjugate Chem. 2004, 15, 774). This good qualitative agreement indicates that the effect on pore formation of the concentration and size of large nanoparticles can be studied through coarse-grained MD simulations, provided that long-range electrostatic interactions are included.Keywords
This publication has 32 references indexed in Scilit:
- Nanoparticle Interaction with Biological Membranes: Does Nanotechnology Present a Janus Face?Accounts of Chemical Research, 2007
- Targeted drug delivery with dendrimers: Comparison of the release kinetics of covalently conjugated drug and non-covalent drug inclusion complexAdvanced Drug Delivery Reviews, 2005
- Monte Carlo calculations for the intrinsic viscosity of several dendrimer moleculesThe Journal of Chemical Physics, 2005
- Dynamics and Thermodynamics of Water in PAMAM Dendrimers at Subnanosecond Time ScalesThe Journal of Physical Chemistry B, 2005
- Conformations of Flexible Dendrimers: A Simulation StudyMacromolecules, 2003
- Conformations of dendrimers in dilute solutionThe Journal of Chemical Physics, 2002
- VMD: Visual molecular dynamicsJournal of Molecular Graphics, 1996
- Lateral diffusion in the liquid phases of dimyristoylphosphatidylcholine/cholesterol lipid bilayers: a free volume analysisBiochemistry, 1992
- Starburst dendrimers. 5. Molecular shape controlJournal of the American Chemical Society, 1989
- Molecular dynamics with coupling to an external bathThe Journal of Chemical Physics, 1984