2012The Proceedings of the Symposium on Micro-Nano Science and TechnologyOpen access

OS1-1-2 Molecular dynamics simulations of structural changes of lipid bilayer under ultrasound

Kenichiro KOSHIYAMA

Open full text 0 citations

Abstract

Combined use of ultrasound and micro- or nano-sized bubbles can deliver macro molecules into biological cells. Here, we introduce molecular dynamics studies that we have conducted for past years to understand the molecular mechanisms about the molecular delivery into the cells. In the studies, we have used the lipid bilayer structure model, the common structure of all biological cell membranes, with unsteady and nonequilibrium molecular dynamics simulation techniques. The studies have revealed the structural changes of the bilayer and the water penetration to the bilayer induced by the impact of shockwave on the bilayer, and the formation of pore structure penetrating the bilayer after the loading of water molecules into the bilayer. Moreover, we present resent results about responses of the intact or pore-containing bilayers to stretch.

Open-access reader

About this research paper

What this paper is about

Combined use of ultrasound and micro- or nano-sized bubbles can deliver macro molecules into biological cells. Here, we introduce molecular dynamics studies that we have conducted for past years to understand the molecular mechanisms about the molecular delivery into the cells. In the studies, we have used the lipid bilayer structure model, the common structure of all biological cell membranes, with unsteady and nonequilibrium molecular dynamics simulation techniques. The studies have revealed the structural changes of the bilayer and the water penetration to the bilayer induced by the impact of shockwave on the bilayer, and the formation of pore structure penetrating the bilayer after the loading of water molecules into the bilayer. Moreover, we present resent results about responses of the intact or pore-containing bilayers to stretch.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Combined use of ultrasound and micro- or nano-sized bubbles can deliver macro molecules into biological cells. Here, we introduce molecular dynamics studies that we have conducted for past years to understand the molecular mechanisms about the molecular delivery into the cells. In the studies, we have used the lipid bilayer structure model, the common structure of all biological cell membranes, with unsteady and nonequilibrium molecular dynamics simulation techniques. The studies have revealed the structural changes of the bilayer and the water penetration to the bilayer induced by the impact of shockwave on the bilayer, and the formation of pore structure penetrating the bilayer after the loading of water molecules into the bilayer. Moreover, we present resent results about responses of the intact or pore-containing bilayers to stretch.

Key concepts: Bilayer, Lipid bilayer, Lipid bilayer mechanics, Molecular dynamics, Biophysics, Model lipid bilayer, Chemical physics, Membrane

Related papers

Back to paper searchBrowse research topicsOriginal source
OS1-1-2 Molecular dynamics simulations of structural changes of lipid bilayer under ultrasound — Research Paper | ScholarLens