J0270201 Molecular Dynamics Study about Water Permeability Change of Lipid Membranes under Stretching : toward Development of Liposomes for Drug Delivery
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- KURUMATANI Ryotaro
- Graduate school of Engineering Science, Osaka University
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- SHIGEMATSU Taiki
- 大阪大学大学院基礎工学研究科
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- KOSHIYAMA Kenichiro
- 大阪大学大学院基礎工学研究科
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- WADA Shigeo
- 大阪大学大学院基礎工学研究科
Bibliographic Information
- Other Title
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- J0270201 張力下における脂質膜の水分子透過性変化の分子動力学解析 : ドラッグデリバリ用リポソーム開発に向けて
Description
In order to develop drug delivery systems (DDS) using liposomes, it is important to understand the effects of mechanical stresses on the water permeability of liposomes. We perform a series of molecular dynamics simulations of stretched palmitoyl-oleoyl phosphatidylcoline (POPC) lipid bilayers, which is the fundamental shell component of the liposomes. The stretched bilayers are simulated by constant temperature and bilayer normal pressure MD simulations with various constant areas. Under stretching, the bilayer thickness becomes thin. In the core of the bilayer, the lipid density increases, resulted in the smaller diffusion coefficient and the larger potential of mean force of water in the core region. This leads to the increase in the local resistance for water permeation. However, the apparent water permeability, which is the inverse of the integrated value of the resistance profile across the bilayer, shows the increase trend as the thickness decreases, although it depends on the applied stretch. This indicates that the water permeability and the permeation mechanism might be affected by mechanical stresses. As the DDS liposomes experience various mechanical stresses during blood circulation, it may be important to evaluate the leakage of drugs from the liposome considering the history of the stresses and the apparent permeability change.
Journal
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- The Proceedings of Mechanical Engineering Congress, Japan
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The Proceedings of Mechanical Engineering Congress, Japan 2015 (0), _J0270201--_J0270201-, 2015
The Japan Society of Mechanical Engineers
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Details 詳細情報について
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- CRID
- 1390001205843235712
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- NII Article ID
- 110010048720
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- ISSN
- 24242667
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- Text Lang
- ja
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- Data Source
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- JaLC
- Crossref
- CiNii Articles
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- Abstract License Flag
- Disallowed