The important properties of biological membranes such as elasticity and structure, and their interaction with nanoparticles is of great importance to nanomedicine applications such as drug delivery and gene therapy. This thesis reports on studies carried out using molecular dynamics (MD) simulations to investigate the physics and chemistry of POPC lipid bilayer membranes and their interactions with ions and nanoparticles. In this study two techniques were employed; all atomic (AA) and coarse grained (CG) MD simulations. In the first part of our investigations, the elastic properties of a 1-palmitoyl-2-oleoyl-snglycero- 3-phosphocholine (POPC) membrane with missing leaflets as well as a defect-free membrane were determined. The calcu...
AbstractA metric of nanoparticle toxicity is the passive permeability rate through cellular membrane...
In coarse grained molecular dynamics (CGMD) simulations, small groups of atoms are treated as single...
The number of engineered nanoparticles for applications in the biomedical arena has grown tremendous...
The important properties of biological membranes such as elasticity and structure, and their intera...
We have carried out molecular dynamics simulations using NAMD to study the diffusivity of Na and Cl ...
Gold nanoparticles are interesting candidates for medical applications like markers in imaging metho...
Biological membranes are mainly composed of two layers of lipids, various kinds of proteins and orga...
Hydrophobic and functionalized nanoparticles of different sizes and shapes have a various biomedical...
PhDPassive permeation through biological membranes is an important mechanism for transporting molec...
The study presented in this document is the result of three years of research into the complex worl...
AbstractTo reach their biological target, drugs have to cross cell membranes, and understanding pass...
A molecular dynamics simulation of a membrane with net charge in its liquid-crystalline state was ca...
Lateral diffusion of membrane components (lipids and proteins) is an important membrane property to ...
Understanding the interaction between the nanoparticle and the bilayer cell membrane is an important...
AbstractA metric of nanoparticle toxicity is the passive permeability rate through cellular membrane...
In coarse grained molecular dynamics (CGMD) simulations, small groups of atoms are treated as single...
The number of engineered nanoparticles for applications in the biomedical arena has grown tremendous...
The important properties of biological membranes such as elasticity and structure, and their intera...
We have carried out molecular dynamics simulations using NAMD to study the diffusivity of Na and Cl ...
Gold nanoparticles are interesting candidates for medical applications like markers in imaging metho...
Biological membranes are mainly composed of two layers of lipids, various kinds of proteins and orga...
Hydrophobic and functionalized nanoparticles of different sizes and shapes have a various biomedical...
PhDPassive permeation through biological membranes is an important mechanism for transporting molec...
The study presented in this document is the result of three years of research into the complex worl...
AbstractTo reach their biological target, drugs have to cross cell membranes, and understanding pass...
A molecular dynamics simulation of a membrane with net charge in its liquid-crystalline state was ca...
Lateral diffusion of membrane components (lipids and proteins) is an important membrane property to ...
Understanding the interaction between the nanoparticle and the bilayer cell membrane is an important...
AbstractA metric of nanoparticle toxicity is the passive permeability rate through cellular membrane...
In coarse grained molecular dynamics (CGMD) simulations, small groups of atoms are treated as single...
The number of engineered nanoparticles for applications in the biomedical arena has grown tremendous...