Dioxins are a highly toxic class of chlorinated aromatic chemicals. They have been extensively studied, but several molecular-level details of their action are still missing. Here we present molecular dynamics simulations of their absorption and diffusion through cell membranes. We show that, due to their hydrophobic character, dioxins can quickly penetrate into a lipid membrane, both as single molecules and as aggregates. We find clear evidence for their ability to accumulate in cell membranes. Our free energy calculations indicate that subsequent transport into the cell is unlikely to be a simple diffusive process
Cellular membranes are incredibly complex structures composed of diverse biomolecules including lipi...
Dimethyl sulfoxide (DMSO) has been known to enhance cell membrane permeability of drugs or DNA. Mole...
The transport of small molecules across a phospholipid membrane is studied by molecular dynamics sim...
Dioxins are a highly toxic class of chlorinated aromatic chemicals. They have been extensively studi...
Dioxins are a highly toxic class of chlorinated aromatic chemicals. They have been extensively studi...
Translocation of small molecules through a cell membrane barrier is a fundamental step to explain th...
The permeation of dioxin-like pollutants, namely, chlorinated dibenzodioxins and dibenzofurans, thro...
1,4-dioxane is a cytotoxic B2 type human carcinogen, a serious water pollutant produced solely by i...
AbstractTo reach their biological target, drugs have to cross cell membranes, and understanding pass...
Molecular transport mechanisms of poorly soluble hydrophobic drug compounds to lipid membranes were ...
To obtain insight in the process of water permeation through a lipid membrane, we performed molecula...
Dimethyl sulfoxide (DMSO) has been known to enhance cell membrane permeability of drugs or DNA. Mole...
Dimethyl sulfoxide (DMSO) has been known to enhance cell membrane permeability of drugs or DNA. Mole...
<div><p>Dimethyl sulfoxide (DMSO) has been known to enhance cell membrane permeability of drugs or D...
It was known from the middle of the last century that a cell-membrane is a lipid bilayer. Since that...
Cellular membranes are incredibly complex structures composed of diverse biomolecules including lipi...
Dimethyl sulfoxide (DMSO) has been known to enhance cell membrane permeability of drugs or DNA. Mole...
The transport of small molecules across a phospholipid membrane is studied by molecular dynamics sim...
Dioxins are a highly toxic class of chlorinated aromatic chemicals. They have been extensively studi...
Dioxins are a highly toxic class of chlorinated aromatic chemicals. They have been extensively studi...
Translocation of small molecules through a cell membrane barrier is a fundamental step to explain th...
The permeation of dioxin-like pollutants, namely, chlorinated dibenzodioxins and dibenzofurans, thro...
1,4-dioxane is a cytotoxic B2 type human carcinogen, a serious water pollutant produced solely by i...
AbstractTo reach their biological target, drugs have to cross cell membranes, and understanding pass...
Molecular transport mechanisms of poorly soluble hydrophobic drug compounds to lipid membranes were ...
To obtain insight in the process of water permeation through a lipid membrane, we performed molecula...
Dimethyl sulfoxide (DMSO) has been known to enhance cell membrane permeability of drugs or DNA. Mole...
Dimethyl sulfoxide (DMSO) has been known to enhance cell membrane permeability of drugs or DNA. Mole...
<div><p>Dimethyl sulfoxide (DMSO) has been known to enhance cell membrane permeability of drugs or D...
It was known from the middle of the last century that a cell-membrane is a lipid bilayer. Since that...
Cellular membranes are incredibly complex structures composed of diverse biomolecules including lipi...
Dimethyl sulfoxide (DMSO) has been known to enhance cell membrane permeability of drugs or DNA. Mole...
The transport of small molecules across a phospholipid membrane is studied by molecular dynamics sim...