Various xenobiotics interact with biological membranes, and precise evaluations of the molecular interactions between them are essential to foresee the toxicity and bioavailability of existing or newly synthesized molecules. In this study, surface forces apparatus (SFA) measurement and Langmuir trough based tensiometry are performed to reveal nanomechanical interaction mechanisms between potential toxicants and biological membranes for ex vivo toxicity evaluation. As a toxicant, polyhexamethylene guanidine (PHMG) was selected because PHMG containing humidifier disinfectant and Vodka caused lots of victims in both S. Korea and Russia, respectively, due to the lack of holistic toxicity evaluation of PHMG. Here, we measured strong attraction (...
Nanotoxicity studies have shown that both carbon-based and inorganic engineered nanoparticles can be...
The bacterial membrane-targeted polyhexamethylene guanidine hydrochloride (PHGH) and its novel analo...
The growing use of nanoparticles in a variety of applications calls for detailed studies of their to...
Various xenobiotics interact with biological membranes, and precise evaluations of the molecular int...
Wide range of pollutants, toxins, antibiotics or antimicrobial compounds interact with biological me...
Bioaccumulative per- and polyfluoroalkyl substances (PFAS), a large class of highly fluorinated orga...
Langmuir monolayers at the air/water interface have been used for decades to mimic cell membranes in...
Interactions between lipids and drug molecules in biological membranes help govern proper biological...
Zwitterionic peptides with trypanocidal activity are promising lead compounds for the treatment of A...
Nanomaterials such as carbon nanotubes (CNTs) and nanoparticles have received enormous attention in ...
AbstractInvestigating the role of drugs whose pharmaceutical activity is associated with cell membra...
AbstractUnderstanding the molecular basis of interactions between antibiotics affecting bacterial ce...
Molecular interaction is a key concept in our understanding of the biological mechanisms of life. Tw...
The modern molecular understanding of biological systems relies on integration of principles, practi...
In this work the interaction of Hydroxyzine, Promethazine and Thioridazine with Langmuir films of di...
Nanotoxicity studies have shown that both carbon-based and inorganic engineered nanoparticles can be...
The bacterial membrane-targeted polyhexamethylene guanidine hydrochloride (PHGH) and its novel analo...
The growing use of nanoparticles in a variety of applications calls for detailed studies of their to...
Various xenobiotics interact with biological membranes, and precise evaluations of the molecular int...
Wide range of pollutants, toxins, antibiotics or antimicrobial compounds interact with biological me...
Bioaccumulative per- and polyfluoroalkyl substances (PFAS), a large class of highly fluorinated orga...
Langmuir monolayers at the air/water interface have been used for decades to mimic cell membranes in...
Interactions between lipids and drug molecules in biological membranes help govern proper biological...
Zwitterionic peptides with trypanocidal activity are promising lead compounds for the treatment of A...
Nanomaterials such as carbon nanotubes (CNTs) and nanoparticles have received enormous attention in ...
AbstractInvestigating the role of drugs whose pharmaceutical activity is associated with cell membra...
AbstractUnderstanding the molecular basis of interactions between antibiotics affecting bacterial ce...
Molecular interaction is a key concept in our understanding of the biological mechanisms of life. Tw...
The modern molecular understanding of biological systems relies on integration of principles, practi...
In this work the interaction of Hydroxyzine, Promethazine and Thioridazine with Langmuir films of di...
Nanotoxicity studies have shown that both carbon-based and inorganic engineered nanoparticles can be...
The bacterial membrane-targeted polyhexamethylene guanidine hydrochloride (PHGH) and its novel analo...
The growing use of nanoparticles in a variety of applications calls for detailed studies of their to...