Lipid membranes in nature adapt and reconfigure to changes in composition, temperature, humidity, and mechanics. For instance, the oscillating mechanical forces on lung cells and alveoli influence membrane synthesis and structure during breathing. However, despite advances in the understanding of lipid membrane phase behavior and mechanics of tissue, there is a critical knowledge gap regarding the response of lipid membranes to micromechanical forces. Most studies of lipid membrane mechanics use supported lipid bilayer systems missing the structural complexity of pulmonary lipids in alveolar membranes comprising multi-bilayer interconnected stacks. Here, we elucidate the collective response of the major component of pulmonary lipids to stra...
Schematics and simulations (discussed further in Fig 5) of the multiscale structure of multilayered ...
Cellular membranes exhibit a variety of controlled curvatures, with filopodia, microvilli, and mitot...
Exploring the fine structures and physicochemical properties of physiologically relevant membranes i...
Lipid membranes in nature adapt and reconfigure to changes in composition, temperature, humidity, an...
AbstractOne of the fundamental properties of biological membranes is the high lateral integrity prov...
In living cells, mechanochemical coupling represents a dynamic means by which membrane components ar...
In living cells, mechanochemical coupling represents a dynamic means by which membrane components ar...
Bilayer systems comprising lipid mixtures are the most well-studied model of biological membranes. W...
We examine here the properties of lipid bilayers coupled to deformable substrates. We show that by c...
Lipid monolayers at an air–water interface can be compressed laterally and reach high surface densit...
We examine here the properties of lipid bilayers coupled to deformable substrates. We show that by c...
Accumulating evidence indicates that membrane reshaping and fusion processes, as well as regulation ...
Lipid membranes are commonly confined to adjacent subcellular structures or to artificial substrates...
We show that gel-phase lipid membranes soften upon bending, leading to curvature localization and a ...
Langmuir monolayers at gas/liquid interfaces provide a rich framework to investigate the interplay b...
Schematics and simulations (discussed further in Fig 5) of the multiscale structure of multilayered ...
Cellular membranes exhibit a variety of controlled curvatures, with filopodia, microvilli, and mitot...
Exploring the fine structures and physicochemical properties of physiologically relevant membranes i...
Lipid membranes in nature adapt and reconfigure to changes in composition, temperature, humidity, an...
AbstractOne of the fundamental properties of biological membranes is the high lateral integrity prov...
In living cells, mechanochemical coupling represents a dynamic means by which membrane components ar...
In living cells, mechanochemical coupling represents a dynamic means by which membrane components ar...
Bilayer systems comprising lipid mixtures are the most well-studied model of biological membranes. W...
We examine here the properties of lipid bilayers coupled to deformable substrates. We show that by c...
Lipid monolayers at an air–water interface can be compressed laterally and reach high surface densit...
We examine here the properties of lipid bilayers coupled to deformable substrates. We show that by c...
Accumulating evidence indicates that membrane reshaping and fusion processes, as well as regulation ...
Lipid membranes are commonly confined to adjacent subcellular structures or to artificial substrates...
We show that gel-phase lipid membranes soften upon bending, leading to curvature localization and a ...
Langmuir monolayers at gas/liquid interfaces provide a rich framework to investigate the interplay b...
Schematics and simulations (discussed further in Fig 5) of the multiscale structure of multilayered ...
Cellular membranes exhibit a variety of controlled curvatures, with filopodia, microvilli, and mitot...
Exploring the fine structures and physicochemical properties of physiologically relevant membranes i...