Lipid membrane nanotubes (NTs) are a widespread template for in vitro studies of cellular processes happening at high membrane curvature. Traditionally NTs are manufactured one by one, using sophisticated membrane micromanipulations, while simplified methods for controlled batch production of NTs are in growing demand. Here we propose a lab-on-a-chip (LOC) approach to the simultaneous formation of multiple NTs with length and radius controlled by the chip design. The NTs form upon rolling silica microbeads covered by lipid lamellas over the pillars of a polymer micropillar array. The array's design and surface chemistry set the geometry of the resulting free-standing NTs. The integration of the array inside a microfluidic chamber further en...
Microfluidic devices, so-called BioMEMs, or Lab on a chip, have been widely used to improve the scie...
Membrane proteins embedded in bilayer lipids of cell membrane have unique functions including inter-...
Membrane proteins are essential to cellular functions, including cell-cell communication and signal ...
Lipid membrane nanotubes (NTs) are a widespread template for in vitro studies of cellular processes ...
Lipid membrane nanotubes (NTs) are a widespread template for in vitro studies of cellular processes ...
Networks of nanotubes and vesicles offer a platform for construction of nanofluidic devicesoperating...
We present a micropipet-assisted writing technique for formation of two-dimensional networks of phos...
There is currently great interest in the development of lipid enclosed systems with complex geometri...
We describe a novel micropipet-assisted technique for the construction of complex, surface-immobiliz...
We describe micromanipulation and microinjection procedures for the fabrication of soft-matter netwo...
Membrane proteins embedded in bi-layer lipids of cell membrane have unique functions including inter...
International audienceThe goal of this poster presentation is to give an overview of nanofabrication...
Methods for construction of geometrically complex, fully connected surface-immobilized microscopic n...
We demonstrate here that nanotube-vesicle networks can be constructed directly from plasma membranes...
International audienceBeing the base element of cell membranes, lipid bilayers are an essential ingr...
Microfluidic devices, so-called BioMEMs, or Lab on a chip, have been widely used to improve the scie...
Membrane proteins embedded in bilayer lipids of cell membrane have unique functions including inter-...
Membrane proteins are essential to cellular functions, including cell-cell communication and signal ...
Lipid membrane nanotubes (NTs) are a widespread template for in vitro studies of cellular processes ...
Lipid membrane nanotubes (NTs) are a widespread template for in vitro studies of cellular processes ...
Networks of nanotubes and vesicles offer a platform for construction of nanofluidic devicesoperating...
We present a micropipet-assisted writing technique for formation of two-dimensional networks of phos...
There is currently great interest in the development of lipid enclosed systems with complex geometri...
We describe a novel micropipet-assisted technique for the construction of complex, surface-immobiliz...
We describe micromanipulation and microinjection procedures for the fabrication of soft-matter netwo...
Membrane proteins embedded in bi-layer lipids of cell membrane have unique functions including inter...
International audienceThe goal of this poster presentation is to give an overview of nanofabrication...
Methods for construction of geometrically complex, fully connected surface-immobilized microscopic n...
We demonstrate here that nanotube-vesicle networks can be constructed directly from plasma membranes...
International audienceBeing the base element of cell membranes, lipid bilayers are an essential ingr...
Microfluidic devices, so-called BioMEMs, or Lab on a chip, have been widely used to improve the scie...
Membrane proteins embedded in bilayer lipids of cell membrane have unique functions including inter-...
Membrane proteins are essential to cellular functions, including cell-cell communication and signal ...