Results 171 to 180 of about 20,974 (222)
Instant Membrane Stabilization by Damage-Triggered Actin Polymerization in Giant Unilamellar Vesicles. [PDF]
Nguyen HT, Lee SH, Kim CH, Shin K.
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Rsp5/NEDD4 and ESCRT regulate TDP-43 toxicity and turnover via an endolysosomal clearance mechanism. [PDF]
Byrd A +6 more
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Features and mechanism of localized enzyme-assisted self-assembly of peptides from unilamellar vesicles. [PDF]
Ontani A +7 more
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QuantGUV: Quantifying Encapsulation Efficiency of Small Molecules in Giant Unilamellar Vesicles. [PDF]
Marshall Z +6 more
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Current Opinion in Colloid and Interface Science, 2000
We have discussed the specific properties of giant vesicles and their use as model systems for fluid interfaces and biomembranes. Recent advances in giant vesicle research include systematic measurements of visco-elastic parameters as a function of membrane composition, experiments with water-soluble amphiphiles and active membranes, as well as the ...
Hans-Günther Döbereiner
exaly +3 more sources
We have discussed the specific properties of giant vesicles and their use as model systems for fluid interfaces and biomembranes. Recent advances in giant vesicle research include systematic measurements of visco-elastic parameters as a function of membrane composition, experiments with water-soluble amphiphiles and active membranes, as well as the ...
Hans-Günther Döbereiner
exaly +3 more sources
Giant Vesicles: Preparations and Applications
ChemBioChem, 2010AbstractThere is considerable interest in preparing cell‐sized giant unilamellar vesicles from natural or nonnatural amphiphiles because a giant vesicle membrane resembles the self‐closed lipid matrix of the plasma membrane of all biological cells. Currently, giant vesicles are applied to investigate certain aspects of biomembranes.
Peter Walde +2 more
exaly +5 more sources
Integrative Biology, 2012
Tremendous progress has been made in recent years in understanding the working of the living cell, including its micro-anatomy, signalling networks, and regulation of genes. However, an understanding of cellular phenomena using fundamental laws starting from first principles is still very far away.
Fenz, S.F., Sengupta, K.
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Tremendous progress has been made in recent years in understanding the working of the living cell, including its micro-anatomy, signalling networks, and regulation of genes. However, an understanding of cellular phenomena using fundamental laws starting from first principles is still very far away.
Fenz, S.F., Sengupta, K.
openaire +3 more sources
Giant Polymer Vesicles with a Latticelike Membrane
ACS Macro Letters, 2021Hierarchical self-assembly offers great possibilities to mimic biological systems with finely arranged complex structures. Herein, we demonstrate the preparation and formation mechanism of an unusual giant polymer vesicle with a latticelike membrane (GVLM).
Xinyue Zhang +7 more
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Giant Vesicles with Membranous Microcompartments
Langmuir, 2011Incubation of a cell-sized lipid membrane vesicle (giant vesicle, GV) in a diluted aqueous solution of neutral phosphate buffer salts or glucose transformed the GV to an oligovesicular vesicle (OVV) that encapsulates one or more smaller GVs. During the incubation, the membrane of flaccid vesicle invaginated and closed to form the inner vesicle of an ...
Yukihisa, Okumura +3 more
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Aqueous Phase Separation in Giant Vesicles
Journal of the American Chemical Society, 2002We report the synthesis and initial characterization of approximately 10 mum diameter lipid vesicles that contain two distinct aqueous phases. The aqueous two-phase system is a dextran/poly(ethylene glycol) solution that exhibits temperature-dependent phase behavior. Vesicles were prepared above the phase transition temperature of the polymer solution.
Helfrich, M. R. +4 more
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