Showing 1 - 7 results of 7 for search 'Levental, I', query time: 0.03s
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1
The mystery of membrane organization: composition, regulation and roles of lipid rafts. by Sezgin, E, Levental, I, Mayor, S, Eggeling, C
Published 2017Journal article -
2
Creating supported plasma membrane bilayers using acoustic pressure by Sezgin, E, Carugo, D, Levental, I, Stride, E, Eggeling, C
Published 2020Journal article -
3
Phase partitioning of GM1 and its bodipy-labeled analog determine their different binding to cholera toxin by Rissanen, S, Grzybek, M, Orłowski, A, Róg, T, Cramariuc, O, Levental, I, Eggeling, C, Sezgin, E, Vattulainen, I
Published 2017Journal article -
4
Regulation of lipid saturation without sensing membrane fluidity by Ballweg, S, Sezgin, E, Doktorova, M, Covino, R, Reinhard, J, Wunnicke, D, Hänelt, I, Levental, I, Hummer, G, Ernst, R
Published 2020Journal article -
5
Partitioning, diffusion, and ligand binding of raft lipid analogs in model and cellular plasma membranes. by Sezgin, E, Levental, I, Grzybek, M, Schwarzmann, G, Mueller, V, Honigmann, A, Belov, V, Eggeling, C, Coskun, U, Simons, K, Schwille, P
Published 2012Journal article -
6
Maturation of monocyte-derived DCs leads to increased cellular stiffness, higher membrane fluidity, and changed lipid composition by Luhr, JJ, Alex, N, Amon, L, Kraeter, M, Kubankova, M, Sezgin, E, Lehmann, CHK, Heger, L, Heidkamp, GF, Smith, AS, Zaburdaev, V, Boeckmann, RA, Levental, I, Dustin, ML, Eggeling, C, Guck, J, Dudziak, D
Published 2021Conference item -
7
Maturation of monocyte-derived DCS leads to increased cellular stiffness, higher membrane fluidity, and changed lipid composition by Lühr, JJ, Alex, N, Amon, L, Kräter, M, Kubánková, M, Sezgin, E, Lehmann, CHK, Heger, L, Heidkamp, GF, Smith, A-S, Zaburdaev, V, Böckmann, RA, Levental, I, Dustin, ML, Eggeling, C, Guck, J, Dudziak, D
Published 2020Journal article