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Bioscience Reports
|
June 28, 2001
On the mechanism of intracellular membrane fusion: in search of the genuine fusion factor
E I Pécheur, O Maier, D Hoekstra
Biochemistry
|
January 1, 1985
Modulation of membrane fusion by membrane fluidity: temperature dependence of divalent cation induced fusion of phosphatidylserine vesicles
J Wilschut, N Düzgüneş, D Hoekstra, et al.
Hepatology (Baltimore, Md.)
|
April 16, 1998
Functional involvement of proteins, interacting with sphingolipids, in sphingolipid transport to the canalicular membrane in the human hepatocytic cell line, HepG2?
M M Zegers, K J Zaal, D Hoekstra
Biochemistry
|
June 18, 1985
Kinetics of pH-dependent fusion between influenza virus and liposomes
T Stegmann, D Hoekstra, G Scherphof, et al.
The Journal of Biological Chemistry
|
August 25, 1986
Fusion activity of influenza virus. A comparison between biological and artificial target membrane vesicles
T Stegmann, D Hoekstra, G Scherphof, et al.
FEBS Letters
|
July 23, 1984
Lectins facilitate calcium-induced fusion of phospholipid vesicles containing glycosphingolipids
N Düzgünes, D Hoekstra, K Hong, et al.
Biochemistry
|
August 13, 1985
Kinetics of Ca2+-induced fusion of cardiolipin-phosphatidylcholine vesicles: correlation between vesicle aggregation, bilayer destabilization, and fusion
J Wilschut, S Nir, J Scholma, et al.
Brain, Behavior and Evolution
|
January 1, 1987
Anatomy and differential growth of the lateral line system of the mottled sculpin, Cottus bairdi (Scorpaeniformes: Cottidae)
J Janssen, S Coombs, D Hoekstra, et al.
Biochemistry
|
December 16, 1986
Parameters affecting fusion between Sendai virus and liposomes. Role of viral proteins, liposome composition, and pH
K Klappe, J Wilschut, S Nir, et al.
The Biochemical Journal
|
January 24, 1998
Use of photoactivatable sphingolipid analogues to monitor lipid transport in mammalian cells
M M Zegers, J W Kok, D Hoekstra
Page
of 13
Search research articles
Search
Showing results (41-50 of 126) with videos related to
Sort By:
Page
of 13
Bioscience Reports
|
June 28, 2001
On the mechanism of intracellular membrane fusion: in search of the genuine fusion factor
E I Pécheur, O Maier, D Hoekstra
Biochemistry
|
January 1, 1985
Modulation of membrane fusion by membrane fluidity: temperature dependence of divalent cation induced fusion of phosphatidylserine vesicles
J Wilschut, N Düzgüneş, D Hoekstra, et al.
Hepatology (Baltimore, Md.)
|
April 16, 1998
Functional involvement of proteins, interacting with sphingolipids, in sphingolipid transport to the canalicular membrane in the human hepatocytic cell line, HepG2?
M M Zegers, K J Zaal, D Hoekstra
Biochemistry
|
June 18, 1985
Kinetics of pH-dependent fusion between influenza virus and liposomes
T Stegmann, D Hoekstra, G Scherphof, et al.
The Journal of Biological Chemistry
|
August 25, 1986
Fusion activity of influenza virus. A comparison between biological and artificial target membrane vesicles
T Stegmann, D Hoekstra, G Scherphof, et al.
FEBS Letters
|
July 23, 1984
Lectins facilitate calcium-induced fusion of phospholipid vesicles containing glycosphingolipids
N Düzgünes, D Hoekstra, K Hong, et al.
Biochemistry
|
August 13, 1985
Kinetics of Ca2+-induced fusion of cardiolipin-phosphatidylcholine vesicles: correlation between vesicle aggregation, bilayer destabilization, and fusion
J Wilschut, S Nir, J Scholma, et al.
Brain, Behavior and Evolution
|
January 1, 1987
Anatomy and differential growth of the lateral line system of the mottled sculpin, Cottus bairdi (Scorpaeniformes: Cottidae)
J Janssen, S Coombs, D Hoekstra, et al.
Biochemistry
|
December 16, 1986
Parameters affecting fusion between Sendai virus and liposomes. Role of viral proteins, liposome composition, and pH
K Klappe, J Wilschut, S Nir, et al.
The Biochemical Journal
|
January 24, 1998
Use of photoactivatable sphingolipid analogues to monitor lipid transport in mammalian cells
M M Zegers, J W Kok, D Hoekstra
Page
of 13