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Общее количество найденных документов : 34
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1.
On the role of hydrophobic interactions in membrane fusion effects of poly (ethylene glycol) // Stud. biophys., 1988. Vol. 127, N 1-3.-С.105-112

2.
Hoekstra Entry mechanisms of enveloped viruses. Implications for fusion of intracellular membranes // Biosci. Repts., 1989. Vol. 9, N 3.-С.273-305

3.
Hoekstra Lectin-carbohydrate interactions in model and biological membrane systems // Subcell. Biochem.. -New York, London, 1989, Vol. 14.-С.229-278

4.
Fusion of enveloped viruss with cells and liposomes: Activity and inactivation // Cell Biophys., 1990. Vol. 17, N 2.-С.181-201

5.
Hoekstra Fluorescence assays to monitor membrane fusion: potential application in biliary lipid secretion and vesicle interactions // Hepatology, 1990. Vol. 12, N 3 Suppl..-С.61-66

6.
A non-exchangeable fluorescent phospholipid analog as a membrane traffic marker of the endocytic pathway // Eur. J. Cell. Biol., 1990. Vol. 53, N 1.-С.173-184

7.
Fluorescent, short-chain C[6]-NBD-sphingomyelin, but not C[6]-NBO-glucosylceramide, is subject to extensive degradation in the plasma membrane: Implications for signal transduction related to cell differentiation // Biochem. J., 1995. Vol. 309, N 3.-С.905-912

8.
Zegers Mirjam M. Use of photoactivatable sphingolipid analogues to monitor lipid transport in mammalian cells // Biochem. J., 1997. Vol. 328, N 2.-С.489-498

9.
Zegers Mirjam M.P. Sphingolipid transport to the apical plasma membrane domain in human hepatoma cells is controlled by PKC and PKA activity: A correlation with cell polarity in HepG2 cells // J. Cell Biol., 1997. Vol. 138, N 2.-С.307-321

10.
Zegers Mirjam M.P. Sphingolipid transport to the apical plasma membrane domain in human hepatoma cells is controlled by PKC and PKA activity: A correlation with cell polarity in HepG2 cells // J. Cell Biol., 1997. Vol. 138, N 2.-С.307-321

11.
Protein involvement in the fusion between the equatorial segment of acrosome-reacted human spermatozoa and liposomes // Biochem. J., 1997. Vol. 325, N 1.-С.191-198

12.
Differential and cell development-dependent localization of myelin mRNAs in oligodendrocytes // J. Neurosci. Res., 1997. Vol. 47, N 5.-С.479-488

13.
Segregation of glucosylceramide and sphingomyelin occurs in the apical to basolateral transcytotic route in HepG2 cells // J. Cell Biol., 1997. Vol. 137, N 2.-С.347-357

14.
Differential and cell development-dependent localization of myelin mRNAs in oligodendrocytes // J. Neurosci. Res., 1997. Vol. 47, N 5.-С.479-488

15.
Regulation of oligodendrocyte differentiation: Protein kinase C activation prevents differentiation of O2A progenitor cells toward oligodendrocytes // Glia, 1998. Vol. 22, N 2.-С.121-129

16.
Ceramide transport from endoplasmic reticulum to Golgi apparatus is not vesicle-mediated // Biochem. J., 1998. Vol. 333, N 3.-С.779-786

17.
PDMP blocks brefeldin A-induced retrograde membrane transport from golgi to ER: Evidence for involvement of calcium homeostasis and dissociation from sphingolipid metabolism // J. Cell Biol., 1998. Vol. 142, N 1.-С.25-38

18.
Transport of proteolipid protein to the plasma membrane does not depend on glycosphingolipid contransport in oligodendrocyte cultures // J. Neurosci. Res., 1998. Vol. 51, N 3.-С.371-381

19.
Synthetic amphiphiles as non-viral vectors in gene therapy. Development and mechanisms // Cell. and Mol. Biol. Lett., 1999. Vol. 4, N 2.-С.226-227

20.
Synthetic amphiphiles as non-viral vectors in gene therapy. Development and mechanisms // Cell. and Mol. Biol. Lett., 1999. Vol. 4, N 2.-С.226-227

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