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Biophysical Journal 73: 258-266 (1997)
© 1997 the Biophysical Society

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Effect of polyethyleneglycol-phospholipids on aggregate structure in preparations of small unilamellar liposomes.

K Edwards, M Johnsson, G Karlsson and M Silvander

Department of Physical Chemistry, Uppsala University, Sweden. edwards@fki.un.se

ABSTRACT

Phospholipids with covalently attached poly(ethylene glycol) (PEG lipids) are commonly used for the preparation of long circulating liposomes. Although it is well known that lipid/PEG-lipid mixed micelles may form above a certain critical concentration of PEG-lipid, little is known about the effects of PEG-lipids on liposome structure and leakage at submicellar concentrations. In this study we have used cryogenic transmission electron microscopy to investigate the effect of PEG(2000)-PE on aggregate structure in preparations of liposomes with different membrane compositions. The results reveal a number of important aggregate structures not documented before. The micrographs show that enclosure of PEG-PE induces the formation of open bilayer discs at concentrations well below those where mixed micelles begin to form. The maximum concentration of PEG-lipid that may be incorporated without alteration of the liposome structure depends on the phospholipid chain length, whereas phospholipid saturation or the presence of cholesterol has little or no effect. The presence of cholesterol does, however, affect the shape of the mixed micelles formed at high concentrations of PEG-lipid. Threadlike micelles form in the absence of cholesterol but adapt a globular shape when cholesterol is present.




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M. Johnsson and K. Edwards
Liposomes, Disks, and Spherical Micelles: Aggregate Structure in Mixtures of Gel Phase Phosphatidylcholines and Poly(Ethylene Glycol)-Phospholipids
Biophys. J., December 1, 2003; 85(6): 3839 - 3847.
[Abstract] [Full Text] [PDF]




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Copyright © 1997 by the Biophysical Society.