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Article Dans Une Revue Journal of Physical Chemistry B Année : 2010

Behavior of 2,6-bis(decyloxy)naphthalene inside lipid bilayer.

Marta Kumorek
  • Fonction : Auteur
Michał Stepniewski
  • Fonction : Auteur
Tomasz Róg
  • Fonction : Auteur
Bartłomiej Kozik
  • Fonction : Auteur

Résumé

Interactions between small organic molecules and lipid or cell membranes are important because of their role in the distribution of biologically active substances inside the membrane and their permeation through the cell membranes. In the current paper, we have explored the effect of the attachment of long hydrocarbon tails on the behavior of small organic molecule inside the lipid membrane. Naphthalene with two decyloxy groups attached at the opposite sites of the ring (2,6-bis(decyloxy)naphthalene, 3) was synthesized and incorporated into phosphatidylcholine (PC) vesicles. Fluorescence methods as well as molecular dynamic (MD) simulations were used to estimate the position, orientation, and migration of compound 3 in PC bilayer. It was found that the naphthalene ring of compound 3 resides in the upper acyl chain region of the bilayer and the hydrocarbon tails are directed to the center of the bilayer. As was shown with cryotransmission electron microscopy (cryo-TEM), such lipidlike conformation enables compound 3 to be incorporated into liposomes at a very high content without their disintegration. Moreover, compound 3 can migrate from one leaflet to other. The mechanism of this process is, however, different from that characteristic of the flip-flop event of lipid molecules in the membrane. Finally, the possible application of compound 3 as a rotational molecular probe for monitoring fluidity of liposomal membrane in the acyl side chain region was checked by studies of the effect of cholesterol on the fluorescence anisotropy of 3.
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Dates et versions

hal-00726347 , version 1 (29-08-2012)

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Citer

Mariusz Kepczynski, Marta Kumorek, Michał Stepniewski, Tomasz Róg, Bartłomiej Kozik, et al.. Behavior of 2,6-bis(decyloxy)naphthalene inside lipid bilayer.. Journal of Physical Chemistry B, 2010, 114 (47), pp.15483-94. ⟨10.1021/jp103753f⟩. ⟨hal-00726347⟩

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