Decrease of elastic moduli of DOPC bilayers induced by a macrolide antibiotic, azithromycin

被引:56
作者
Fa, N.
Lins, L.
Courtoy, P. J.
Dufrene, Y.
Van Der Smissen, P.
Brasseur, R.
Tyteca, D.
Mingeot-Leclercq, M.-P.
机构
[1] Catholic Univ Louvain, Unite Pharmacol Cellulaire & Mol, B-1200 Brussels, Belgium
[2] Fac Univ Sci Agron Gembloux, Ctr Biophys Mol Numer, B-5030 Gembloux, Belgium
[3] Catholic Univ Louvain, Unite Biol Cellulaire, B-1200 Brussels, Belgium
[4] Catholic Univ Louvain, Unite Chim Interfaces, B-1348 Louvain, Belgium
来源
BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES | 2007年 / 1768卷 / 07期
关键词
micropipette; giant vesicle; bending modulus; area compressibility modulus; azithromycin; DOPC; LIPID-BILAYERS; MEMBRANE; CURVATURE; FORCE; PEPTIDES; RIGIDITY; VESICLES; FLUCTUATIONS; CHOLESTEROL; STABILITY;
D O I
10.1016/j.bbamem.2007.04.013
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The elastic properties of membrane bilayers are key parameters that control its deformation and can be affected by pharmacological agents. Our previous atomic force microscopy studies revealed that the macrolide antibiotic, azithromycin, leads to erosion of DPPC domains in a fluid DOPC matrix [A. Berquand, M. P. Mingeot-Leclercq, Y. F. Dufrene, Real-time imaging of drug-membrane interactions by atomic force microscopy, Biochim. Biophys. Acta 1664 (2004) 198-205.]. Since this observation could be due to an effect on DOPC cohesion, we investigated the effect of azithromycin on elastic properties of DOPC giant unilamellar vesicles (GUVs). Microcinematographic and morphometric analyses revealed that azithromycin addition enhanced lipid membranes fluctuations, leading to eventual disruption of the largest GUVs. These effects were related to change of elastic moduli of DOPC, quantified by the micropipette aspiration technique. Azithromycin decreased both the bending modulus (k(c), from 23.1 +/- 3.5 to 10.6 +/- 4.5 k(B)T) and the apparent area compressibility modulus (K-app, from 176 +/- 35 to 113 +/- 25 mN/m). These data suggested that insertion of azithromycin into the DOPC bilayer reduced the requirement level of both the energy for thermal fluctuations and the stress to stretch the bilayer. Computer modeling of azithromycin interaction with DOPC bilayer, based on minimal energy, independently predicted that azithromycin (i) inserts at the interface of phospholipid bilayers, (ii) decreases the energy of interaction between DOPC molecules, and (iii) increases the mean surface occupied by each phospholipid molecule. We conclude that azithromycin inserts into the DOPC lipid bilayer, so as to decrease its cohesion and to facilitate the merging of DPPC into the DOPC fluid matrix, as observed by atomic force microscopy. These investigations, based on three complementary approaches, provide the first biophysical evidence for the ability of an amphiphilic antibiotic to alter lipid elastic moduli. This may be an important determinant for drug: lipid interactions and cellular pharmacology. (c) 2007 Elsevier B.V. All rights reserved.
引用
收藏
页码:1830 / 1838
页数:9
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