Effect of nonsteroidal anti-inflammatory drugs on the cellular membrane fluidity

被引:30
作者
Sousa, Celia
Nunes, Claudia
Lucio, Marlene
Ferreira, Helena
Lima, Jose L. F. C.
Tavares, Joana [2 ,3 ]
Cordeiro-Da-Silva, Anabela [2 ,3 ]
Reis, Salette [1 ]
机构
[1] Univ Porto, Fac Farm, Serv Quim Fis, REQUIMTE,Dept Quim Fis, P-4099030 Oporto, Portugal
[2] Univ Porto, Fac Farm, Dept Bioquim, P-4099030 Oporto, Portugal
[3] Univ Porto, Fac Farm, IBMC, P-4099030 Oporto, Portugal
关键词
fluorescence spectroscopy; in vitro models; liposomes; drug interactions; NSAID;
D O I
10.1002/jps.21218
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
In this work, fluorescence measurements were performed using the fluorescent probe 1,6-diphenyl-1,3,5-hexatriene (DPH) to evaluate the effects of the interaction of nonsteroidal anti-inflammatory drugs-NSAIDs (meloxicam, lornoxicam, and nimesulide) with several membrane systems (liposomes with and without cholesterol, mouse splenocytes, mouse macrophages cell line-J774, human leukemia monocyte cell line-THP-1, and human granulocytes and mononuclear cells). DPH fluorescence quenching studies revealed that the NSAIDs studied were able to efficiently quench the probe located in membrane hydrocarbon region. Fluorescence anisotropy measurements were also made to investigate the effects on membrane fluidity resulting from the interaction between the drugs and membrane systems. All the anti-inflammatory drugs studied show an increase in the membrane fluidity in a concentration dependent manner. Results obtained provide an insight into NSAIDs capacity to be inserted in lipid bilayers and alter the lipid dynamics. The induced changes in lipid dynamics may modulate the activity of inflammatory enzymes or may be related with deleterious topical action of NSAIDs on gastric phospholipid fluidity. (C) 2007 Wiley-Liss, Inc. and the American Pharmacists Association.
引用
收藏
页码:3195 / 3206
页数:12
相关论文
共 51 条
[41]   Influence of DPH on the structure and dynamics of a DPPC bilayer [J].
Repáková, J ;
Holopainen, JM ;
Morrow, MR ;
McDonald, MC ;
Capková, P ;
Vattulainen, I .
BIOPHYSICAL JOURNAL, 2005, 88 (05) :3398-3410
[42]   Distribution, orientation, and dynamics of DPH probes in DPPC bilayer [J].
Repáková, J ;
Capková, P ;
Holopainen, JM ;
Vattulainen, I .
JOURNAL OF PHYSICAL CHEMISTRY B, 2004, 108 (35) :13438-13448
[43]   Interaction of the major epitope region of HIV protein gp41 with membrane model systems. A fluorescence spectroscopy study [J].
Santos, NC ;
Prieto, M ;
Castanho, MARB .
BIOCHEMISTRY, 1998, 37 (24) :8674-8682
[44]   Alterations in the lipid profile and membrane dynamics of rat intestinal brush border membrane induced by different classes of nonsteroidal anti-inflammatory drugs [J].
Sanyal, S. N. ;
Sood, Neeru ;
Kaushal, Naveen .
TOXICOLOGY MECHANISMS AND METHODS, 2007, 17 (01) :49-56
[45]   Experimental studies on the evolution of antimony-resistant phenotype during the in vitro life cycle of Leishmania infantum:: implications for the spread of chemoresistance in endemic areas [J].
Sereno, D ;
Guilvard, E ;
Maquaire, S ;
Cavaleyra, M ;
Holzmuller, P ;
Ouaissi, A ;
Lemesre, JL .
ACTA TROPICA, 2001, 80 (03) :195-205
[46]   FLUIDITY PARAMETERS OF LIPID REGIONS DETERMINED BY FLUORESCENCE POLARIZATION [J].
SHINITZKY, M ;
BARENHOLZ, Y .
BIOCHIMICA ET BIOPHYSICA ACTA, 1978, 515 (04) :367-394
[47]   LIPID CHAIN ORDER AND DYNAMICS AT DIFFERENT BILAYER DEPTHS IN LIPOSOMES OF SEVERAL PHOSPHATIDYLCHOLINES STUDIED BY DIFFERENTIAL POLARIZED PHASE FLUORESCENCE [J].
TRICERRI, MA ;
GARDA, HA ;
BRENNER, RR .
CHEMISTRY AND PHYSICS OF LIPIDS, 1994, 71 (01) :61-72
[48]   NEW INSIGHTS INTO THE MODE OF ACTION OF ANTIINFLAMMATORY DRUGS [J].
VANE, JR ;
BOTTING, RM .
INFLAMMATION RESEARCH, 1995, 44 (01) :1-10
[49]  
VANE JR, 1996, IMPROVED NONSTEROIDA
[50]   ORIENTATIONAL DISTRIBUTION OF 1,6-DIPHENYL-1,3,5-HEXATRIENE IN PHOSPHOLIPID-VESICLES AS DETERMINED BY GLOBAL ANALYSIS OF FREQUENCY-DOMAIN FLUOROMETRY DATA [J].
WANG, S ;
BEECHEM, JM ;
GRATTON, E ;
GLASER, M .
BIOCHEMISTRY, 1991, 30 (22) :5565-5572