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1.
Am J Physiol Gastrointest Liver Physiol ; 298(5): G722-31, 2010 May.
Artigo em Inglês | MEDLINE | ID: mdl-20203063

RESUMO

The injurious effect of nonsteroidal anti-inflammatory drugs (NSAIDs) in the small intestine was not appreciated until the widespread use of capsule endoscopy. Animal studies found that NSAID-induced small intestinal injury depends on the ability of these drugs to be secreted into the bile. Because the individual toxicity of amphiphilic bile acids and NSAIDs directly correlates with their interactions with phospholipid membranes, we propose that the presence of both NSAIDs and bile acids alters their individual physicochemical properties and enhances the disruptive effect on cell membranes and overall cytotoxicity. We utilized in vitro gastric AGS and intestinal IEC-6 cells and found that combinations of bile acid, deoxycholic acid (DC), taurodeoxycholic acid, glycodeoxycholic acid, and the NSAID indomethacin (Indo) significantly increased cell plasma membrane permeability and became more cytotoxic than these agents alone. We confirmed this finding by measuring liposome permeability and intramembrane packing in synthetic model membranes exposed to DC, Indo, or combinations of both agents. By measuring physicochemical parameters, such as fluorescence resonance energy transfer and membrane surface charge, we found that Indo associated with phosphatidylcholine and promoted the molecular aggregation of DC and potential formation of larger and isolated bile acid complexes within either biomembranes or bile acid-lipid mixed micelles, which leads to membrane disruption. In this study, we demonstrated increased cytotoxicity of combinations of bile acid and NSAID and provided a molecular mechanism for the observed toxicity. This mechanism potentially contributes to the NSAID-induced injury in the small bowel.


Assuntos
Anti-Inflamatórios não Esteroides/efeitos adversos , Ácidos e Sais Biliares/metabolismo , Indometacina/efeitos adversos , Fosfolipídeos/metabolismo , Animais , Linhagem Celular Tumoral , Permeabilidade da Membrana Celular/efeitos dos fármacos , Ácido Desoxicólico/farmacologia , Interações Medicamentosas , Transferência Ressonante de Energia de Fluorescência , Ácido Glicodesoxicólico/farmacologia , Humanos , Intestino Delgado/efeitos dos fármacos , L-Lactato Desidrogenase/metabolismo , Lipossomos/metabolismo , Potenciais da Membrana/efeitos dos fármacos , Permeabilidade , Fosfolipídeos/farmacologia , Ratos , Ácido Taurodesoxicólico/farmacologia
2.
Biochim Biophys Acta ; 1788(2): 507-13, 2009 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-19150330

RESUMO

In cholestatic liver diseases, the ability of hydrophobic bile acids to damage membranes of hepatocytes/ductal cells contributes to their cytotoxicity. However, ursodeoxycholic acid (UDC), a hydrophilic bile acid, is used to treat cholestasis because it protects membranes. It has been well established that bile acids associate with and solubilize free cholesterol (CHOL) contained within the lumen of the gallbladder because of their structural similarities. However, there is a lack of understanding of how membrane CHOL, which is a well-established membrane stabilizing agent, is involved in cytotoxicity of hydrophobic bile acids and the cytoprotective effect of UDC. We utilized phospholipid liposomes to examine the ability of membrane CHOL to influence toxicity of individual bile acids, such as UDC and the highly toxic sodium deoxycholate (SDC), as well as the cytoprotective mechanism of UDC against SDC-induced cytotoxicity by measuring membrane permeation and intramembrane dipole potential. The kinetics of bile acid solubilization of phosphatidylcholine liposomes containing various levels of CHOL was also characterized. It was found that the presence of CHOL in membranes significantly reduced the ability of bile acids to damage synthetic membranes. UDC effectively prevented damaging effects of SDC on synthetic membranes only in the presence of membrane CHOL, while UDC enhances the damaging effects of SDC in the absence of CHOL. This further demonstrates that the cytoprotective effects of UDC depend upon the level of CHOL in the lipid membrane. Thus, changes in cell membrane composition, such as CHOL content, potentially influence the efficacy of UDC as the primary drug used to treat cholestasis.


Assuntos
Ácidos e Sais Biliares/química , Ácidos e Sais Biliares/toxicidade , Colesterol/química , Citoproteção/efeitos dos fármacos , Ácido Ursodesoxicólico/farmacologia , Animais , Lipossomos/química , Nefelometria e Turbidimetria , Permeabilidade , Ratos
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