Title of article
Effects of the local anesthetic benzocaine on the human erythrocyte membrane and molecular models Original Research Article
Author/Authors
Mario Suwalsky، نويسنده , , Carlos Schneider، نويسنده , , Fernando Villena، نويسنده , , Beryl Norris، نويسنده , , Hernan Cardenas، نويسنده , , Francisco Cuevas، نويسنده , , Carlos P. Sotomayor، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2004
Pages
11
From page
189
To page
199
Abstract
The interaction of the local anesthetic benzocaine with the human erythrocyte membrane and molecular models is described. The latter consisted of isolated unsealed human erythrocyte membranes (IUM), large unilamellar vesicles (LUV) of dimyristoylphospatidylcholine (DMPC), and phospholipid multilayers of DMPC and dimyristoylphospatidyletanolamine (DMPE), representatives of phospholipid classes located in the outer and inner monolayers of the human erythrocyte membrane, respectively. Optical and scanning electron microscopy of human erythrocytes revealed that benzocaine induced the formation of echinocytes. Experiments performed on IUM and DMPC LUV by fluorescence spectroscopy showed that benzocaine interacted with the phospholipid bilayer polar groups and hydrophobic acyl chains. X-ray diffraction analysis of DMPC confirmed these results and showed that benzocaine had no effects on DMPE. The effect on sodium transport was also studied using the isolated toad skin. Electrophysiological measurements indicated a significant decrease in the potential difference (PD) and in the short-circuit current (Isc) after the application of benzocaine, reflecting inhibition of active ion transport.
Keywords
Local anesthetic , Benzocaine , Phospholipid bilayer , Erythrocyte membrane
Journal title
Biophysical Chemistry
Serial Year
2004
Journal title
Biophysical Chemistry
Record number
1113453
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