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PMID: 29499278 Published · ppublish English

A Conformationally Gated Model of Methadone and Loperamide Transport by P-Glycoprotein.

Journal of pharmaceutical sciences ·Vol. 107 ·No. 7 ·2018-00-00

Gibbs ME, Wilt LA, Ledwitch KV, Roberts AG

Abstract

P-glycoprotein (Pgp) is a multidrug resistance transporter that limits the penetration of a wide range of neurotherapeutics into the brain including opioids. The diphenylpropylamine opioids methadone and loperamide are structurally similar, but loperamide has about a 4-fold higher Pgp-mediated transport rate. In addition to these differences, they showed significant differences in their effects on Pgp-mediated adenosine triphosphate (ATP) hydrolysis. The activation of Pgp-mediated ATP hydrolysis by methadone was monophasic, whereas loperamide activation of ATP hydrolysis was biphasic implying methadone has a single binding site and loperamide has 2 binding sites on Pgp. Quenching of tryptophan fluorescence with these drugs and digoxin showed competition between the opioids and that loperamide does not compete for the digoxin-binding site. Acrylamide quenching of tryptophan fluorescence to probe Pgp conformational changes revealed that methadone- and loperamide-induced conformational changes were distinct. These results were used to develop a model for Pgp-mediated transport of methadone and loperamide where opioid binding and conformational changes are used to explain the differences in the opioid transport rates between methadone and loperamide.

Keywords
ATP-binding cassette transporters P-glycoprotein fluorescence nuclear magnetic resonance (NMR) opioids
Article Info
Journal
Journal of pharmaceutical sciences
Abbr.
J Pharm Sci
ISSN
1520-6017
Corresponding email
Published
2018-00-00
Language
English
Country/Region
United States
NLM ID
2985195R
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