Kinetics of lipid bilayer permeation of a series of ionisable drugs and their correlation with human transporter-independent intestinal permeability

For low molecular weight drugs, lipid bilayer permeation is considered the major route for in vivo cell barrier passage. We recently introduced a fluorescence assay with liposomes to determine permeation kinetics of ionisable compounds across the lipid bilayer by monitoring drug-induced pH changes i...

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Veröffentlicht in:European journal of pharmaceutical sciences 2017-06, Vol.104, p.150-161
Hauptverfasser: Hermann, Katharina F., Neuhaus, Claudia S., Micallef, Virgine, Wagner, Björn, Hatibovic, Maja, Aschmann, Hélène E., Paech, Franziska, Alvarez-Sanchez, Rubén, Krämer, Stefanie D., Belli, Sara
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Sprache:eng
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Zusammenfassung:For low molecular weight drugs, lipid bilayer permeation is considered the major route for in vivo cell barrier passage. We recently introduced a fluorescence assay with liposomes to determine permeation kinetics of ionisable compounds across the lipid bilayer by monitoring drug-induced pH changes inside the liposomes. Here, we determined the permeability coefficients (PFLipP, FLipP for “Fluorescence Liposomal Permeability”) across 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC) bilayers of 35 ionisable drugs at pH6.0 and compared them to available in vivo human jejunal permeability (Peff) data. PFLipP values were furthermore compared with published Caco-2 cell permeability coefficients (PCaco-2), permeability coefficients determined with the parallel artificial membrane permeability assay (PAMPA) and with log D (pH6.0). The log PFLipP, corrected for predicted para-cellular diffusion, and log PCaco-2 correlated best with log Peff, with similar adjusted R2 (0.75 and 0.74, n=12). Our results suggest that transporter-independent intestinal drug absorption is predictable from liposomal permeability. [Display omitted]
ISSN:0928-0987
1879-0720
DOI:10.1016/j.ejps.2017.03.040