Literature DB >> 28151040

Design of PEG-grafted-PLA nanoparticles as oral permeability enhancer for P-gp substrate drug model Famotidine.

Mohamed Mokhtar1, Patrick Gosselin2, François Lacasse1, Patrice Hildgen3.   

Abstract

Bioavailability of oral drugs can be limited by an intestinal excretion process mediated by P-glycoprotein (P-gp). Polyethylene glycol (PEG) is a known P-gp inhibitor. Dispersion of Famotidine (a P-gp substrate) within PEGylated nanoparticles (NPs) was used to improve its oral bioavailability. In this work, we evaluated the potential impact of NPs prepared from a grafted copolymer of polylactic acid and PEG on P-gp function by studying in vitro permeability of Famotidine across Caco-2 cells. Copolymers of PEG grafted on polylactic acid (PLA) backbone (PLA-g-PEG) were synthesised with 1 mol% and 5 mol% PEG vs. lactic acid monomer using PEG 750 and 2000 Da. The polymers were used to prepare Famotidine-loaded NPs and tested in vitro on Caco-2 cells. Significant decrease in basolateral-to-apical transport of Famotidine was observed when Famotidine was encapsulated in NPs prepared from PLA-g-PEG5%. NPs prepared from PLA-g-PEG5% are promising to improve oral bioavailability of P-gp substrates.

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Keywords:  Caco-2; Famotidine; P-gp; PEG; PLA; nanoparticles; permeability

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Year:  2017        PMID: 28151040     DOI: 10.1080/02652048.2017.1290155

Source DB:  PubMed          Journal:  J Microencapsul        ISSN: 0265-2048            Impact factor:   3.142


  1 in total

1.  Solubility and ADMET profiles of short oligomers of lactic acid.

Authors:  Daniela Dascălu; Diana Larisa Roman; Madalina Filip; Alecu Ciorsac; Vasile Ostafe; Adriana Isvoran
Journal:  ADMET DMPK       Date:  2020-06-28
  1 in total

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