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A Novel Suspension Formulation Enhances Intestinal Absorption of Macromolecules Via Transient and Reversible Transport Mechanisms

PURPOSE: Medium chain fatty acid salts promote absorption by increasing paracellular permeability of the intestinal epithelium. Novel oily suspension (OS) formulation disperses a powder containing sodium caprylate and macromolecules such as octreotide or fluorescent dextran (FD). Formulation safety,...

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Autores principales: Tuvia, Shmuel, Pelled, Dori, Marom, Karen, Salama, Paul, Levin-Arama, Maya, Karmeli, Irina, Idelson, Gregory H., Landau, Isaac, Mamluk, Roni
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer US 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4153969/
https://www.ncbi.nlm.nih.gov/pubmed/24558008
http://dx.doi.org/10.1007/s11095-014-1303-9
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author Tuvia, Shmuel
Pelled, Dori
Marom, Karen
Salama, Paul
Levin-Arama, Maya
Karmeli, Irina
Idelson, Gregory H.
Landau, Isaac
Mamluk, Roni
author_facet Tuvia, Shmuel
Pelled, Dori
Marom, Karen
Salama, Paul
Levin-Arama, Maya
Karmeli, Irina
Idelson, Gregory H.
Landau, Isaac
Mamluk, Roni
author_sort Tuvia, Shmuel
collection PubMed
description PURPOSE: Medium chain fatty acid salts promote absorption by increasing paracellular permeability of the intestinal epithelium. Novel oily suspension (OS) formulation disperses a powder containing sodium caprylate and macromolecules such as octreotide or fluorescent dextran (FD). Formulation safety, macromolecule absorption and pharmacokinetic (PK)/pharmacodynamic (PD) were evaluated. METHODS: Octreotide/OS toxicity was evaluated in monkeys following 9 months of daily oral enteric-coated capsule administration. The OS permeation effect was also assessed in rats, using FD/OS and octreotide/OS preparations. Octreotide/OS effects on circulating growth hormone (GH) levels were also measured. RESULTS: Safety assessment of octreotide/OS in monkeys after 9 months showed minor drug-related findings, comparable to the injectable octreotide. Octreotide exposure levels were similar across the treatment periods. In rats, OS facilitated FD permeation up to 70 kDa in a reversible, spatial and dose-dependent manner, independent of the intestinal dosing site. Following OS administration, the staining pattern of the tight-junction protein, ZO-1, changed transiently, and a paracellular penetration marker, LC-biotin, permeated between adjacent epithelial cells. Enteral octreotide/OS absorption was dose-dependent and suppressed rat GH levels. CONCLUSIONS: Oral octreotide/OS dosing was shown to be safe in monkeys. OS enhances intestinal absorption of active octreotide, likely by transient alteration of the tight junction protein complex.
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spelling pubmed-41539692014-09-04 A Novel Suspension Formulation Enhances Intestinal Absorption of Macromolecules Via Transient and Reversible Transport Mechanisms Tuvia, Shmuel Pelled, Dori Marom, Karen Salama, Paul Levin-Arama, Maya Karmeli, Irina Idelson, Gregory H. Landau, Isaac Mamluk, Roni Pharm Res Research Paper PURPOSE: Medium chain fatty acid salts promote absorption by increasing paracellular permeability of the intestinal epithelium. Novel oily suspension (OS) formulation disperses a powder containing sodium caprylate and macromolecules such as octreotide or fluorescent dextran (FD). Formulation safety, macromolecule absorption and pharmacokinetic (PK)/pharmacodynamic (PD) were evaluated. METHODS: Octreotide/OS toxicity was evaluated in monkeys following 9 months of daily oral enteric-coated capsule administration. The OS permeation effect was also assessed in rats, using FD/OS and octreotide/OS preparations. Octreotide/OS effects on circulating growth hormone (GH) levels were also measured. RESULTS: Safety assessment of octreotide/OS in monkeys after 9 months showed minor drug-related findings, comparable to the injectable octreotide. Octreotide exposure levels were similar across the treatment periods. In rats, OS facilitated FD permeation up to 70 kDa in a reversible, spatial and dose-dependent manner, independent of the intestinal dosing site. Following OS administration, the staining pattern of the tight-junction protein, ZO-1, changed transiently, and a paracellular penetration marker, LC-biotin, permeated between adjacent epithelial cells. Enteral octreotide/OS absorption was dose-dependent and suppressed rat GH levels. CONCLUSIONS: Oral octreotide/OS dosing was shown to be safe in monkeys. OS enhances intestinal absorption of active octreotide, likely by transient alteration of the tight junction protein complex. Springer US 2014-02-21 2014 /pmc/articles/PMC4153969/ /pubmed/24558008 http://dx.doi.org/10.1007/s11095-014-1303-9 Text en © The Author(s) 2014 https://creativecommons.org/licenses/by/2.0/ Open Access This article is distributed under the terms of the Creative Commons Attribution License which permits any use, distribution, and reproduction in any medium, provided the original author(s) and the source are credited.
spellingShingle Research Paper
Tuvia, Shmuel
Pelled, Dori
Marom, Karen
Salama, Paul
Levin-Arama, Maya
Karmeli, Irina
Idelson, Gregory H.
Landau, Isaac
Mamluk, Roni
A Novel Suspension Formulation Enhances Intestinal Absorption of Macromolecules Via Transient and Reversible Transport Mechanisms
title A Novel Suspension Formulation Enhances Intestinal Absorption of Macromolecules Via Transient and Reversible Transport Mechanisms
title_full A Novel Suspension Formulation Enhances Intestinal Absorption of Macromolecules Via Transient and Reversible Transport Mechanisms
title_fullStr A Novel Suspension Formulation Enhances Intestinal Absorption of Macromolecules Via Transient and Reversible Transport Mechanisms
title_full_unstemmed A Novel Suspension Formulation Enhances Intestinal Absorption of Macromolecules Via Transient and Reversible Transport Mechanisms
title_short A Novel Suspension Formulation Enhances Intestinal Absorption of Macromolecules Via Transient and Reversible Transport Mechanisms
title_sort novel suspension formulation enhances intestinal absorption of macromolecules via transient and reversible transport mechanisms
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4153969/
https://www.ncbi.nlm.nih.gov/pubmed/24558008
http://dx.doi.org/10.1007/s11095-014-1303-9
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