Summary
September 2006, Vol. 3, No. 5, Pages 685-692 , DOI 10.1517/17425247.3.5.685

Promoting absorption of drugs in humans using medium-chain fatty acid-based solid dosage forms: GIPET™

Thomas W Leonard1, John Lynch2, Michael J McKenna3 & David J Brayden4
1VP and Chief Scientific Officer, Merrion Pharmaceuticals USA, 219 Racine Drive, Suite D, Wilmington, NC 28403, USA.
2Chief Operating Officer, Merrion Pharmaceuticals, Ireland, Biotechnology Building, Trinity College, Dublin 2, Ireland
3Chief Executive Officer, Merrion Pharmaceuticals USA, Wilmington, NC, USA
4Associate Professor, UCD Conway Institute, University College Dublin, Belfield, Dublin 4, Ireland
Author for correspondence



One of the most important and challenging goals in drug delivery is overcoming the poor oral absorption of high-value therapeutics that include peptides. Gastrointestinal Permeation Enhancement Technology (GIPET™) attempts to address this question by safely delivering drugs across the small intestine in therapeutically relevant concentrations. GIPET is based primarily on promoting drug absorption through the use of medium-chain fatty acids, medium-chain fatty acid derivatives and microemulsion systems based on medium-chain fatty acid glycerides formulated in enteric-coated tablets or capsules. Importantly, these excipients are generally regarded as safe and the systems are formulated in such a way that there is no change in chemical composition of the active ingredient. More than 300 volunteers have been administered GIPET formulations in 16 Phase I studies of 6 separate drugs comprising both single- and repeat-dosing regimes. Oral bioavailability of alendronate, desmopressin and low-molecular-weight heparin in humans was increased using GIPET formulations compared with unformulated controls. GIPET was well tolerated by human subjects. Using fluxes of markers of epithelial permeability, the effects of GIPET on the human intestine were shown to be rapid, short-lived and reversible in vivo. These data suggest that GIPET formulations have genuine potential as a platform technology for safe and effective oral drug delivery of a wide range of poorly permeable drugs.

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Authors:
Thomas W Leonard
John Lynch
Michael J McKenna
David J Brayden
Keywords:
bisphosphonates
epithelial permeation enhancers
intestinal absorption
low-molecular weight heparin
oral peptide delivery
sodium caprate