It is well known that the intestinal stability and absorption of protein drugs are improved when enzyme inhibitors/permeation enhancers are coadministered. Recently, it was hypothesized that an increased effectiveness of these adjuvants might be achieved by timing their release prior to that of the protein, so that a more favorable environment would be established in advance. Therefore, an oral system was proposed for two-pulse colonic release of insulin and the protease inhibitor camostat mesilate/absorption enhancer sodium glycocholate. The device consisted of a drug-containing core, an inner swellable/erodible low-viscosity hydroxypropyl methylcellulose (HPMC) coating, an intermediate adjuvant layer, and an additional outer HPMC coating. HPMC coats and camostat mesilate/sodium glycocholate films with differing thicknesses were applied to immediate-release tablet cores by aqueous spray coating. The obtained units were characterized for weight, thickness, breaking force, and release performance. All systems showed satisfactory technological properties and the pursued pulsatile delivery behavior, with programmable delay phases preceding inhibitor/enhancer release and elapsing between inhibitor/enhancer and protein release, respectively. Indeed, both lag times linearly correlated with the relevant HPMC coating level. The system was thus proven suitable for yielding two-pulse release profiles, in which lag phases could be modulated to provide convenient concentration patterns for proteins and adjuvants.

Oral delivery system for two-pulse colonic release of protein drugs and protease inhibitor/absorption enhancer compounds / M.D. Del Curto, A. Maroni, L. Palugan, L. Zema, A. Gazzaniga, M.E. Sangalli. - In: JOURNAL OF PHARMACEUTICAL SCIENCES. - ISSN 0022-3549. - 100:8(2011 Aug), pp. 3251-3259.

Oral delivery system for two-pulse colonic release of protein drugs and protease inhibitor/absorption enhancer compounds

M.D. Del Curto
Primo
;
A. Maroni
Secondo
;
L. Palugan;L. Zema;A. Gazzaniga
Penultimo
;
M.E. Sangalli
Ultimo
2011

Abstract

It is well known that the intestinal stability and absorption of protein drugs are improved when enzyme inhibitors/permeation enhancers are coadministered. Recently, it was hypothesized that an increased effectiveness of these adjuvants might be achieved by timing their release prior to that of the protein, so that a more favorable environment would be established in advance. Therefore, an oral system was proposed for two-pulse colonic release of insulin and the protease inhibitor camostat mesilate/absorption enhancer sodium glycocholate. The device consisted of a drug-containing core, an inner swellable/erodible low-viscosity hydroxypropyl methylcellulose (HPMC) coating, an intermediate adjuvant layer, and an additional outer HPMC coating. HPMC coats and camostat mesilate/sodium glycocholate films with differing thicknesses were applied to immediate-release tablet cores by aqueous spray coating. The obtained units were characterized for weight, thickness, breaking force, and release performance. All systems showed satisfactory technological properties and the pursued pulsatile delivery behavior, with programmable delay phases preceding inhibitor/enhancer release and elapsing between inhibitor/enhancer and protein release, respectively. Indeed, both lag times linearly correlated with the relevant HPMC coating level. The system was thus proven suitable for yielding two-pulse release profiles, in which lag phases could be modulated to provide convenient concentration patterns for proteins and adjuvants.
Coating; Colonic drug delivery; Formulation; In vitro release; Insulin; Oral drug delivery; Peptide delivery; Pulsatile release
Settore CHIM/09 - Farmaceutico Tecnologico Applicativo
ago-2011
Article (author)
File in questo prodotto:
File Dimensione Formato  
Curto_et_al-2011-Journal_of_Pharmaceutical_Sciences.pdf

accesso riservato

Tipologia: Publisher's version/PDF
Dimensione 540.09 kB
Formato Adobe PDF
540.09 kB Adobe PDF   Visualizza/Apri   Richiedi una copia
Pubblicazioni consigliate

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/160129
Citazioni
  • ???jsp.display-item.citation.pmc??? 8
  • Scopus 44
  • ???jsp.display-item.citation.isi??? 37
social impact