Cargando…

Optimisation of the Manufacturing Process of Organic-Solvent-Free Omeprazole Enteric Pellets for the Paediatric Population: Full Factorial Design

Liquid formulations are mostly used in the paediatric population. However, with certain active pharmaceutical ingredients (APIs), it is very difficult to guarantee quality and stability; this is the case, for example, with omeprazole. Omeprazole is used as a model drug due to the lack of a paediatri...

Descripción completa

Detalles Bibliográficos
Autores principales: Rouaz-El-Hajoui, Khadija, García-Montoya, Encarnación, López-Urbano, Andrea, Romero-Obon, Miquel, Chiclana-Rodríguez, Blanca, Fraschi-Nieto, Alex, Nardi-Ricart, Anna, Suñé-Pou, Marc, Suñé-Negre, Josep María, Pérez-Lozano, Pilar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10675058/
https://www.ncbi.nlm.nih.gov/pubmed/38004567
http://dx.doi.org/10.3390/pharmaceutics15112587
_version_ 1785140974705442816
author Rouaz-El-Hajoui, Khadija
García-Montoya, Encarnación
López-Urbano, Andrea
Romero-Obon, Miquel
Chiclana-Rodríguez, Blanca
Fraschi-Nieto, Alex
Nardi-Ricart, Anna
Suñé-Pou, Marc
Suñé-Negre, Josep María
Pérez-Lozano, Pilar
author_facet Rouaz-El-Hajoui, Khadija
García-Montoya, Encarnación
López-Urbano, Andrea
Romero-Obon, Miquel
Chiclana-Rodríguez, Blanca
Fraschi-Nieto, Alex
Nardi-Ricart, Anna
Suñé-Pou, Marc
Suñé-Negre, Josep María
Pérez-Lozano, Pilar
author_sort Rouaz-El-Hajoui, Khadija
collection PubMed
description Liquid formulations are mostly used in the paediatric population. However, with certain active pharmaceutical ingredients (APIs), it is very difficult to guarantee quality and stability; this is the case, for example, with omeprazole. Omeprazole is used as a model drug due to the lack of a paediatric formulation meeting gastro-resistance requirements, which remains a challenge today. In this experimental study, the development of enteric polymer-coated pellets is proposed. It is proposed to use aqueous coating dispersions without the use of organic solvents, which are commonly used in fluidised bed coatings. To do this, the design of experiments method is used as a statistical tool for experiment creation and the subsequent analysis of the responses. In particular, this study uses a randomised full factorial design. The mean weight increases of the protective layer and the enteric coating are chosen as factors. Each factor is assigned two levels. Therefore, the design of the used experiments is a 2(2) + 1 central point. Overall, the obtained pellets can be an alternative to the compounding formulas of omeprazole that are currently used in the paediatric population, which do not meet the gastro-resistance specifications necessary to guarantee the therapeutic efficacy of this active ingredient.
format Online
Article
Text
id pubmed-10675058
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-106750582023-11-04 Optimisation of the Manufacturing Process of Organic-Solvent-Free Omeprazole Enteric Pellets for the Paediatric Population: Full Factorial Design Rouaz-El-Hajoui, Khadija García-Montoya, Encarnación López-Urbano, Andrea Romero-Obon, Miquel Chiclana-Rodríguez, Blanca Fraschi-Nieto, Alex Nardi-Ricart, Anna Suñé-Pou, Marc Suñé-Negre, Josep María Pérez-Lozano, Pilar Pharmaceutics Article Liquid formulations are mostly used in the paediatric population. However, with certain active pharmaceutical ingredients (APIs), it is very difficult to guarantee quality and stability; this is the case, for example, with omeprazole. Omeprazole is used as a model drug due to the lack of a paediatric formulation meeting gastro-resistance requirements, which remains a challenge today. In this experimental study, the development of enteric polymer-coated pellets is proposed. It is proposed to use aqueous coating dispersions without the use of organic solvents, which are commonly used in fluidised bed coatings. To do this, the design of experiments method is used as a statistical tool for experiment creation and the subsequent analysis of the responses. In particular, this study uses a randomised full factorial design. The mean weight increases of the protective layer and the enteric coating are chosen as factors. Each factor is assigned two levels. Therefore, the design of the used experiments is a 2(2) + 1 central point. Overall, the obtained pellets can be an alternative to the compounding formulas of omeprazole that are currently used in the paediatric population, which do not meet the gastro-resistance specifications necessary to guarantee the therapeutic efficacy of this active ingredient. MDPI 2023-11-04 /pmc/articles/PMC10675058/ /pubmed/38004567 http://dx.doi.org/10.3390/pharmaceutics15112587 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rouaz-El-Hajoui, Khadija
García-Montoya, Encarnación
López-Urbano, Andrea
Romero-Obon, Miquel
Chiclana-Rodríguez, Blanca
Fraschi-Nieto, Alex
Nardi-Ricart, Anna
Suñé-Pou, Marc
Suñé-Negre, Josep María
Pérez-Lozano, Pilar
Optimisation of the Manufacturing Process of Organic-Solvent-Free Omeprazole Enteric Pellets for the Paediatric Population: Full Factorial Design
title Optimisation of the Manufacturing Process of Organic-Solvent-Free Omeprazole Enteric Pellets for the Paediatric Population: Full Factorial Design
title_full Optimisation of the Manufacturing Process of Organic-Solvent-Free Omeprazole Enteric Pellets for the Paediatric Population: Full Factorial Design
title_fullStr Optimisation of the Manufacturing Process of Organic-Solvent-Free Omeprazole Enteric Pellets for the Paediatric Population: Full Factorial Design
title_full_unstemmed Optimisation of the Manufacturing Process of Organic-Solvent-Free Omeprazole Enteric Pellets for the Paediatric Population: Full Factorial Design
title_short Optimisation of the Manufacturing Process of Organic-Solvent-Free Omeprazole Enteric Pellets for the Paediatric Population: Full Factorial Design
title_sort optimisation of the manufacturing process of organic-solvent-free omeprazole enteric pellets for the paediatric population: full factorial design
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10675058/
https://www.ncbi.nlm.nih.gov/pubmed/38004567
http://dx.doi.org/10.3390/pharmaceutics15112587
work_keys_str_mv AT rouazelhajouikhadija optimisationofthemanufacturingprocessoforganicsolventfreeomeprazoleentericpelletsforthepaediatricpopulationfullfactorialdesign
AT garciamontoyaencarnacion optimisationofthemanufacturingprocessoforganicsolventfreeomeprazoleentericpelletsforthepaediatricpopulationfullfactorialdesign
AT lopezurbanoandrea optimisationofthemanufacturingprocessoforganicsolventfreeomeprazoleentericpelletsforthepaediatricpopulationfullfactorialdesign
AT romeroobonmiquel optimisationofthemanufacturingprocessoforganicsolventfreeomeprazoleentericpelletsforthepaediatricpopulationfullfactorialdesign
AT chiclanarodriguezblanca optimisationofthemanufacturingprocessoforganicsolventfreeomeprazoleentericpelletsforthepaediatricpopulationfullfactorialdesign
AT fraschinietoalex optimisationofthemanufacturingprocessoforganicsolventfreeomeprazoleentericpelletsforthepaediatricpopulationfullfactorialdesign
AT nardiricartanna optimisationofthemanufacturingprocessoforganicsolventfreeomeprazoleentericpelletsforthepaediatricpopulationfullfactorialdesign
AT sunepoumarc optimisationofthemanufacturingprocessoforganicsolventfreeomeprazoleentericpelletsforthepaediatricpopulationfullfactorialdesign
AT sunenegrejosepmaria optimisationofthemanufacturingprocessoforganicsolventfreeomeprazoleentericpelletsforthepaediatricpopulationfullfactorialdesign
AT perezlozanopilar optimisationofthemanufacturingprocessoforganicsolventfreeomeprazoleentericpelletsforthepaediatricpopulationfullfactorialdesign