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Selective Laser Sintering of Solid Oral Dosage Forms with Copovidone and Paracetamol Using a CO(2) Laser

Material suitability needs to be considered for the 3D printing of solid oral dosage forms (SODFs). This work aims to assess the suitability of a CO(2) laser (λ = 10.6 μm) for selective laser sintering of SODFs containing copovidone and paracetamol. First, physicochemical characterization of powders...

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Autores principales: Gueche, Yanis A., Sanchez-Ballester, Noelia M., Bataille, Bernard, Aubert, Adrien, Leclercq, Laurent, Rossi, Jean-Christophe, Soulairol, Ian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7911894/
https://www.ncbi.nlm.nih.gov/pubmed/33530320
http://dx.doi.org/10.3390/pharmaceutics13020160
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author Gueche, Yanis A.
Sanchez-Ballester, Noelia M.
Bataille, Bernard
Aubert, Adrien
Leclercq, Laurent
Rossi, Jean-Christophe
Soulairol, Ian
author_facet Gueche, Yanis A.
Sanchez-Ballester, Noelia M.
Bataille, Bernard
Aubert, Adrien
Leclercq, Laurent
Rossi, Jean-Christophe
Soulairol, Ian
author_sort Gueche, Yanis A.
collection PubMed
description Material suitability needs to be considered for the 3D printing of solid oral dosage forms (SODFs). This work aims to assess the suitability of a CO(2) laser (λ = 10.6 μm) for selective laser sintering of SODFs containing copovidone and paracetamol. First, physicochemical characterization of powders (two grades of copovidone, two grades of paracetamol and their mixtures at various proportions) was conducted: particle size distribution, morphology, infrared absorbance, flowability, and compactness. Then, printing was launched, and printability of the powders was linked to their physicochemical characteristics. The properties of the sintered SODFs were evaluated (solid state, general aspect, porosity, hardness, drug content and release). Hence, it was found that as copovidone absorbs at the laser’s wavelength, sintering was feasible without using an absorbance enhancer. Also, flowability, which mainly depends on the particle size, represents the first control line for “sinterability” as a fair flow is at least required. Low compactness of copovidone and mixtures reduces the mechanical properties of the SODFs but also increases porosity, which can modulate drug release. Moreover, the drug did not undergo degradation and demonstrated a plasticizer effect by lowering the heating temperature. In conclusion, this work proves the applicability of CO(2) laser SLS printer to produce SODFs.
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spelling pubmed-79118942021-02-28 Selective Laser Sintering of Solid Oral Dosage Forms with Copovidone and Paracetamol Using a CO(2) Laser Gueche, Yanis A. Sanchez-Ballester, Noelia M. Bataille, Bernard Aubert, Adrien Leclercq, Laurent Rossi, Jean-Christophe Soulairol, Ian Pharmaceutics Article Material suitability needs to be considered for the 3D printing of solid oral dosage forms (SODFs). This work aims to assess the suitability of a CO(2) laser (λ = 10.6 μm) for selective laser sintering of SODFs containing copovidone and paracetamol. First, physicochemical characterization of powders (two grades of copovidone, two grades of paracetamol and their mixtures at various proportions) was conducted: particle size distribution, morphology, infrared absorbance, flowability, and compactness. Then, printing was launched, and printability of the powders was linked to their physicochemical characteristics. The properties of the sintered SODFs were evaluated (solid state, general aspect, porosity, hardness, drug content and release). Hence, it was found that as copovidone absorbs at the laser’s wavelength, sintering was feasible without using an absorbance enhancer. Also, flowability, which mainly depends on the particle size, represents the first control line for “sinterability” as a fair flow is at least required. Low compactness of copovidone and mixtures reduces the mechanical properties of the SODFs but also increases porosity, which can modulate drug release. Moreover, the drug did not undergo degradation and demonstrated a plasticizer effect by lowering the heating temperature. In conclusion, this work proves the applicability of CO(2) laser SLS printer to produce SODFs. MDPI 2021-01-26 /pmc/articles/PMC7911894/ /pubmed/33530320 http://dx.doi.org/10.3390/pharmaceutics13020160 Text en © 2021 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gueche, Yanis A.
Sanchez-Ballester, Noelia M.
Bataille, Bernard
Aubert, Adrien
Leclercq, Laurent
Rossi, Jean-Christophe
Soulairol, Ian
Selective Laser Sintering of Solid Oral Dosage Forms with Copovidone and Paracetamol Using a CO(2) Laser
title Selective Laser Sintering of Solid Oral Dosage Forms with Copovidone and Paracetamol Using a CO(2) Laser
title_full Selective Laser Sintering of Solid Oral Dosage Forms with Copovidone and Paracetamol Using a CO(2) Laser
title_fullStr Selective Laser Sintering of Solid Oral Dosage Forms with Copovidone and Paracetamol Using a CO(2) Laser
title_full_unstemmed Selective Laser Sintering of Solid Oral Dosage Forms with Copovidone and Paracetamol Using a CO(2) Laser
title_short Selective Laser Sintering of Solid Oral Dosage Forms with Copovidone and Paracetamol Using a CO(2) Laser
title_sort selective laser sintering of solid oral dosage forms with copovidone and paracetamol using a co(2) laser
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7911894/
https://www.ncbi.nlm.nih.gov/pubmed/33530320
http://dx.doi.org/10.3390/pharmaceutics13020160
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