Application of L-FDM Technology to the Printing of Tablets That Release Active Substances—Preliminary Research

Author:

Gabriel Ewa12ORCID,Olejnik Anna12,Sztorch Bogna2,Frydrych Miłosz2ORCID,Czerwińska Olga3,Pietrzak Robert1,Przekop Robert E.2

Affiliation:

1. Faculty of Chemistry, Adam Mickiewicz University in Poznan, 8 Uniwersytetu Poznanskiego, 61-614 Poznan, Poland

2. Centre for Advanced Technologies, Adam Mickiewicz University in Poznan, 10 Uniwersytetu Poznanskiego, 61-614 Poznan, Poland

3. Sygnis S.A., Al. Grunwaldzka 472, 80-309 Gdansk, Poland

Abstract

The following work presents a method for obtaining PLA composites with activated carbon modified using the liquid for fused deposition modeling (L-FDM) method in which two different compounds, i.e., rhodamine and antipyrine, are introduced. Tablets saturated with substances were obtained. Microscopic tests were carried out, and these confirmed the presence of substances that had been introduced into the polymer structure. UV-Vis spectra and observation of the active substance release process confirmed the relationship between the printing speed and the amounts of the compounds liberated from the tablets. Additionally, the contact angle of the PLA with activated carbon composites was characterized. The hydrophilic nature of the obtained composites favors an increase in the amounts of compounds released during the release process, which is a desirable effect. The surfaces and pores of the obtained materials were also analyzed. The incorporation of activated carbon into PLA results in a significant increase in its surface area. Investigations indicate that a novel approach for introducing chemicals into polymer matrices through the L-FDM method holds promise for the prospective fabrication of tablets capable of a controlled and customized release of substances tailored to individual requirements.

Funder

Smart Growth Operational Programme

European Funds

Ministry of Science and Higher Education

Publisher

MDPI AG

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