4.7 Article

Modification of the Release of Poorly Soluble Sulindac with the APTES-Modified SBA-15 Mesoporous Silica

Journal

PHARMACEUTICS
Volume 13, Issue 10, Pages -

Publisher

MDPI
DOI: 10.3390/pharmaceutics13101693

Keywords

mesoporous silica; SBA-15; dissolution rate; drug delivery system; sulindac; physicochemical techniques

Funding

  1. Poznan University of Medical Sciences [502-14-33054110-41289]

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The study aimed to analyze the effect of two different APTES-modified SBA-15 silicas on the release profiles of sulindac and investigate the cytotoxicity of these molecules. The results showed that APTES-modified SBA-15 influenced the release of sulindac, both materials improved the dissolution rate in acidic pH, and exhibited insignificant cytotoxicity towards Caco-2 cells.
The effectiveness of oral drug administration is related to the solubility of a drug in the gastrointestinal tract and its ability to penetrate the biological membranes. As most new drugs are poorly soluble in water, there is a need to develop novel drug carriers that improve the dissolution rate and increase bioavailability. The aim of this study was to analyze the modification of sulindac release profiles in various pH levels with two APTES ((3-aminopropyl)triethoxysilane)-modified SBA-15 (Santa Barbara Amorphous-15) silicas differing in 3-aminopropyl group content. Furthermore, we investigated the cytotoxicity of the analyzed molecules. The materials were characterized by differential scanning calorimetry, powder X-ray diffraction, scanning and transmission electron microscopy, proton nuclear magnetic resonance and Fourier transformed infrared spectroscopy. Sulindac loaded on the SBA-15 was released in the hydrochloric acidic medium (pH 1.2) and phosphate buffers (pH 5.8, 6.8, and 7.4). The cytotoxicity studies were performed on Caco-2 cell line. The APTES-modified SBA-15 with a lower adsorption capacity towards sulindac released the drug in a less favorable manner. However, both analyzed materials improved the dissolution rate in acidic pH, as compared to crystalline sulindac. Moreover, the SBA-15, both before and after drug adsorption, exhibited insignificant cytotoxicity towards Caco-2 cells. The presented study evidenced that SBA-15 could serve as a non-toxic drug delivery system that enhances the dissolution rate of sulindac and improves its bioavailability.

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