Clindamycin-Loaded Nanosized Calcium Phosphates Powders as a Carrier of Active Substances

Author:

Słota Dagmara1ORCID,Piętak Karina1ORCID,Florkiewicz Wioletta1ORCID,Jampilek Josef23ORCID,Tomala Agnieszka1ORCID,Urbaniak Mateusz M.45ORCID,Tomaszewska Agata45ORCID,Rudnicka Karolina4ORCID,Sobczak-Kupiec Agnieszka1ORCID

Affiliation:

1. Department of Materials Engineering, Faculty of Materials Engineering and Physics, Cracow University of Technology, 37 Jana Pawła II Av., 31 864 Krakow, Poland

2. Department of Analytical Chemistry, Faculty of Natural Sciences, Comenius University, Ilkovičova 6, 842 15 Bratislava, Slovakia

3. Department of Chemical Biology, Faculty of Science, Palacky University Olomouc, Slechtitelu 27, 783 71 Olomouc, Czech Republic

4. Department of Immunology and Infectious Biology, Faculty of Biology and Environmental Protection, University of Łódź, 90-237 Łódź, Poland

5. Bio-Med-Chem Doctoral School, University of Lodz and Lodz Institutes of the Polish Academy of Sciences, 90-237 Łódź, Poland

Abstract

Bioactive calcium phosphate ceramics (CaPs) are one of the building components of the inorganic part of bones. Synthetic CaPs are frequently used as materials for filling bone defects in the form of pastes or composites; however, their porous structure allows modification with active substances and, thus, subsequent use as a drug carrier for the controlled release of active substances. In this study, four different ceramic powders were compared: commercial hydroxyapatite (HA), TCP, brushite, as well as HA obtained by wet precipitation methods. The ceramic powders were subjected to physicochemical analysis, including FTIR, XRD, and determination of Ca/P molar ratio or porosity. These techniques confirmed that the materials were phase-pure, and the molar ratios of calcium and phosphorus elements were in accordance with the literature. This confirmed the validity of the selected synthesis methods. CaPs were then modified with the antibiotic clindamycin. Drug release was determined on HPLC, and antimicrobial properties were tested against Staphylococcus aureus. The specific surface area of the ceramic has been demonstrated to be a factor in drug release efficiency.

Funder

Foundation for Polish Science

Operation Program of Integrated Infrastructure for the project

European Regional Development Fund

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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