Hydroxyapatite and Silicon-Modified Hydroxyapatite as Drug Carriers for 4-Aminopyridine

Adsorption and desorption properties of nano-hydroxyapatite (HAP) and silicon-modified hydroxyapatite (Si–HAP) were investigated with 4-aminopyridine (fampridine-4AP). The novelty of this research is the investigation of the suitability of the previously mentioned carriers for drug-delivery of 4AP....

Full description

Bibliographic Details
Main Authors: Laura Marincaș, Graziella Liana Turdean, Monica Toșa, Zsolt Kovács, Béla Kovács, Réka Barabás, Noémi-Izabella Farkas, Liliana Bizo
Format: Article
Language:English
Published: MDPI AG 2021-09-01
Series:Crystals
Subjects:
Online Access:https://www.mdpi.com/2073-4352/11/9/1124
id doaj-90a0c054f2a24150962f42d2f1649f24
record_format Article
spelling doaj-90a0c054f2a24150962f42d2f1649f242021-09-25T23:57:53ZengMDPI AGCrystals2073-43522021-09-01111124112410.3390/cryst11091124Hydroxyapatite and Silicon-Modified Hydroxyapatite as Drug Carriers for 4-AminopyridineLaura Marincaș0Graziella Liana Turdean1Monica Toșa2Zsolt Kovács3Béla Kovács4Réka Barabás5Noémi-Izabella Farkas6Liliana Bizo7Department of Chemistry, Faculty of Chemistry and Chemical Engineering, Babeș-Bolyai University, 11 Arany János Street, 400028 Cluj-Napoca, RomaniaDepartment of Chemistry, Faculty of Chemistry and Chemical Engineering, Babeș-Bolyai University, 11 Arany János Street, 400028 Cluj-Napoca, RomaniaEnzymology and Applied Biocatalysis Research Centre, Faculty of Chemistry and Chemical Engineering, Babeş-Bolyai University, 11 Arany János Street, 400028 Cluj-Napoca, RomaniaDepartment of Biochemistry and Environmental Chemistry, Faculty of Pharmacy, George Emil Palade University of Medicine, Pharmacy, Science, and Technology of Târgu Mureș, Gheorghe Marinescu 38 Street, 540142 Târgu Mureș, RomaniaDepartment of Biochemistry and Environmental Chemistry, Faculty of Pharmacy, George Emil Palade University of Medicine, Pharmacy, Science, and Technology of Târgu Mureș, Gheorghe Marinescu 38 Street, 540142 Târgu Mureș, RomaniaDepartment of Chemistry and Chemical Engineering of Hungarian Line of Study, Faculty of Chemistry and Chemical Engineering, Babeș-Bolyai University, 11 Arany János Street, 400028 Cluj-Napoca, RomaniaDepartment of Chemical Engineering, Faculty of Chemistry and Chemical Engineering, Babeș-Bolyai University, 11 Arany János Street, 400028 Cluj-Napoca, RomaniaDepartment of Chemical Engineering, Faculty of Chemistry and Chemical Engineering, Babeș-Bolyai University, 11 Arany János Street, 400028 Cluj-Napoca, RomaniaAdsorption and desorption properties of nano-hydroxyapatite (HAP) and silicon-modified hydroxyapatite (Si–HAP) were investigated with 4-aminopyridine (fampridine-4AP). The novelty of this research is the investigation of the suitability of the previously mentioned carriers for drug-delivery of 4AP. UV-VIS spectrophotometric results showed that the presence of silicon in the carrier did not significantly affect its adsorption capacity. The success of the adsorption was confirmed by thermal analysis (TG/DTA), scanning electron microscopy (SEM)/energy dispersive X-ray (EDX), Fourier transform infrared (FTIR) spectroscopy, and X-ray powder diffraction (XRPD). Drug release experiments, performed in simulated body fluid (SBF), revealed a drug release from Si–HAP that was five times slower than HAP, explained by the good chemical bonding between the silanol groups of the carrier and the 4AP functional groups. The electrochemical measurements showed a value of the polarization resistance of the charge transfer (R<sub>ct</sub>) more than five times smaller in the case of Si–HAP coating loaded with 4AP, so the charge transfer process was hindered. The electrochemical impedance results revealed that electron transfer was inhibited in the presence of 4AP, in concordance with the previously mentioned strong bonds. The silicon substitution in HAP leads to good chemical bonding with the drug and a slow release, respectively.https://www.mdpi.com/2073-4352/11/9/11244-aminopyridinehydroxyapatitedrug adsorptionelectrochemistry
collection DOAJ
language English
format Article
sources DOAJ
author Laura Marincaș
Graziella Liana Turdean
Monica Toșa
Zsolt Kovács
Béla Kovács
Réka Barabás
Noémi-Izabella Farkas
Liliana Bizo
spellingShingle Laura Marincaș
Graziella Liana Turdean
Monica Toșa
Zsolt Kovács
Béla Kovács
Réka Barabás
Noémi-Izabella Farkas
Liliana Bizo
Hydroxyapatite and Silicon-Modified Hydroxyapatite as Drug Carriers for 4-Aminopyridine
Crystals
4-aminopyridine
hydroxyapatite
drug adsorption
electrochemistry
author_facet Laura Marincaș
Graziella Liana Turdean
Monica Toșa
Zsolt Kovács
Béla Kovács
Réka Barabás
Noémi-Izabella Farkas
Liliana Bizo
author_sort Laura Marincaș
title Hydroxyapatite and Silicon-Modified Hydroxyapatite as Drug Carriers for 4-Aminopyridine
title_short Hydroxyapatite and Silicon-Modified Hydroxyapatite as Drug Carriers for 4-Aminopyridine
title_full Hydroxyapatite and Silicon-Modified Hydroxyapatite as Drug Carriers for 4-Aminopyridine
title_fullStr Hydroxyapatite and Silicon-Modified Hydroxyapatite as Drug Carriers for 4-Aminopyridine
title_full_unstemmed Hydroxyapatite and Silicon-Modified Hydroxyapatite as Drug Carriers for 4-Aminopyridine
title_sort hydroxyapatite and silicon-modified hydroxyapatite as drug carriers for 4-aminopyridine
publisher MDPI AG
series Crystals
issn 2073-4352
publishDate 2021-09-01
description Adsorption and desorption properties of nano-hydroxyapatite (HAP) and silicon-modified hydroxyapatite (Si–HAP) were investigated with 4-aminopyridine (fampridine-4AP). The novelty of this research is the investigation of the suitability of the previously mentioned carriers for drug-delivery of 4AP. UV-VIS spectrophotometric results showed that the presence of silicon in the carrier did not significantly affect its adsorption capacity. The success of the adsorption was confirmed by thermal analysis (TG/DTA), scanning electron microscopy (SEM)/energy dispersive X-ray (EDX), Fourier transform infrared (FTIR) spectroscopy, and X-ray powder diffraction (XRPD). Drug release experiments, performed in simulated body fluid (SBF), revealed a drug release from Si–HAP that was five times slower than HAP, explained by the good chemical bonding between the silanol groups of the carrier and the 4AP functional groups. The electrochemical measurements showed a value of the polarization resistance of the charge transfer (R<sub>ct</sub>) more than five times smaller in the case of Si–HAP coating loaded with 4AP, so the charge transfer process was hindered. The electrochemical impedance results revealed that electron transfer was inhibited in the presence of 4AP, in concordance with the previously mentioned strong bonds. The silicon substitution in HAP leads to good chemical bonding with the drug and a slow release, respectively.
topic 4-aminopyridine
hydroxyapatite
drug adsorption
electrochemistry
url https://www.mdpi.com/2073-4352/11/9/1124
work_keys_str_mv AT lauramarincas hydroxyapatiteandsiliconmodifiedhydroxyapatiteasdrugcarriersfor4aminopyridine
AT graziellalianaturdean hydroxyapatiteandsiliconmodifiedhydroxyapatiteasdrugcarriersfor4aminopyridine
AT monicatosa hydroxyapatiteandsiliconmodifiedhydroxyapatiteasdrugcarriersfor4aminopyridine
AT zsoltkovacs hydroxyapatiteandsiliconmodifiedhydroxyapatiteasdrugcarriersfor4aminopyridine
AT belakovacs hydroxyapatiteandsiliconmodifiedhydroxyapatiteasdrugcarriersfor4aminopyridine
AT rekabarabas hydroxyapatiteandsiliconmodifiedhydroxyapatiteasdrugcarriersfor4aminopyridine
AT noemiizabellafarkas hydroxyapatiteandsiliconmodifiedhydroxyapatiteasdrugcarriersfor4aminopyridine
AT lilianabizo hydroxyapatiteandsiliconmodifiedhydroxyapatiteasdrugcarriersfor4aminopyridine
_version_ 1717367396286595072