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Title:An anticoagulant activity and protein interaction study of chondroitin sulfate-coated magnetic nanocomposites
Authors:ID Bračič, Matej (Author)
ID Rantaša, Matjaž (Author)
ID Fras Zemljič, Lidija (Author)
ID Finšgar, Matjaž (Author)
ID Simonič, Marjana (Author)
ID Gyergyek, Sašo (Author)
ID Radić, Josip (Author)
ID Plohl, Olivija (Author)
Files:.pdf 1-s2.0-S0141813026013073-main.pdf (7,03 MB)
MD5: 26F6CB07346FE34E09D9EBE64CAD4D4A
 
URL https://www.sciencedirect.com/science/article/pii/S0141813026013073?via%3Dihub
 
Language:English
Work type:Article
Typology:1.01 - Original Scientific Article
Organization:FS - Faculty of Mechanical Engineering
FKKT - Faculty of Chemistry and Chemical Engineering
Abstract:Intravascular thrombosis is a significant cause of morbidity and mortality worldwide, highlighting the need for safe and effective anticoagulants. Chondroitin sulfate (CSul) has a weaker antithrombotic effect than heparin, but has a significantly lower bleeding risk, making it an attractive anticoagulant for the next generation of therapeutics. Here, we report for the first time the development of magnetically responsive anticoagulant nanocomposites prepared by functionalizing CSul on the surface of iron oxide magnetic nanoparticles (MNPs). The iron oxide MNPs were prepared by co-precipitation, and then functionalized with CSul at an elevated temperature to add the negatively charged functional groups that exhibit anticoagulant potential. Comprehensive physicochemical characterization, including transmission and scanning electron microscopy, X-ray diffraction, attenuated total reflectance Fourier transform infrared spectroscopy, X-ray photoelectron spectroscopy, zeta potential as a function of pH, dynamic light scattering, thermogravimetry, and magnetometry, confirmed the presence of the CSul coating on the MNPs. The stability of the CSul coating was determined at physiologically relevant pH values, which revealed minor desorption of the polysaccharides. The hemocompatibility was investigated using the activated partial thromboplastin time and solid–liquid interaction tests with a key coagulation protein, i.e., bovine fibrinogen. The hemocompatibility studies showed that the MNPs@CSul prolonged clotting time compared to bare MNPs and exhibited reduced fibrinogen adsorption, consistent with partial anticoagulant and antifouling properties. Overall, these findings establish proof-of-concept that CSul-coated MNPs combine anticoagulant activity with magnetic manipulability. This dual functionality underlines their potential as a platform for externally guided antithrombotic therapies with a lower risk of bleeding.
Keywords:chondroitin sulfate, magnetic nanoparticles, Solid-liquid interactions
Publication status:Published
Publication version:Version of Record
Submitted for review:15.01.2026
Article acceptance date:09.03.2026
Publication date:10.03.2026
Publisher:Elsevier
Year of publishing:2026
Number of pages:14 str.
Numbering:Vol. 354 [article no.] 151381
PID:20.500.12556/DKUM-97563 New window
UDC:543.2:620.3
ISSN on article:1879-0003
COBISS.SI-ID:272130051 New window
DOI:10.1016/j.ijbiomac.2026.151381 New window
Publication date in DKUM:19.03.2026
Views:184
Downloads:21
Metadata:XML DC-XML DC-RDF
Categories:Misc.
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Record is a part of a journal

Title:International journal of biological macromolecules
Shortened title:Int. j. biol. macromol.
Publisher:Elsevier
ISSN:1879-0003
COBISS.SI-ID:23180805 New window

Document is financed by a project

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:P2-0118-2022
Name:Tekstilna kemija in napredni tekstilni materiali

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:P2-0089-2020
Name:Sodobni magnetni in večnamenski materiali

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:J1-4416-2022
Name:Razvoj visokoobčutljive elektrokemijske metode na osnovi magnetnih polimernih nanokompozitov za določanje spojin antibiotikov v sledovih v okolijskih sistemih

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:J1-60015-2025
Name:Večfunkcionalni površinski inženiring titanovih zlitin: prilagajanje poroznosti in biokompatibilni premazi za nadzorovano dostavo zdravilnih učinkovin v ortopedskih aplikacijah

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:J7-60120-2025
Name:Konstruiranje, razvoj in karakterizacija inovativnih biorazgradljivih žilnih opornic

Licences

License:CC BY-NC-ND 4.0, Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International
Link:http://creativecommons.org/licenses/by-nc-nd/4.0/
Description:The most restrictive Creative Commons license. This only allows people to download and share the work for no commercial gain and for no other purposes.

Secondary language

Language:Slovenian
Keywords:hondroitin sulfat, magnetni nanodelci, interakcije trdnih snovi in ​​tekočin


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