Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7786110 | Carbohydrate Polymers | 2016 | 30 Pages |
Abstract
Cardiovascular disease is the largest single cause of morbid-mortality in the world. However, there is still no pharmaceutical treatment that directly targets the blood vessel wall instead of just controlling the risk factors. Here, we produced polyelectrolyte complexes (PECs) by a simple and reproducible polyelectrolyte complexation method between low molecular mass dermatan sulfate (polyanionic polysaccharide) and chitosan (polycationic polysaccharide), and evaluated the cellular uptake by vascular endothelial cells. The composition and the composition homogeneity of PECs were confirmed by 13C-CP-MAS spectroscopy and by polyacrylamide gel electrophoresis, respectively. The hydrodynamic radius, determined by dynamic light scattering, was 729 ± 11 nm. PECs were not cytotoxic for a murine heart endothelium-derived cell line. Fluorescent confocal microscopy showed the specific uptake of fluorescently-labeled PECs by endothelial cells when they were cultured alone or in the presence of macrophages. Overall, these findings confirmed the potential of these PECs for targeting different agents to the vessel wall in the prevention, diagnosis, and therapy of vascular disease.
Keywords
PDITPPM13C CP-MASz-potentialSS-NMRPecSRAW 264.7MMP2PGSproteoglycansGAGPAGEDICDLSDMEMFITCFBSECsDulbecco’s modified Eagle mediumMTTpolyacrylamide gel electrophoresisSizeVascular diseaseSize distributiontumor necrosis factor-αSolid-state nuclear magnetic resonancefetal bovine serumEndothelial cellsDermatan sulfateTNF-αfluorescein isothiocyanateMatrix metalloproteinase-2Polyelectrolyte complexesDifferential interference contrast microscopyZeta potentialDynamic Light ScatteringChitosanGlycosaminoglycans
Related Topics
Physical Sciences and Engineering
Chemistry
Organic Chemistry
Authors
Rita Y. Rasente, Julieta C. Imperiale, Juan M. Lázaro-MartÃnez, Luciana Gualco, Roxana Oberkersch, Alejandro Sosnik, Graciela C. Calabrese,