Glycosylation-driven interactions of nanoparticles with the extracellular matrix: Implications for inflammation and drug delivery
Journal article, 2025
Biomolecular corona
Nanoparticles
Extracellular matrix
Immunomodulation
Polymeric
Glycosylation
Protein corona
Author
Ula von Mentzer
Chalmers, Life Sciences, Chemical Biology
Fritjof Havemeister
Chalmers, Life Sciences, Chemical Biology
Loise Råberg
Chalmers, Life Sciences, Chemical Biology
Hemapriya Kothuru Chinnadurai
Chalmers, Life Sciences, Chemical Biology
Gizem Erensoy
Chalmers, Life Sciences, Chemical Biology
Elin Esbjörner Winters
Chalmers, Life Sciences, Chemical Biology
Alexandra Stubelius
Chalmers, Life Sciences, Chemical Biology
Biomaterials Advances
2772-9508 (eISSN)
Vol. 171 214230Enhancing Treatment Strategies for Osteoarthritis: Targeting Microenvironmental Proinflammatory Sialic Acid Signaling
Harald och Greta Jeanssons Stiftelse (JeanssonsStift.beslut2021), 2022-01-01 -- 2024-09-30.
Swedish Research Council (VR) (2021-01870), 2021-01-01 -- 2021-12-31.
Hur påverkar sockerstrukturer i brosket inflammationen vid artros?
Reumatikerförbundet (R-981253), 2023-04-01 -- 2024-12-31.
Gender Initiative for Excellence (Genie)
The Chalmers University Foundation, 2019-01-01 -- 2028-12-31.
Sialic Acid-Mediated Pathogenic Mechanisms in Osteoarthritis
Konung Gustaf V:s 80-årsfond (FAI-2022-0872), 2023-06-01 -- 2024-12-31.
Precision Medicine for Rheumatoid Arhtritis: Utilizing Disease Mechanisms to Achieve Self-Adjusting Nanotherapeutics
Stiftelsen Anna-Greta och Holger Crafoords fond (CR2021-0024), 2021-10-01 -- 2023-08-15.
Subject Categories (SSIF 2025)
Molecular Biology
Biomaterials Science
DOI
10.1016/j.bioadv.2025.214230
PubMed
39983501