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Liposomal aggregates sustain the release of rapamycin and protect cartilage from friction

Bordon, Gregor; Ramakrishna, Shivaprakash N; Edalat, Sam G; Eugster, Remo; Arcifa, Andrea; Vermathen, Martina; Aleandri, Simone; Bertoncelj, Mojca Frank; Furrer, Julien; Vermathen, Peter; Isa, Lucio; Crockett, Rowena; Distler, Oliver; Luciani, Paola (2023). Liposomal aggregates sustain the release of rapamycin and protect cartilage from friction. Journal of Colloid and Interface Science, 650(Part B):1659-1670.

Abstract

Liposomes show promise as biolubricants for damaged cartilage, but their small size results in low joint and cartilage retention. We developed a zinc ion-based liposomal drug delivery system for local osteoarthritis therapy, focusing on sustained release and tribological protection from phospholipid lubrication properties. Our strategy involved inducing aggregation of negatively charged liposomes with zinc ions to extend rapamycin (RAPA) release and improve cartilage lubrication. Liposomal aggregation occurred within 10 min and was irreversible, facilitating excess cation removal. The aggregates extended RAPA release beyond free liposomes and displayed irregular morphology influenced by RAPA. At nearly 100 µm, the aggregates were large enough to exceed the previously reported size threshold for increased joint retention. Tribological assessment on silicon surfaces and ex vivo porcine cartilage revealed the system's excellent protective ability against friction at both nano- and macro-scales. Moreover, RAPA was shown to attenuate the fibrotic response in human OA synovial fibroblasts. Our findings suggest the zinc ion-based liposomal drug delivery system has potential to enhance OA therapy through extended release and cartilage tribological protection, while also illustrating the impact of a hydrophobic drug like RAPA on liposome aggregation and morphology.

Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:04 Faculty of Medicine > University Hospital Zurich > Rheumatology Clinic and Institute of Physical Medicine
Dewey Decimal Classification:610 Medicine & health
Scopus Subject Areas:Physical Sciences > Electronic, Optical and Magnetic Materials
Physical Sciences > Biomaterials
Physical Sciences > Surfaces, Coatings and Films
Physical Sciences > Colloid and Surface Chemistry
Language:English
Date:16 July 2023
Deposited On:17 Aug 2023 18:09
Last Modified:29 Dec 2024 02:39
Publisher:Elsevier
ISSN:0021-9797
OA Status:Hybrid
Free access at:Publisher DOI. An embargo period may apply.
Publisher DOI:https://doi.org/10.1016/j.jcis.2023.07.087
PubMed ID:37494862
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  • Language: English
  • Licence: Creative Commons: Attribution 4.0 International (CC BY 4.0)

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