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Journal Article

Pathological calcification in canine tendon-derived cells is modulated by extracellular ATP

Danae E. Zamboulis; Neil Marr; Alaa Moustafa; Richard Meeson; Isabel R. Orriss; Chavaunne T. Thorpe
Veterinary Research Communications · Vol. 48, Issue 3 · pp. 1533-1543 · 2024

Abstract

Tendon calcification is a commonly associated with degenerative tendinopathy of the Achilles tendons in dogs. It is characterised by the formation of calcific deposits and is refractory to treatment, often re-forming after surgical removal. Little is known about its pathogenesis and therefore the aims of this study were to develop an in vitro model of canine tendon calcification and use this model to investigate mechanisms driving calcification. Cells from the canine Achilles tendon were cultured with different calcifying media to establish which conditions were best able to induce specific, cell-mediated calcification. Once optimum calcification conditions had been established, the effect of ATP treatment on calcification was assessed. Results revealed that 2 mM di-sodium phosphate combined with 2 mM calcium chloride provided the optimum calcifying conditions, increasing calcium deposition and expression of osteogenic-related genes similar to those observed in tendon calcification in vivo. ATP treatment inhibited calcification in a dose-dependent manner, reducing calcium deposition and increasing cell viability, while osteogenic-related genes were no longer upregulated. In conclusion, the in vitro model of canine tendon calcification developed in this study provides the ability to study mechanisms driving tendon calcification, demonstrating that ATP plays a role in modulating tendon calcification that should be explored further in future studies.

Bibliographic Information

JournalVeterinary Research Communications
PublisherSpringer
Publication Date2024-06-01
Publication Year2024
Volume48
Issue3
Pages1533-1543
Document TypeJournal Article
Print ISSN0165-7380
eISSN1573-7446
DOI10.1007/s11259-024-10331-1

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NARA Access Coverage1977-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11259
Publisher PageOpen Publisher Page
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