ATP release from osteoblasts is increased in response to mechanical loading by different amounts when grown in standard monolayer and novel 3D scaffolds
ATP release from osteoblasts is increased in response to mechanical loading by different amounts when grown in standard monolayer and novel 3D scaffolds
16-16
Rumney, R. M. H.
fa3de9f8-b604-44e2-9e72-3e57980ce67f
Sittichokechaiwut, A.
98c4a9c8-7c75-40be-86fe-d5724c8d9ba1
Reilly, G.
6549ae1a-0bfe-45e4-870b-fa5155022f9a
Gartland, A.
3cacfde2-abf7-45f7-b2fb-91102dfa86ab
1 July 2008
Rumney, R. M. H.
fa3de9f8-b604-44e2-9e72-3e57980ce67f
Sittichokechaiwut, A.
98c4a9c8-7c75-40be-86fe-d5724c8d9ba1
Reilly, G.
6549ae1a-0bfe-45e4-870b-fa5155022f9a
Gartland, A.
3cacfde2-abf7-45f7-b2fb-91102dfa86ab
Rumney, R. M. H., Sittichokechaiwut, A., Reilly, G. and Gartland, A.
(2008)
ATP release from osteoblasts is increased in response to mechanical loading by different amounts when grown in standard monolayer and novel 3D scaffolds.
Calcified Tissue International, 83 (1), .
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Published date: 1 July 2008
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Local EPrints ID: 497697
URI: http://eprints.soton.ac.uk/id/eprint/497697
ISSN: 0171-967X
PURE UUID: 49d8c727-cc71-44b8-ae27-662aa7110170
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Date deposited: 29 Jan 2025 18:28
Last modified: 30 Jan 2025 02:55
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Contributors
Author:
R. M. H. Rumney
Author:
A. Sittichokechaiwut
Author:
G. Reilly
Author:
A. Gartland
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