Identification of novel osteogenic compounds by an ex-vivo sp7: Luciferase zebrafish scale assay
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Publication date
2015-05-01
Authors
de Vrieze, Erik
Zethof, Jan
Schulte-Merker, Stefan
Flik, Gert
Metz, Juriaan R.
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Document Type
Article
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taverne
Abstract
Tight interactions among different cell types contributing to bone formation are of key importance in the maintenance of bone homeostasis. Based on the high similarity in responses to (anti)osteogenic signals between zebrafish scales and mammalian bone, we developed and validated a model to screen large numbers of compounds using ex-vivo cultured scales of a sp7:luciferase transgenic zebrafish. This model combines the high predictive value of explant cultures with quick, sensitive, and quantifiable readout converging the effects via various pathways including WNT-signaling, to SP7/osterix promoter activity. Sp7 is pivotal in osteoblast differentiation and activity and its promoter activity provides an excellent surrogate for sp7 expression. Bmp-2a was shown to dose-dependently increase sp7-driven luciferase activity ex vivo. Next, we identified novel effects on bone for 51.7% of the compounds from a small library of WNT-signaling modulators, including a strong osteogenic effect for niclosamide. From all previously characterized compounds, the effect on bone was correctly predicted for 70% of compounds, resulting in a 7% false positive- and 21% false negative rate. The proposed sp7:luciferase zebrafish scale model is unique, powerful and efficient new tool to assess compounds with osteogenic effects, prior to further testing in rodents.
Keywords
Bone, Drug design, Elasmoid scales, Osteoblast, Sp7, Zebrafish, Taverne, Physiology, Endocrinology, Diabetes and Metabolism, Histology, General Medicine, Journal Article, Research Support, Non-U.S. Gov't
Citation
de Vrieze, E, Zethof, J, Schulte-Merker, S, Flik, G & Metz, J R 2015, 'Identification of novel osteogenic compounds by an ex-vivo sp7 : Luciferase zebrafish scale assay', Bone, vol. 74, pp. 106-113. https://doi.org/10.1016/j.bone.2015.01.006