articleTop 10% cited
An Alizarin red-based assay of mineralization by adherent cells in culture: comparison with cetylpyridinium chloride extraction
Analytical Biochemistry · 2004 · Vol. 329(1) · pp. 77–84
Carl A. Gregory(Tulane University)William Gunn(Tulane University)Alexandra Peister(Tulane University)Darwin J. Prockop✉(Tulane University)
3D Printing in Biomedical ResearchMolecular Biology Techniques and ApplicationsViral Infectious Diseases and Gene Expression in InsectsALIZARIN REDChromatographyChemistryCetylpyridinium chlorideExtraction (chemistry)MonolayerMineralization (soil science)ColorimetryStainingBiochemistry
MeSH terms
AnthraquinonesArsenazo IIIBone Marrow CellsCalciumCell AdhesionCell DifferentiationCell LineCells, CulturedCetylpyridiniumHumansSpectrophotometry
Funding
- National Institutes of Health
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7.96
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References
Donor variation in the growth properties and osteogenic potential of human marrow stromal cells
Journal of Cellular Biochemistry · 1999 · 506 citations
Propagation and senescence of human marrow stromal cells in culture: a simple colony‐forming assay identifies samples with the greatest potential to propagate and differentiate
British Journal of Haematology · 1999 · 879 citations
ON THE HISTORY AND MECHANISM OF ALIZARIN AND ALIZARIN RED S STAINS FOR CALCIUM
Journal of Histochemistry & Cytochemistry · 1969 · 406 citations
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