Date published: 2026-4-19

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Glycerol phosphate calcium salt (CAS 58409-70-4)

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Alternate Names:
Calcium glycerophosphate
Application:
Glycerol phosphate calcium salt is a component in a mineralization medium used to help differentiate osteoblasts
CAS Number:
58409-70-4
Purity:
≥99%
Molecular Weight:
210.14
Molecular Formula:
C3H7O6PCa
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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Glycerol phosphate calcium salt is a compound frequently used in the field of biochemistry and cell biology, particularly in studies related to mineralization and bone tissue engineering. This compound is employed to investigate the mechanisms of calcium phosphate deposition, which is fundamental to the formation of bone and teeth. It serves as a source of calcium and phosphate ions in various in vitro systems, aiding in the examination of osteoblast activity and the biomineralization process. Researchers also utilize glycerol phosphate calcium salt to understand the role of calcium and phosphate in cellular signaling pathways and energy metabolism. The compound′s involvement in the synthesis of biocompatible cements and its potential to act as a precursor for the controlled release of phosphate and calcium ions in biological systems are also areas of active research.


Glycerol phosphate calcium salt (CAS 58409-70-4) References

  1. Preparation, degradation, and calcification of biodegradable polyurethane foams for bone graft substitutes.  |  Gorna, K. and Gogolewski, S. 2003. J Biomed Mater Res A. 67: 813-27. PMID: 14613229
  2. Structure and drug release in a crosslinked poly(ethylene oxide) hydrogel.  |  Shekunov, BY., et al. 2007. J Pharm Sci. 96: 1320-30. PMID: 17455363
  3. Enhanced biocompatibility of Co-Cr implant material by Ti coating and micro-arc oxidation.  |  Han, CM., et al. 2009. J Biomed Mater Res B Appl Biomater. 90: 165-70. PMID: 19085940
  4. Enzymatic mineralization of silk scaffolds.  |  Samal, SK., et al. 2014. Macromol Biosci. 14: 991-1003. PMID: 24610728
  5. Highly porous titanium (Ti) scaffolds with bioactive microporous hydroxyapatite/TiO2 hybrid coating layer  |  Lee, J. H., Kim, H. E., & Koh, Y. H. 2009. Materials Letters. 63(23): 1995-1998.
  6. Porous TiO2 films on Ti implants for controlled release of tetracycline-hydrochloride (TCH)  |  Han, C. M., Lee, E. J., Kim, H. E., Koh, Y. H., & Jang, J. H. 2011. Thin Solid Films. 519(22): 8074-8076.
  7. Production and evaluation of porous titanium scaffolds with 3-dimensional periodic macrochannels coated with microporous TiO2 layer  |  Jung, H. D., Kim, H. E., & Koh, Y. H. 2012. Materials Chemistry and Physics. 135(2-3): 897-902.
  8. Synthesis of Polyether Polyols using Glycerol Phosphate Disodium Salt as Initiator  |  Velencoso, M. M., Ramos, M. J., Garcia-Martinez, J. C., De Lucas, A., & Rodriguez, J. F. 2013. Journal of Macromolecular Science, Part A. 50(9): 905-913.
  9. Creation of hierarchical micro/nano-porous TiO2 surface layer onto Ti implants for improved biocompatibility  |  Han, C. M., Kim, H. E., & Koh, Y. H. 2014. Surface and Coatings Technology. 251: 226-231.
  10. Multi-scale porous Ti6Al4V scaffolds with enhanced strength and biocompatibility formed via dynamic freeze-casting coupled with micro-arc oxidation  |  Lee, H., Jang, T. S., Song, J., Kim, H. E., & Jung, H. D. 2016. Materials Letters. 185: 21-24.
  11. Study of Aliphatic Polyurethanes by the Low-Field 1H NMR Relaxometry Method with the Inversion of the Integral Transformation  |  Kucinska-Lipka, J., Sinyavsky, N., Mershiev, I., Kupriyanova, G., & Haponiuk, J. 2019. Applied Magnetic Resonance. 50: 347-356.
  12. Synthesis of aminophosphonate polyols and polyurethane foams with improved fire retardant properties  |  Borreguero, A. M., Velencoso, M. M., Rodríguez, J. F., Serrano, Á., Carrero, M. J., & Ramos, M. J. 2019. Journal of Applied Polymer Science. 136(29): 47780.
  13. Investigation of the Hydrophility of a Polyurethane Film by the Photoelasticity and Nuclear Magnetic Resonance Relaxometry Methods  |  Sinyavsky, N. Y., & Korneva, I. P. 2019. Optics and Spectroscopy. 127: 997-1001.

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Glycerol phosphate calcium salt, 100 g

sc-215077
100 g
$104.00

Glycerol phosphate calcium salt, 500 g

sc-215077A
500 g
$406.00