Date published: 2026-1-23

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Cytidine 5′-triphosphate disodium salt (CAS 36051-68-0)

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Alternate Names:
CTP; Disodium 5′-O-[({hydroxy[(hydroxyphosphinato)oxy]phosphoryl}oxy)phosphinato]cytidine
Application:
Cytidine 5′-triphosphate disodium salt is a P2X purinergic receptor agonist
CAS Number:
36051-68-0
Purity:
≥97%
Molecular Weight:
527.12
Molecular Formula:
C9H14N3Na2O14P3
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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Cytidine 5′-triphosphate disodium salt is a P2X4 (P2X4 purinergic receptor) agonist. Cytidine-5′-triphosphoric acid disodium salt, a naturally occurring nucleoside triphosphate, plays a vital role in nucleic acid metabolism across organisms. It serves as a component for the synthesis of DNA and RNA, contributing to various biochemical processes. Moreover, Cytidine-5′-triphosphoric acid disodium salt actively participates in the regulation of gene expression, protein synthesis, and essential cellular functions. Through in vitro studies, this compound has been instrumental in unraveling the mechanisms of various enzymes involved in nucleic acid metabolism, such as DNA polymerases, RNA polymerases, and related enzymes. Furthermore, Cytidine-5′-triphosphoric acid disodium salt has been employed to investigate the structure and functionality of proteins engaged in DNA replication, transcription, and translation.


Cytidine 5′-triphosphate disodium salt (CAS 36051-68-0) References

  1. Secretion from dense granules: luminescence method for adenine nucleotides.  |  Heath, MF. 2004. Methods Mol Biol. 272: 89-93. PMID: 15226536
  2. Spectrophotometric studies of molecular complex formation between water-soluble cobalt(II) Schiff base complex and nucleotides in mixed solvent systems.  |  Boghaei, DM. and Gharagozlou, M. 2005. Spectrochim Acta A Mol Biomol Spectrosc. 61: 3061-5. PMID: 16165052
  3. Glycan microarray screening assay for glycosyltransferase specificities.  |  Peng, W., et al. 2013. Methods Mol Biol. 1022: 1-14. PMID: 23765649
  4. Separation of nucleotides by hydrophilic interaction chromatography using the FRULIC-N column.  |  Padivitage, NL., et al. 2013. Anal Bioanal Chem. 405: 8837-48. PMID: 23995506
  5. Microwave-assisted fabrication of strontium doped apatite coating on Ti6Al4V.  |  Zhou, H., et al. 2015. Mater Sci Eng C Mater Biol Appl. 56: 174-80. PMID: 26249578
  6. Effect of structure variation of the aptamer-DNA duplex probe on the performance of displacement-based electrochemical aptamer sensors.  |  Pang, J., et al. 2016. Biosens Bioelectron. 77: 174-81. PMID: 26406458
  7. A sandwich dipstick assay for ATP detection based on split aptamer fragments.  |  Zhu, C., et al. 2016. Anal Bioanal Chem. 408: 4151-8. PMID: 27052777
  8. Enhancing the response rate of strand displacement-based electrochemical aptamer sensors using bivalent binding aptamer-cDNA probes.  |  Zhang, Z., et al. 2018. Biosens Bioelectron. 103: 39-44. PMID: 29278811
  9. Photoinduced electron transfer from polymer-templated Ag nanoclusters to G-quadruplex-hemin complexes for the construction of versatile biosensors and logic gate applications.  |  Qu, F., et al. 2018. Anal Bioanal Chem. 410: 2211-2219. PMID: 29387952
  10. New detection method for nucleoside triphosphates based on carbon dots: The distance-dependent singlet oxygen trapping.  |  Ding, Y., et al. 2018. Anal Chim Acta. 1031: 145-151. PMID: 30119732
  11. Ligand-protein target screening from cell matrices using reactive desorption electrospray ionization-mass spectrometry via a native-denatured exchange approach.  |  Zheng, Q., et al. 2019. Analyst. 144: 512-520. PMID: 30489587
  12. A highly sensitive and rapid enzymatic method using a biochemical automated analyzer to detect inorganic pyrophosphate generated by nucleic acid sequence-based amplification.  |  Isobe, A., et al. 2020. Clin Chim Acta. 511: 298-305. PMID: 33096031
  13. A photo-regulated aptamer sensor for spatiotemporally controlled monitoring of ATP in the mitochondria of living cells.  |  Hong, S., et al. 2019. Chem Sci. 11: 713-720. PMID: 34123044
  14. Dual-Channel Fluorescent Probe for the Simultaneous Monitoring of Peroxynitrite and Adenosine-5'-triphosphate in Cellular Applications.  |  Wu, L., et al. 2022. J Am Chem Soc. 144: 174-183. PMID: 34931825

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Cytidine 5′-triphosphate disodium salt, 500 mg

sc-217995
500 mg
$114.00

Cytidine 5′-triphosphate disodium salt, 1 g

sc-217995A
1 g
$218.00

Cytidine 5′-triphosphate disodium salt, 10 g

sc-217995B
10 g
$468.00