Date published: 2026-4-25

1-800-457-3801

SCBT Portrait Logo
Seach Input

Azithromycin-d3 (CAS 163921-65-1)

5.0(1)
Write a reviewAsk a question

See product citations (6)

Alternate Names:
CP-62993-d3; XZ-450-d3; Azitrocin-d3; Ribotrex-d3; Sumamed-d3; Trozocina-d3; Zithromaz-d3; Zitromax-d3
Application:
Azithromycin-d3 is a semi-synthetic macrolide antibiotic
CAS Number:
163921-65-1
Purity:
≥98%
Molecular Weight:
749.12 (unlabeled)
Molecular Formula:
C38H69D3N2O12
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

QUICK LINKS

Azithromycin-d3 is a stable isotope of azithromycin, traditionally associated with bacterial interaction studies. It is a macrolide antibiotic that works by inhibiting the growth of bacteria. Azithromycin-d3 is structurally similar to azithromycin, with the addition of three deuterium atoms. This stable isotope that may be used for pharmacokinetic studies to track the distribution and metabolism of azithromycin. Utilizing azithromycin-d3 facilitates the exploration of its interactions and processing within various biological systems. This can provide insights into the pharmacokinetics and pharmacodynamics of azithromycin, which can ultimately lead to the development of more effective studies for bacterial infections. Azithromycin-d3 may be useful in the field of biochemistry, allowing the study the behavior of azithromycin.


Azithromycin-d3 (CAS 163921-65-1) References

  1. The fate of selected micropollutants in a single-house MBR.  |  Abegglen, C., et al. 2009. Water Res. 43: 2036-46. PMID: 19269669
  2. Fully automated determination of 74 pharmaceuticals in environmental and waste waters by online solid phase extraction-liquid chromatography-electrospray-tandem mass spectrometry.  |  López-Serna, R., et al. 2010. Talanta. 83: 410-24. PMID: 21111154
  3. Comparison of azithromycin pharmacokinetics following single oral doses of extended-release and immediate-release formulations in children with acute otitis media.  |  Liu, P., et al. 2011. Antimicrob Agents Chemother. 55: 5022-6. PMID: 21859932
  4. Determination of pharmaceuticals in groundwater collected in five cemeteries' areas (Portugal).  |  Paíga, P. and Delerue-Matos, C. 2016. Sci Total Environ. 569-570: 16-22. PMID: 27328395
  5. Occurrence, distribution, ecological and resistance risks of antibiotics in surface water of finfish and shellfish aquaculture in Bangladesh.  |  Hossain, A., et al. 2017. Chemosphere. 188: 329-336. PMID: 28888121
  6. Occurrence and ecological risk of pharmaceuticals in river surface water of Bangladesh.  |  Hossain, A., et al. 2018. Environ Res. 165: 258-266. PMID: 29734026
  7. A strategy for untargeted screening of macrolides and metabolites in bass by liquid chromatography coupled to quadrupole orbitrap mass spectrometry.  |  Jia, W., et al. 2018. Food Chem. 262: 110-117. PMID: 29751897
  8. Assessment of full-scale tertiary wastewater treatment by UV-C based-AOPs: Removal or persistence of antibiotics and antibiotic resistance genes?  |  Rodríguez-Chueca, J., et al. 2019. Sci Total Environ. 652: 1051-1061. PMID: 30586792
  9. Detection of azithromycin residue in broiler feathers by liquid chromatography-tandem mass spectrometry.  |  Xiang, JJ., et al. 2020. J Chromatogr B Analyt Technol Biomed Life Sci. 1152: 122225. PMID: 32531642
  10. Multiantibiotic residues in commercial fish from Argentina. The presence of mixtures of antibiotics in edible fish, a challenge to health risk assessment.  |  Griboff, J., et al. 2020. Food Chem. 332: 127380. PMID: 32603916
  11. A LC-MS/MS validated method for determination of azithromycin in human tears and its application to an ocular pharmacokinetic study.  |  Wu, F., et al. 2020. Pharmazie. 75: 478-482. PMID: 33305720
  12. Occurrence, Distribution, and Ecological Risk Assessment of Antibiotics in Selected Urban Lakes of Hanoi, Vietnam.  |  Duong, HA., et al. 2021. J Anal Methods Chem. 2021: 6631797. PMID: 33777476
  13. Analysis of multiclass antibiotic residues in urban wastewater in Tunisia  |  Harrabi, M., Della Giustina, S. V., Aloulou, F., Rodriguez-Mozaz, S., Barceló, D., & Elleuch, B. 2018. Environmental Nanotechnology, Monitoring & Management. 10: 163-170.

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Azithromycin-d3, 1 mg

sc-217686
1 mg
$307.00

Azithromycin-d3, 10 mg

sc-217686A
10 mg
$2086.00