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R-10037

Vitamin B5 (13C3, 15N)

Stable isotope standard for analytical research and method development.

Module Type
Stable Isotope Standards
Category
Metabolites
CAS
2483830-09-5
PubChem CID
171042872
Molecular Formula
C12[13C]6H36Ca[15N]2O11
Molecular Weight
504.51
AI Isotope Property & Application AnalysisShow

Isotope Summary

Labels
15N2, 13C6
Labeled atoms
8
Isotope positions
Partially confirmed in structure
Calculation reliability
Medium, some information should be confirmed

Mass & MS Parameters

Unlabeled exact mass
496.194501 Da
Labeled exact mass
504.2087 Da
Exact mass shift
8.014199 Da
Nominal mass shift
8
Ionm/zStatus
[M+H]+505.215976Theoretical
[M+Na]+527.197918Theoretical
[M+NH4]+522.242523Theoretical
[M-H]-503.201423Theoretical

Label Stability

Overall
Low risk
Calculation reliability
Medium, some information should be confirmed
  • Skeleton-bound 13C/15N labels are generally non-exchangeable under normal analytical handling.

Internal Standard Suitability

Rating
High
Chromatographic similarity
Expected high similarity
Natural isotope overlap
Low
  • Exact mass separation is 8.014199 Da; MS channel separation should be verified in the final method.
  • The unlabeled parent mass was derived from the isotope structure because a curated parent structure was not matched.
  • Overall suitability: High.

Recommended Applications

LC-MS/MS Quantitative Internal Standard
Recommended

LC-MS/MS Quantitative Internal Standard is classified as Recommended based on isotope mapping, mass separation, and label-stability rules.

Isotope Dilution Mass Spectrometry
Recommended

Isotope Dilution Mass Spectrometry is classified as Recommended based on isotope mapping, mass separation, and label-stability rules.

Metabolic Tracing
Possible

Metabolic Tracing is classified as Possible based on isotope mapping, mass separation, and label-stability rules.

Bioanalytical Method Development
Recommended

Bioanalytical Method Development is classified as Recommended based on isotope mapping, mass separation, and label-stability rules.

AI Interpretation

This analysis is based on isotope-aware structure data. The compound contains 15N2, 13C6, with an exact mass shift of 8.014199 Da. Label stability is assessed as Low risk, and internal-standard suitability is High. These results support analytical method development and require experimental validation.

AI-assisted analytical guidance is intended for method-development support. Actual isotope stability, chromatographic behavior, fragmentation and MRM transitions should be experimentally validated.