Acetyl-L-Carnitine-d3 HCl (N-methyl-d3) | CAS 1334532-17-0

$570.50

  • Pack size: 0.1g,For larger quantity, please enquire.
  • Availability: Lead time 4-6 weeks
  • Catalogue number: RM-D-089
  • Synonyms:  N-Methyl-d₃-L-carnitine acetate HCl
  • Price Match Policy: We match verified competitor quote prices.

OVERVIEW  of  Acetyl-L-Carnitine-d3 HCl (N-methyl-d3) | CAS 1334532-17-0
Acetyl-L-Carnitine-d₃ HCl (N-methyl-d₃) is a stable isotope-labeled derivative of acetyl-L-carnitine, a naturally occurring quaternary ammonium compound that facilitates acetyl group transport across mitochondrial membranes. In this deuterated form, three hydrogens on the N-methyl group of the carnitine moiety are replaced by deuterium atoms, introducing a +3 Da mass shift without altering the compound’s biochemical behavior.

This isotopic substitution makes Acetyl-L-Carnitine-d₃ HCl an ideal internal standard for LC-MS/MS analyses in metabolomics, clinical biochemistry, and neurochemical studies, where it enables precise quantification of acetyl-L-carnitine and related acylcarnitines in biological samples.


CHEMICAL INFORMATION

  • Name: Acetyl-L-Carnitine-d₃ hydrochloride

  • Molecular Formula: C₉H₁₆D₃NO₄·HCl

  • Molecular Weight: 242.71 g/mol

  • CAS Number: 1334532-17-0

  • Isotopic Enrichment: ≥ 98 atom % D

  • Chemical Class: Deuterated acylcarnitine; stable isotope-labeled metabolite

  • Stability: Stable under inert and dry conditions


APPLICATIONS  of  Acetyl-L-Carnitine-d3 HCl (N-methyl-d3) | CAS 1334532-17-0

  • Targeted Metabolomics:
    Used as a stable isotope-labeled internal standard for the accurate quantification of acetyl-L-carnitine and other acylcarnitines in plasma, serum, and tissue extracts using LC-MS/MS.

  • Clinical Diagnostics & Biomarker Research:
    Applied in the analysis of metabolic disorders, neurological diseases, and mitochondrial dysfunctions, where acetyl-L-carnitine levels serve as diagnostic biomarkers.

  • Neurochemical Studies:
    Supports investigations into neurotransmitter metabolism, energy regulation, and acetyl group transfer processes in brain tissues.

  • Mitochondrial Function & Energy Metabolism:
    Used to evaluate acetyl-CoA flux, fatty acid oxidation, and carnitine shuttle mechanisms in metabolic pathways.

  • Mass Spectrometry Calibration:
    Serves as a reference compound for retention time, ion response, and mass calibration in LC-MS/MS-based assays.


ADVANTAGES  of  Acetyl-L-Carnitine-d3 HCl (N-methyl-d3) | CAS 1334532-17-0

  • High isotopic enrichment ensures clear mass distinction from the native compound.

  • Chemically identical to the non-deuterated analog, maintaining chromatographic and ionization equivalence.

  • Non-radioactive, highly stable, and safe for analytical and research use.

  • Enhances data accuracy, reproducibility, and inter-laboratory comparability in quantitative assays.


HANDLING, STORAGE & SAFETY

  • Handling Precautions: Use standard laboratory safety practices. Avoid prolonged exposure to air and moisture.

  • Storage: Store at –20 °C in a dry, airtight container.

  • Safety: Non-hazardous under normal laboratory conditions.

  • Disposal: Dispose of in accordance with institutional and regional guidelines for organic laboratory chemicals.


QUALITY & SPECIFICATION

  • Chemical Purity: ≥ 98 %

  • Isotopic Enrichment: ≥ 98 atom % D

  • Water Content: ≤ 0.5 %

  • Form: Crystalline or lyophilized solid

  • Analytical Verification: Characterized by LC-MS and NMR spectroscopy

  • Documentation: Supplied with Certificate of Analysis (CoA) confirming isotopic enrichment and analytical purity


SUMMARY
Acetyl-L-Carnitine-d₃ HCl (N-methyl-d₃) | CAS 1334532-17-0 is a deuterated short-chain acylcarnitine standard designed for quantitative metabolomic and biochemical analysis. It exhibits identical biological and chromatographic properties to acetyl-L-carnitine, allowing accurate measurement of endogenous concentrations in metabolic, neurological, and clinical research contexts. Its high isotopic purity and stability make it an indispensable standard for LC-MS/MS-based quantification of acylcarnitines and related metabolites in complex biological matrices.

 

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