Cas no 42150-38-9 (Hexadecanedioic Acid Mono-L-carnitine Ester Chloride)

Hexadecanedioic Acid Mono-L-carnitine Ester Chloride structure
42150-38-9 structure
Product Name:Hexadecanedioic Acid Mono-L-carnitine Ester Chloride
CAS No:42150-38-9
MF:C23H43NO6
MW:429.590627908707
CID:927825
PubChem ID:566787
Update Time:2025-07-22

Hexadecanedioic Acid Mono-L-carnitine Ester Chloride Chemical and Physical Properties

Names and Identifiers

    • 3-carboxy-2-[(15-carboxy-1-oxopentadecyl)oxy]-N,N,N-trimethyl- (2R)-1-Propanaminium,
    • Hexadecanedioic Acid Mono-L-carnitine Ester Chloride
    • [(2R)-3-carboxy-2-(15-carboxypentadecanoyloxy)propyl]-trimethylazanium
    • Q27140287
    • 3-[(15-Carboxypentadecanoyl)oxy]-4-(trimethylammonio)butanoate
    • 3-(15-carboxypentadecanoyloxy)-4-(trimethylazaniumyl)butanoate
    • (R)-3-carboxy-2-[(15-carboxy-1-oxopentadecyl)oxy]-N,N,N-trimethyl-1-Propanaminium inner salt
    • CHEBI:73081
    • (15-carboxypentadecanoyl)carnitine
    • O-(15-carboxypentadecanoyl)carnitine
    • 3-[(15-carboxypentadecanoyl)oxy]-4-(trimethylazaniumyl)butanoate
    • 42150-38-9
    • Inchi: 1S/C23H43NO6/c1-24(2,3)19-20(18-22(27)28)30-23(29)17-15-13-11-9-7-5-4-6-8-10-12-14-16-21(25)26/h20H,4-19H2,1-3H3,(H-,25,26,27,28)
    • InChI Key: UNHCPLSWMNPZTD-UHFFFAOYSA-N
    • SMILES: O(C(CCCCCCCCCCCCCCC(=O)O)=O)C(CC(=O)[O-])C[N+](C)(C)C

Computed Properties

  • Exact Mass: 429.30903809g/mol
  • Monoisotopic Mass: 429.30903809g/mol
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 1
  • Hydrogen Bond Acceptor Count: 6
  • Heavy Atom Count: 30
  • Rotatable Bond Count: 20
  • Complexity: 481
  • Covalently-Bonded Unit Count: 1
  • Defined Atom Stereocenter Count: 0
  • Undefined Atom Stereocenter Count : 1
  • Defined Bond Stereocenter Count: 0
  • Undefined Bond Stereocenter Count: 0
  • XLogP3: 5.9
  • Topological Polar Surface Area: 104?2

Hexadecanedioic Acid Mono-L-carnitine Ester Chloride Pricemore >>

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Hexadecanedioic Acid Mono-L-carnitine Ester Chloride Related Literature

Additional information on Hexadecanedioic Acid Mono-L-carnitine Ester Chloride

Comprehensive Overview of Hexadecanedioic Acid Mono-L-carnitine Ester Chloride (CAS No. 42150-38-9)

Hexadecanedioic Acid Mono-L-carnitine Ester Chloride (CAS No. 42150-38-9) is a specialized ester compound that has garnered significant attention in the fields of biochemistry, nutraceuticals, and pharmaceutical research. This compound combines the properties of hexadecanedioic acid, a long-chain dicarboxylic acid, with L-carnitine, a naturally occurring amino acid derivative essential for energy metabolism. The resulting ester, in its chloride form, exhibits unique physicochemical characteristics that make it a subject of interest for various applications, including dietary supplements, metabolic enhancers, and advanced drug formulations.

The growing demand for energy-boosting compounds and metabolic health solutions has positioned Hexadecanedioic Acid Mono-L-carnitine Ester Chloride as a promising candidate. With the rise of personalized nutrition and the increasing focus on mitochondrial function, researchers are exploring how this compound can support cellular energy production. Its dual functionality—derived from hexadecanedioic acid's role in lipid metabolism and L-carnitine's ability to transport fatty acids into mitochondria—makes it a compelling option for addressing modern health challenges like fatigue, exercise performance, and age-related metabolic decline.

From a structural perspective, Hexadecanedioic Acid Mono-L-carnitine Ester Chloride (CAS No. 42150-38-9) features a 16-carbon dicarboxylic acid backbone esterified with L-carnitine, forming a chloride salt. This configuration enhances its solubility and bioavailability, critical factors for its efficacy in biological systems. The compound's stability under physiological conditions further underscores its potential for oral and topical applications, aligning with current trends in sustainable drug delivery systems and nutraceutical innovation.

In the context of sports nutrition, Hexadecanedioic Acid Mono-L-carnitine Ester Chloride is being investigated for its potential to enhance endurance and recovery. Athletes and fitness enthusiasts are increasingly searching for natural performance enhancers, and this compound's ability to optimize fatty acid oxidation could provide a competitive edge. Additionally, its role in weight management formulations is being explored, as it may help modulate lipid metabolism and promote lean body mass retention—a hot topic in the health and wellness industry.

The pharmaceutical sector is also examining Hexadecanedioic Acid Mono-L-carnitine Ester Chloride for its therapeutic potential. Preliminary studies suggest it may support cardiovascular health by improving lipid profiles and reducing oxidative stress. These properties align with the growing consumer interest in heart-healthy supplements and functional ingredients. Furthermore, its compatibility with nanocarrier systems opens doors for advanced drug delivery applications, addressing the need for targeted and efficient therapies.

Quality and safety are paramount when discussing Hexadecanedioic Acid Mono-L-carnitine Ester Chloride (CAS No. 42150-38-9). Rigorous analytical methods, including HPLC and mass spectrometry, are employed to ensure its purity and consistency. As regulatory standards for nutraceutical ingredients become stricter, manufacturers are investing in high-quality synthesis and purification processes to meet global compliance requirements. This focus on quality assurance resonates with consumers who prioritize clean-label products and evidence-based formulations.

In summary, Hexadecanedioic Acid Mono-L-carnitine Ester Chloride represents a convergence of cutting-edge science and practical health applications. Its multifaceted benefits—from energy metabolism to therapeutic potential—make it a standout compound in today's research landscape. As scientific understanding deepens and consumer demand evolves, this ester is poised to play a pivotal role in shaping the future of nutritional science and biomedical innovation.

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