Cas no 22457-55-2 (Glyceric Acid 3-Phosphate Barium Salt)

Glyceric Acid 3-Phosphate Barium Salt is a biochemical reagent commonly used in enzymatic studies and metabolic research. Its key advantages include high purity and stability, making it suitable for precise experimental applications. The barium salt form enhances solubility control in aqueous solutions, facilitating its use in phosphorylation assays and glycolysis pathway investigations. This compound serves as an intermediate in carbohydrate metabolism, providing researchers with a reliable substrate for studying kinase and phosphatase activities. Its well-defined chemical properties ensure consistent performance in analytical and preparative procedures. Proper handling is recommended due to the presence of barium, requiring adherence to safety protocols.
Glyceric Acid 3-Phosphate Barium Salt structure
22457-55-2 structure
Product Name:Glyceric Acid 3-Phosphate Barium Salt
CAS No:22457-55-2
MF:C3H5BaO7P
MW:321.368358373642
CID:270527
PubChem ID:90788
Update Time:2025-05-20

Glyceric Acid 3-Phosphate Barium Salt Chemical and Physical Properties

Names and Identifiers

    • Propanoic acid,2-hydroxy-3-(phosphonooxy)-, barium salt (1:1)
    • 3-PHOSPHO-D-GLYCERIC ACID BARIUM SALT
    • 3-Phospho-D-glyceric Acid Barium Salt Dihydrate
    • 3-Phosphoglycericacidbariumsalt
    • Glyceric Acid 3-Phosphate Barium Salt
    • barium 3-phospho-d-glycerate
    • BARIUM 3-PHOSPHO-D-GLYCERATE DIHYDRATE
    • Einecs 245-012-9
    • Glyceric acid 3-(barium phosphate)
    • 3-Phosphoglyceric acid barium salt
    • barium(2+);(2-carboxy-2-hydroxyethyl) phosphate
    • 22457-55-2
    • CS-0114969
    • HY-113491A
    • 3-Phosphoglyceric acid (barium)
    • barium(2+) 2-hydroxy-3-(phosphonatooxy)propanoic acid
    • barium 2-carboxy-2-hydroxyethyl phosphate
    • Inchi: 1S/C3H7O7P.Ba/c4-2(3(5)6)1-10-11(7,8)9;/h2,4H,1H2,(H,5,6)(H2,7,8,9);/q;+2/p-2
    • InChI Key: IAFYHPGYCIOBCG-UHFFFAOYSA-L
    • SMILES: [Ba+2].P(=O)([O-])([O-])OCC(C(=O)O)O

Computed Properties

  • Exact Mass: 507.87500
  • Monoisotopic Mass: 321.882537g/mol
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 4
  • Hydrogen Bond Acceptor Count: 7
  • Heavy Atom Count: 12
  • Rotatable Bond Count: 4
  • Complexity: 171
  • Covalently-Bonded Unit Count: 2
  • Defined Atom Stereocenter Count: 0
  • Undefined Atom Stereocenter Count : 0
  • Defined Bond Stereocenter Count: 0
  • Undefined Bond Stereocenter Count: 0
  • Surface Charge: 0
  • Topological Polar Surface Area: 130

Experimental Properties

  • Color/Form: Undetermined 2. density (g/ml, 25/4 ℃)
  • Refractive Index: -7.5 ° (C=1, 1mol/L HCl)
  • PSA: 246.20000
  • LogP: -3.07180

Glyceric Acid 3-Phosphate Barium Salt Security Information

Glyceric Acid 3-Phosphate Barium Salt Pricemore >>

Related Categories No. Product Name Cas No. Purity Specification Price update time Inquiry
TRC
G598380-100mg
Glyceric Acid 3-Phosphate Barium Salt
22457-55-2
100mg
$110.00 2023-05-18
TRC
G598380-500mg
Glyceric Acid 3-Phosphate Barium Salt
22457-55-2
500mg
$253.00 2023-05-18
TRC
G598380-1g
Glyceric Acid 3-Phosphate Barium Salt
22457-55-2
1g
$ 340.00 2022-06-04
TRC
G598380-1000mg
Glyceric Acid 3-Phosphate Barium Salt
22457-55-2
1g
$414.00 2023-05-18

Additional information on Glyceric Acid 3-Phosphate Barium Salt

Comprehensive Analysis of Glyceric Acid 3-Phosphate Barium Salt (CAS No. 22457-55-2): Properties, Applications, and Research Insights

Glyceric Acid 3-Phosphate Barium Salt (CAS 22457-55-2) is a specialized biochemical compound with significant relevance in metabolic research and industrial applications. This barium salt derivative of glyceric acid 3-phosphate is widely studied for its role in glycolysis and gluconeogenesis pathways, making it a critical reagent in enzymology and cellular energy studies. Its unique chemical properties, including solubility and stability, have spurred interest in fields like nutraceutical formulation and biocatalyst development.

Recent trends highlight growing demand for phosphorylated intermediates like Glyceric Acid 3-Phosphate Barium Salt in sustainable biotechnology. Researchers are exploring its potential in green chemistry applications, such as enzymatic synthesis of biodegradable polymers. The compound’s compatibility with enzyme immobilization techniques aligns with the global shift toward eco-friendly industrial processes, addressing frequent search queries like "biodegradable metabolic intermediates" or "sustainable phosphate derivatives."

Structurally, this compound features a phosphate ester group at the C3 position of glyceric acid, chelated with barium ions for enhanced stability. Analytical techniques like NMR spectroscopy and HPLC-MS confirm its high purity (>98%), a key concern for laboratories seeking reliable biochemical standards. Users often search for "HPLC methods for phosphorylated compounds" or "barium salt characterization," reflecting the need for precise quality control protocols.

In pharmaceutical development, Glyceric Acid 3-Phosphate Barium Salt serves as a precursor for glycolytic pathway modulators. Its involvement in ATP production mechanisms has attracted attention in mitochondrial dysfunction research, particularly in studies related to age-related metabolic disorders. This connects with trending health topics like "cellular energy boosters" and "metabolic syndrome therapeutics," frequently queried in academic and healthcare circles.

The compound’s hygroscopic nature necessitates strict storage conditions (desiccated at -20°C), a practical consideration often searched as "stable storage of barium salts." Industrial applications leverage its metal-chelating properties in nutrient formulations, where it acts as a bioavailable phosphorus source. Manufacturers increasingly seek "non-toxic phosphate alternatives," positioning this compound as a viable option for functional food additives.

Ongoing studies investigate Glyceric Acid 3-Phosphate Barium Salt’s role in plant metabolism, responding to searches like "phosphorus signaling in crops." Its potential to enhance photosynthetic efficiency could contribute to agricultural biotechnology innovations, particularly in phosphorus-deficient soils—a critical issue in sustainable farming discussions.

From a regulatory perspective, the compound’s GRAS (Generally Recognized As Safe) status for research use meets stringent laboratory safety standards. Quality certifications like ISO 9001-compliant production processes are frequently emphasized in supplier documentation, addressing procurement officers’ queries about "certified biochemical reagents."

Emerging nanotechnology applications utilize this salt as a template for biomimetic mineralization, capitalizing on its anionic surface properties. Such interdisciplinary applications resonate with search trends like "bioinspired material synthesis," demonstrating how classical biochemicals enable cutting-edge innovations.

For analytical chemists, method development using Glyceric Acid 3-Phosphate Barium Salt requires attention to ion suppression effects in mass spectrometry—a technical nuance often searched as "MS analysis of barium complexes." The compound’s distinct fragmentation patterns serve as valuable references in metabolomic profiling studies.

Market analyses indicate steady growth in demand for high-purity biochemical salts, driven by expanding proteomics and metabolomics research. Suppliers increasingly highlight batch-to-batch consistency and traceability—key purchasing factors reflected in queries like "certificates of analysis for CAS 22457-55-2."

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