Cas no 69340-07-4 (1,4-Dinitrosopiperazine-d8)

1,4-Dinitrosopiperazine-d8 is a deuterated analog of 1,4-dinitrosopiperazine, where eight hydrogen atoms are replaced with deuterium. This isotopic labeling enhances its utility in mass spectrometry and NMR-based studies, providing improved signal resolution and reduced background interference. The compound is particularly valuable in metabolic and pharmacokinetic research, where precise tracking of molecular pathways is essential. Its stable isotopic incorporation ensures minimal impact on chemical reactivity while enabling accurate quantification in complex biological matrices. Researchers favor this labeled standard for its reliability in tracer experiments and mechanistic studies involving nitrosamine chemistry. The high isotopic purity (>98%) further ensures consistency in analytical applications.
1,4-Dinitrosopiperazine-d8 structure
1,4-Dinitrosopiperazine-d8 structure
Product Name:1,4-Dinitrosopiperazine-d8
CAS No:69340-07-4
MF:C4H8N4O2
MW:152.181213378906
CID:973473
Update Time:2025-06-10

1,4-Dinitrosopiperazine-d8 Chemical and Physical Properties

Names and Identifiers

    • 1,4-Dinitrosopiperazine-d8
    • 1,4-Dinitrosopiperazine-d8100μg
    • CID 121487925
    • N,N'-Dinitrosopiperazine-d8
    • [2H8]-1,4-Dinitrosopiperazine
    • Inchi: 1S/C4H8N4O2/c9-5-7-1-2-8(6-10)4-3-7/h1-4H2/i1D2,2D2,3D2,4D2
    • InChI Key: WNSYEWGYAFFSSQ-SVYQBANQSA-N
    • SMILES: O=NN1C([2H])([2H])C([2H])([2H])N(C([2H])([2H])C1([2H])[2H])N=O

Computed Properties

  • Hydrogen Bond Donor Count: 0
  • Hydrogen Bond Acceptor Count: 6
  • Heavy Atom Count: 10
  • Rotatable Bond Count: 0
  • Complexity: 115
  • XLogP3: -0.8
  • Topological Polar Surface Area: 65.3

Experimental Properties

  • Melting Point: 175-178°C
  • Solubility: Chloroform (Slightly, Sonicated), Methanol (Slightly, Sonicated)

1,4-Dinitrosopiperazine-d8 Security Information

  • Storage Condition:-20°C Freezer

1,4-Dinitrosopiperazine-d8 Pricemore >>

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Additional information on 1,4-Dinitrosopiperazine-d8

Comprehensive Analysis of 1,4-Dinitrosopiperazine-d8 (CAS No. 69340-07-4): Applications and Research Insights

1,4-Dinitrosopiperazine-d8 (CAS No. 69340-07-4) is a deuterated derivative of 1,4-dinitrosopiperazine, a compound widely utilized in biochemical and pharmaceutical research. This isotopically labeled variant is particularly valuable for mass spectrometry and nuclear magnetic resonance (NMR) studies, where precise molecular tracking is essential. The incorporation of deuterium atoms enhances the compound's stability and detection sensitivity, making it indispensable in metabolic pathway analysis and drug development.

Recent advancements in isotope labeling techniques have spurred interest in 1,4-Dinitrosopiperazine-d8, especially in the context of cancer research and neurodegenerative disease studies. Researchers are increasingly leveraging this compound to investigate protein interactions and cellular signaling mechanisms. Its role in stable isotope dilution assays (SIDA) has also gained traction, as it enables accurate quantification of biomarkers in complex biological matrices.

The growing demand for deuterated compounds like 1,4-Dinitrosopiperazine-d8 reflects broader trends in precision medicine and personalized therapeutics. With the rise of AI-driven drug discovery, scientists are combining computational models with experimental data to optimize the use of labeled analogs. This synergy has led to breakthroughs in understanding drug metabolism and toxicity profiles, addressing key challenges in modern pharmacology.

From an industrial perspective, 1,4-Dinitrosopiperazine-d8 is synthesized under stringent conditions to ensure high isotopic purity (>98%). Its applications extend to environmental science, where it aids in tracing pollutant degradation pathways. Additionally, the compound's compatibility with high-performance liquid chromatography (HPLC) and liquid chromatography-mass spectrometry (LC-MS) systems underscores its versatility in analytical workflows.

As regulatory agencies emphasize data reproducibility and method validation, the importance of reliable reference standards like 1,4-Dinitrosopiperazine-d8 cannot be overstated. Future research directions may explore its potential in multimodal imaging and theranostic applications, further solidifying its role in next-generation biomedical innovations.

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