CAS 68490-66-4: Antitumor Triazine - Imidazole Compound for Drug Research

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Author : Nina He
Update time : 2026-01-16 16:54:53

1,3,5-Triazine-2,4,6(1H,3H,5H)-trione, compound with 6-2-(2-methyl-1H-imidazol-1-yl)ethyl-1,3,5-triazine-2,4-diamine (1:1) (CAS 68490-66-4, molecular formula C12H16N10O3) is a white crystalline solid recognized for its structural stability and promising biological activity. Owing to its favorable solubility and chemical robustness, this compound has attracted significant interest in pharmaceutical research and advanced medicinal chemistry.

 

The molecular architecture combines a triazine core with an imidazole-containing side chain, creating a heterocyclic framework well suited for interaction with biological targets. This structural synergy supports its investigation as an antitumor agent, with multiple preclinical studies indicating notable activity against selected cancer cell lines. Its stability under standard laboratory conditions also makes it compatible with various formulation approaches and experimental drug delivery systems.

 

In chemical research, this compound serves as a valuable building block for the synthesis of more complex heterocyclic molecules. The presence of multiple nitrogen-rich functional groups enables further derivatization, allowing researchers to design and optimize analogs with enhanced biological performance. As a result, it is frequently used in structure-activity relationship (SAR) studies focused on oncology and antimicrobial discovery.

 

From a biological perspective, CAS 68490-66-4 has been investigated for its enzyme inhibition potential. The triazine and imidazole moieties are known to engage in hydrogen bonding and coordination interactions with enzyme active sites, supporting its evaluation as a lead compound in biochemical assays.

 

In medical research, this compound is primarily explored for its therapeutic potential, particularly in anticancer and antimicrobial applications. Early-stage studies suggest effectiveness against certain pathogens and tumor models, highlighting its relevance as a research intermediate in drug discovery pipelines.

 

Additionally, the compound has found niche applications in industrial and catalytic research, where its stable heterocyclic structure can facilitate specific chemical transformations. Overall, CAS 68490-66-4 represents a multifunctional research compound with significant value across chemistry, biology, and pharmaceutical development.

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