Product Description
4,6-Diamino-2-cyclopropylaminopyrimidine-5-carbonitrile 112636-83-6
AI Product Description
*The following content is generated by AI and is for reference only.
4,6-Diamino-2-cyclopropylaminopyrimidine-5-carbonitrile is a specialized heterocyclic organic compound characterized by its pyrimidine core substituted with two amino groups at the 4 and 6 positions, a cyclopropylamino moiety at the 2 position, and a nitrile group at the 5 position. This molecule belongs to the class of functionalized pyrimidines, which are structurally significant in medicinal chemistry due to their prevalence in bioactive scaffolds. While specific commercial availability may vary, this compound serves as a crucial intermediate in the synthesis of advanced pharmaceutical agents and agrochemicals. Its unique substitution pattern allows for versatile chemical modifications, enabling researchers to tailor molecular properties for specific biological targets.
In drug discovery, pyrimidine derivatives are frequently investigated for their potential as kinase inhibitors, antimicrobial agents, and anticancer therapeutics. The presence of the nitrile group offers a reactive handle for further derivatization, such as hydrolysis to carboxylic acids or reduction to amines, thereby expanding the library of accessible analogs. The cyclopropylamino group contributes steric bulk and lipophilicity, often enhancing membrane permeability and metabolic stability in lead optimization campaigns. Consequently, this compound is highly valued in process chemistry and fragment-based drug design strategies where building blocks with defined reactivity profiles are essential.
Although detailed regulatory data such as the exact CAS number requires verification against proprietary databases or recent literature updates, the structural identity remains consistent across chemical catalogs. Researchers utilize this material primarily in academic laboratories and industrial R&D settings to explore structure-activity relationships (SAR). Its application extends beyond pharmacology into materials science, where it may serve as a precursor for novel functional polymers or electronic materials possessing conjugated systems. Overall, 4,6-Diamino-2-cyclopropylaminopyrimidine-5-carbonitrile represents a versatile tool for synthetic chemists aiming to develop next-generation compounds with improved efficacy and safety profiles. As global demand for targeted therapies grows, intermediates like this continue to play an pivotal role in accelerating the pipeline from bench to bedside, facilitating the creation of safer and more effective treatments for various human diseases.