Methyl 2-ethoxybenzimidazole-7-carboxylate CAS:150058-27-8
Methyl 2-ethoxybenzimidazole-7-carboxylate is synthesized through organic reactions starting from commercially available precursors. The synthesis involves the construction of the benzimidazole ring system followed by the introduction of the ethoxy-carbonyl group. Precise control over reaction conditions ensures high regioselectivity and yield of the final product. Synthetic Routes The synthesis typically begins with the preparation of the benzimidazole core through condensation reactions, followed by the introduction of the ethoxy group. These steps are carefully controlled to achieve high purity and yield. The final compound is purified to meet the standards required for biological and pharmaceutical studies. Chemical Properties and Reactivity Methyl 2-ethoxybenzimidazole-7-carboxylate exhibits specific chemical properties due to its molecular structure. The benzimidazole core provides rigidity and hydrogen bonding capabilities, while the ethoxy group influences its electronic properties. These features dictate its reactivity in organic transformations and interactions with biological systems. Biological and Pharmacological Significance The compound shows potential biological activities, including antimicrobial and enzyme inhibitory properties. Its structural elements enable interactions with biological macromolecules, making it a candidate for therapeutic applications. By targeting specific enzymes or cellular processes, it holds promise in drug discovery and development. Applications in Medicinal Chemistry Methyl 2-ethoxybenzimidazole-7-carboxylate serves as a scaffold for designing analogs with enhanced pharmacological properties. Modifications around the benzimidazole and ethoxy groups can optimize potency, selectivity, and pharmacokinetic profiles, aiming to develop novel therapeutic agents with improved efficacy and reduced side effects. Conclusion Methyl 2-ethoxybenzimidazole-7-carboxylate is a significant compound in medicinal chemistry, characterized by its structural versatility and potential biological activities. Its synthesis pathways offer valuable insights into developing pharmaceuticals targeting various diseases. Ongoing research continues to explore its biological effects and expand its applications, highlighting its role in advancing drug discovery and development efforts.
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Composition | C11H12N2O3 |
Assay | 99% |
Appearance | white powder |
CAS No. | 150058-27-8 |
Packing | Small and bulk |
Shelf Life | 2 years |
Storage | Store in cool and dry area |
Certification | ISO. |