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Highly Efficient Chemoselective Synthesis of Pyrrolo[2,3-c]pyrazole Bearing Oxindole via Sequential Condensation-Michael Addition-Intramolecular Cyclization Reactions

机译:通过顺序凝结 - 迈克尔附加分子化环化反应通过顺序缩合 - 迈克尔含氧吲哚的高效化学选择性合成吡咯并[2,3-C]吡唑亚氧吲哚

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An efficient and highly chemoselective approach for the synthesis of novel scaffolds based on pyrrolo[2,3-c]pyrazole bearing oxindole is accomplished by the acid-promoted sequential reactions between benzoylacetonitriles, phenylhydrazine, and 3-phenacylideneoxindoles as readily available starting materials. This value structure is dexterously embraced with oxindole, pyrrole, and pyrazole heterocycles, which are famous for their enriched biological properties. Besides, this is an eco-friendly and atom-economy approach, and water is the only side product of the reaction. In this protocol, the requirement of column chromatography is completely avoided, and the products were isolated by recrystallization in crude reactions. These compounds due to their excellent fluorescence features and bioactive scaffolds may be attracted great interest in biomedical applications and clinical diagnostics in the future.
机译:基于吡咯的新型支架合成基于吡咯烷吡唑含氧吲哚的高效且高度化学选择方法是通过苯甲酰丙酮腈,苯基肼和3-苯基酰胺氧吲哚之间的酸促进的顺序反应来实现,如容易获得的原料。 该值结构具有氧吲哚,吡咯和吡唑杂环,其以其富集的生物学特性而闻名。 此外,这是一种环保的和原子经济性的方法,水是反应的唯一副产品。 在该方案中,完全避免了柱色谱的要求,通过在粗反应中重结晶分离产物。 这些化合物由于它们优异的荧光特征和生物活性支架而可能引起对未来生物医学应用和临床诊断的巨大兴趣。

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