4.8 Article

Gold-Catalyzed Formal [4+2] Cycloaddition as Access to Antitumor-Active Spirocyclic Oxindoles from Alkynes and Isatin-Derived Ketimines

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WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.202304672

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Alkynes; Antitumor Activity; Gold Catalysis; Isatin-Derived Ketimines; Spirocarbamates

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Due to its excellent bioactivity profile, spirooxindole is widely used in pharmaceutical and synthetic chemistry. In this study, we developed an efficient method for the synthesis of highly functionalized spirooxindolocarbamates via a gold-catalyzed cycloaddition reaction. This protocol is compatible with various functional groups, uses readily available starting materials, and exhibits good antiproliferative activity on human tumor cell lines.
Due to its excellent bioactivity profile, which is increasingly utilized in pharmaceutical and synthetic chemistry, spirooxindole is an important core scaffold. We herein describe an efficient method for the construction of highly functionalized new spirooxindolocarbamates via a gold-catalyzed cycloaddition reaction of terminal alkynes or ynamides with isatin-derived ketimines. This protocol has a good functional group compatibility, uses readily available starting materials, mild reaction conditions, low catalyst loadings and no additives. It enables the transformation of various functionalized alkyne groups into cyclic carbamates. Gram-scale synthesis was achieved and DFT calculations verify the feasibility of the mechanistic proposal. Some of the target products exhibit good to excellent antiproliferative activity on human tumor cell lines. In addition, one of the most active compounds displayed a remarkable selectivity towards tumor cells over normal ones.

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