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Synthesis of Polyheterocyclic Pyrrolo[3,4-b]pyridin-5-ones via a One-Pot (Ugi-3CR/aza Diels-Alder/N-acylation/aromatization/SN2) Process. A Suitable Alternative towards Novel Aza-Analogues of Falipamil.


ABSTRACT: We describe the one-pot synthesis of twenty polyheterocyclic pyrrolo[3,4-b]pyridin-5-ones via a cascade process (Ugi-3CR/aza Diels-Alder/N-acylation/aromatization) in 20 to 95% overall yields, as well as four pharmacologically promising analogues via an improved cascade process (Ugi-3CR/aza Diels-Alder/N-acylation/aromatization/SN2): two piperazine-linked pyrrolo[3,4-b]pyridin-5-ones in 33 and 34%, and a couple of Falipamil aza-analogues in 30 and 35% overall yields. It is worth highlighting the good substrate scope found, because final products are furnished with alkyl, aryl, and heterocyclic substituents. The use of chain-ring tautomerizable isocyanides (as key reagents for the Ugi-type three component reaction) allowed for a rapid and efficient assembly of the polysubstituted oxindoles, which were used in situ toward the complex products, conferring features like robustness, sustainability, and the one-pot approach to this synthetic methodology.

SUBMITTER: Zamudio-Medina A 

PROVIDER: S-EPMC6017480 | biostudies-literature | 2018 Mar

REPOSITORIES: biostudies-literature

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Synthesis of Polyheterocyclic Pyrrolo[3,4-b]pyridin-5-ones via a One-Pot (Ugi-3CR/aza Diels-Alder/N-acylation/aromatization/S<sub>N</sub>2) Process. A Suitable Alternative towards Novel Aza-Analogues of Falipamil.

Zamudio-Medina Angel A   García-González Ailyn N AN   Herrera-Carrillo Genesis K GK   Zárate-Zárate Daniel D   Benavides-Macías Adriana A   Tamariz Joaquín J   Ibarra Ilich A IA   Islas-Jácome Alejandro A   González-Zamora Eduardo E  

Molecules (Basel, Switzerland) 20180327 4


We describe the one-pot synthesis of twenty polyheterocyclic pyrrolo[3,4-<i>b</i>]pyridin-5-ones <i>via</i> a cascade process (Ugi-3CR/aza Diels-Alder/<i>N</i>-acylation/aromatization) in 20 to 95% overall yields, as well as four pharmacologically promising analogues <i>via</i> an improved cascade process (Ugi-3CR/aza Diels-Alder/<i>N</i>-acylation/aromatization/S<sub>N</sub>2): two piperazine-linked pyrrolo[3,4-<i>b</i>]pyridin-5-ones in 33 and 34%, and a couple of Falipamil aza-analogues in 30  ...[more]

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