An efficient one-pot synthesis and docking studies of bioactive new antiproliferative dispiro[oxindole/acenaphthylenone‒benzofuranone] pyrrolidine scaffolds

A new and efficient method has been developed to synthesize dispiro[oxindole/acenaphthylenone-benzofuranone]pyrrolidine compounds. This is done by triggering the 1,3-dipolar cycloaddition reaction of azomethine ylides by reacting isatin/acenaphthoquinone with L-picolinic acid/L-proline/sarcosine/L-t...

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Veröffentlicht in:Molecular diversity 2024-10, Vol.28 (5), p.3165-3180
Hauptverfasser: Sutariya, Tushar R., Brahmbhatt, Gaurangkumar C., Atara, Hiralben D., Parmar, Narsidas J., RajniKant, Gupta, Vivek K., Lagunes, Irene, Padrón, José M., Murumkar, Prashant R., Sharma, Mayank Kumar, Yadav, Mange Ram
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Sprache:eng
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Zusammenfassung:A new and efficient method has been developed to synthesize dispiro[oxindole/acenaphthylenone-benzofuranone]pyrrolidine compounds. This is done by triggering the 1,3-dipolar cycloaddition reaction of azomethine ylides by reacting isatin/acenaphthoquinone with L-picolinic acid/L-proline/sarcosine/L-thioproline/tetrahydroisoquinolines, in a highly regioselective manner in an ionic liquid [DBU][Ac] with 4′-chloro-auron[2-(4-chlorobenzylidene)benzofuran-3(2H)-one]. Single-crystal X-ray diffraction data support the proposed structures of the new compounds. The heterocycles derived from amino acids such as L-picolinic acid, L-proline, and L-thioproline showed significant inhibitory effects against six human solid tumors, including lung, breast, cervix, colon, and others. These new structures were also tested in the active sites of the MDM2 receptor to further study their antiproliferative effects.
ISSN:1381-1991
1573-501X
DOI:10.1007/s11030-023-10741-4