Spirooxindole Derivatives as Emerging Scaffolds in Drug Discovery: Synthetic Strategies, Structure-Activity Relationship, and Biological Activities.
Spirooxindoles are a class of spirocyclic scaffolds in drug discovery, as the rigid frame and well-defined substitution pattern can interact with various biological targets. Recent advances in synthetic methodologies, including multicomponent 1,3-dipolar cycloadditions, organocatalytic cascades, and one-pot protocols, have facilitated the efficient synthesis of a wide variety of derivatives for SAR studies. A diverse range of classes, including pyrrolidine, cyclopropyl carboxamide, carbamate, oxadiazoline, pyrrolizidine, and furan derivatives, show cytotoxicity in the submicromolar-to-low micromolar range with good selectivity. The SAR studies suggest that substitution on the isatin core generally enhances biological activity in individual series, especially with electron-withdrawing groups, but these effects are scaffold dependent. Furthermore, spirooxindole derivatives have been reported to show antibacterial activity, including TrpRS inhibition, antimicrobial, acetylcholinesterase inhibition, α-glucosidase inhibition, antiviral, and anticonvulsant activities. The recent patents, especially on MDM2 inhibitors and other anticancer agents with nanomolar potency, provide further evidence for the continued interest in spirooxindole-based drug discovery. This review highlights the recent advancements in spirooxindole chemistry involving synthetic strategies, SAR, biological activities, and recent patents.