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Author

Bhupender Nehra

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Review Aug 2026

Isatin Derivatives as Emerging Frontiers in Cancer Treatment: Recent Updates in Synthesis, Anticancer Effect, and SAR Studies

Due to its extensive biological activity and structural heterogeneity, the special nitrogen‐containing heterocyclic compound isatin (1 H ‐indole‐2,3‐dione) has attracted significant interest. This paper explains the synthesis and action of heterocyclic isatin hybrids that induce apoptosis by blocking kinases, serving as an appropriate model for the development of new anticancer drugs. Isatin has significant potential to form potent isatin hybrids and conjugates that target multiple carcinogenic pathways through various chemical modifications. Remarkably, isatin hybrids have demonstrated anticancer activity across numerous cancer cell lines. Their activities include inhibition of tubulin polymerization, caspase activation, apoptosis mediated by mitochondria, and regulation of kinases. Several synthetic isatin‐based drugs show excellent IC 50 values and low toxicity against normal cells. This review also summarizes recent synthetic advancements like microwave‐assisted and multi‐component methods. In addition to summarizing recent advances, this review critically integrates SAR, molecular docking, kinase selectivity, synthetic feasibility, CADD, predictive ADMET profiling, and translational challenges to afford a complete roadmap for isatin‐based anticancer drug discovery. Overall, these findings reveal that isatin is a useful framework for developing new anticancer drugs. In the future, nano‐formulation drug delivery systems with new drug signaling pathways will be promoted to increase bioavailability and targeted delivery, especially in solid tumors.

Debdip Mandal, Bhupender Nehra, Samanay Senapati et al. · 0 citations
Review Jul 2026

Recent Advances in Structural and Functional Characterization of Biological Macromolecules.

Biological macromolecules form the cornerstone of cellular architecture and function through diverse structural arrangements and dynamic interactions. Recent methodological breakthroughs have revolutionized our understanding of these complex biomolecular systems by providing unprecedented resolution of their three-dimensional organization and conformational landscapes. This review examines significant advances in both structural elucidation and functional characterization approaches that bridge the critical gap between static snapshots and dynamic behaviors exhibited within cellular environments. Non-cell-based analytical platforms have similarly evolved, offering enhanced sensitivity, multiplexing capabilities, and reduced sample requirements for interrogating molecular interactions under near-physiological conditions. The integration of experimental approaches with computational modeling has enabled the construction of comprehensive structure-function relationships that more accurately represent macromolecular behavior in native contexts. This review aims to provide a contemporary assessment of biological macromolecule research, highlighting how technological advancements continue to fill the existing bridge and integrate the prior understanding of complex biomolecular systems while addressing persistent technical challenges in their characterization, with finesse.

Rabab Fatima, Bhupender Nehra, Biplab Debnath et al. · 0 citations

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