A Concise and Scalable Synthesis of a Camptothecin Analogue with Enhanced Topoisomerase i Inhibition

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Shraddha Upadhyay
Anjali

Abstract

Camptothecin (CPT) and its derivatives remain among the most potent inhibitors of DNA topoisomerase I, yet their clinical utility is often limited by chemical instability of the E-ring lactone and dose-limiting toxicities. Continuous exploration of structurally modified CPT analogues is therefore essential to improve stability, activity, and structure–activity relationship (SAR) understanding. Herein, we report a short, scalable, and efficient synthetic strategy for a novel CPT analogue based on a new approach to the construction of rings C, D, and E. The methodology employs 2-chloroquinoline as an inexpensive and readily available starting material to access a tricyclic ABC core, which is subsequently coupled with a newly designed ring E. A key feature of this work is the isosteric replacement of the unique six-membered bifunctional (4 1-hydroxy) lactone E-ring of camptothecin with a five-membered heterocyclic motif, aimed at improving chemical robustness while retaining topoisomerase I inhibitory activity. The synthetic route proceeds in fewer steps than conventional CPT syntheses, tolerates scale-up, and enables rapid analogue diversification. Preliminary biological evaluation suggests enhanced topoisomerase I inhibition relative to parent CPT, highlighting the promise of this scaffold for further medicinal chemistry development.

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How to Cite

Upadhyay, S., & Anjali. (2026). A Concise and Scalable Synthesis of a Camptothecin Analogue with Enhanced Topoisomerase i Inhibition. International Journal of Aquatic Research and Environmental Studies, 6(S4), 1541-1545. https://doi.org/10.70102/y4r6p261

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