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Updated: Jul 18, 2026

Implementation of In Vitro Drug Resistance Assays: Maximizing the Potential for Uncovering Clinically Relevant Resistance Mechanisms
Published on: December 9, 2015
Mechanisms of cellular resistance to camptothecins
G L Beretta1, P Perego, F Zunino
1Istituto Nazionale Tumori, Via Venezian 1, 20133 Milano, Italy. paola.perego@istitutotumori.mi.it
Abstract:
The camptothecins are among the most promising antitumor agents endowed with a unique mechanism of action, because they act through inhibition of DNA topoisomerase I, an enzyme involved in regulating critical cellular functions including DNA replication, transcription and recombination. On the basis of the pharmacological interest of camptothecins in cancer chemotherapy, medicinal chemistry has played a crucial role in the development of novel analogs, and recently some compounds have emerged as promising agents for clinical evaluation. A major limitation to the clinical efficacy of camptothecin-containing therapies is represented by drug resistance. As with other cytotoxic drugs, clinical resistance to camptothecins may be a multifactorial phenomenon likely involving pharmacological and tumor-related factors. An additional problem in understanding clinically relevant resistance mechanisms is the observation that preclinical cell/tumor models may be not adequately predictive of clinical resistance. Here, we review the mechanisms of cell sensitivity/resistance to camptothecins and current approaches to overcome specific mechanisms, either by chemical modifications or by combination with modulating agents. In particular, the realization that most camptothecins are substrates for ATP binding cassette transporters has stimulated efforts in molecular design of novel non-cross-resistant analogs. Finally, a better understanding of the mechanism of cell response at a cellular level could help in defining new strategies to overcome resistance as well as chemical features required for efficacy.
Insights
Camptothecins are promising antitumor drugs that inhibit DNA topoisomerase I. Overcoming drug resistance through novel analogs and combination therapies is key to improving cancer chemotherapy efficacy.
Area of Science:
- Oncology
- Medicinal Chemistry
- Molecular Biology
Background:
- Camptothecins are potent antitumor agents targeting DNA topoisomerase I.
- Their clinical efficacy is significantly limited by drug resistance.
- Preclinical models may not accurately predict clinical resistance to camptothecins.
Purpose of the Study:
- To review mechanisms of camptothecin sensitivity and resistance.
- To explore strategies for overcoming drug resistance.
- To highlight advancements in designing novel camptothecin analogs.
Main Methods:
- Literature review of camptothecin mechanisms and resistance.
- Analysis of medicinal chemistry approaches for analog development.
- Examination of combination therapies and modulating agents.
Main Results:
- Drug resistance is a multifactorial issue involving pharmacological and tumor-related factors.
- ATP binding cassette transporters contribute to camptothecin resistance.
- Novel non-cross-resistant analogs are being developed.
Conclusions:
- Understanding cellular responses is crucial for overcoming resistance.
- Chemical modifications and combination strategies can enhance efficacy.
- Further research into resistance mechanisms will guide future drug design.
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