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In vivo antitumor activity of two new seven-substituted water-soluble camptothecin analogues
D L Emerson1, J M Besterman, H R Brown
1Department of Pharmacology, Glaxo Research Institute, Research Triangle Park, North Carolina 27709.
Abstract:
The development of camptothecin-like compounds as inhibitors of topoisomerase I for the treatment of resistant tumors has generated clinical excitement in this new class of drugs. We have developed two novel water-soluble camptothecin analogues which are specific inhibitors of topoisomerase I and are potent cytotoxins with significant antitumor activity. We added water-solubilizing groups off position 7 in the B ring of either 10,11-ethylenedioxy- or 10,11-methylenedioxy-20(S)-camptothecin. These water-soluble camptothecin analogues were demonstrated to be nanamolar inhibitors of the topoisomerase I enzyme in the cleavable complex assay. The compounds, GI147211 [7-(4-methylpiperazinomethylene)-10,11-ethylenedioxy-20(S)-camp tot hecin], and GI149893 [7-(4-methylpiperazinomethylene)-10,11-methylenedioxy-20(S)-cam pto thecin], were compared to topotecan, a known water-soluble inhibitor of topoisomerase I. Both GI compounds were found to be slightly more potent than topotecan as inhibitors of topoisomerase I in the cleavable complex assay and were 1.5-2 times more soluble. Tumor cell cytotoxicity assays using 5 separate cell lines demonstrated that both GI compounds were 5-10 times more potent than topotecan, although by comparison all three topoisomerase I inhibitors were unaffected by the multidrug resistance P-glycoprotein. The antitumor activity of all three topoisomerase I inhibitors was compared concomitantly in two human colon xenograft models. In both models, GI147211 and GI149893 were able to induce regression of established HT-29 and SW-48 colon tumors by as much as 60%. The antitumor activity of both compounds were also demonstrated in the MX-1 and PC-3 xenografts. Microscopic examination of selected tissues indicated that drug-induced toxicity was primarily limited to the gastrointestinal tract and was comparable among the three compounds. Further clinical development of this class of compounds is ongoing.
Insights
Two novel water-soluble camptothecin analogues, GI147211 and GI149893, show potent topoisomerase I inhibition and significant antitumor activity against resistant tumors. These compounds demonstrate enhanced efficacy and solubility compared to topotecan, with promising clinical development potential.
Area of Science:
- Oncology
- Medicinal Chemistry
- Pharmacology
Background:
- Camptothecin derivatives are investigated as topoisomerase I inhibitors for treating resistant tumors.
- Novel water-soluble analogues offer potential for improved therapeutic outcomes.
Purpose of the Study:
- To develop and evaluate novel water-soluble camptothecin analogues as topoisomerase I inhibitors.
- To assess their potency, cytotoxicity, and antitumor activity in preclinical models.
Main Methods:
- Synthesis of water-soluble camptothecin analogues (GI147211, GI149893) by adding solubilizing groups.
- Inhibition assays for topoisomerase I (cleavable complex assay).
- Tumor cell cytotoxicity assays and in vivo xenograft models (colon, prostate, breast).
Main Results:
- GI147211 and GI149893 are potent, nanomolar inhibitors of topoisomerase I, more soluble than topotecan.
- Compounds exhibit 5-10 times greater cytotoxicity than topotecan against various cell lines.
- Significant regression (up to 60%) of established colon tumors observed in xenograft models.
Conclusions:
- Novel water-soluble camptothecin analogues demonstrate superior potency and efficacy compared to topotecan.
- These compounds are effective against resistant tumors and show manageable toxicity.
- Further clinical development is warranted for this promising class of anticancer agents.