Activity of the multitargeted antifolate LY231514 in the human tumor cloning assay

This study was performed to evaluate the activity of the multitargeted antifolate (MTA or LY231514) against a broad range of human tumors taken directly from patients. Human tumor colony-forming units were treated with MTA at concentrations of 0.1, 1.0, and 10 microg/ml in 1-h exposure studies. The...

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Veröffentlicht in:Cancer chemotherapy and pharmacology 1999, Vol.44 (2), p.105-110
Hauptverfasser: BRITTEN, C. D, IZBICKA, E, HILSENBECK, S, LAWRENCE, R, DAVIDSON, K, CERNA, C, GOMEZ, L, ROWINSKY, E. K, WEITMAN, S, VON HOFF, D. D
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Sprache:eng
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Zusammenfassung:This study was performed to evaluate the activity of the multitargeted antifolate (MTA or LY231514) against a broad range of human tumors taken directly from patients. Human tumor colony-forming units were treated with MTA at concentrations of 0.1, 1.0, and 10 microg/ml in 1-h exposure studies. The responses of a limited number of specimens were also evaluated concurrently in 1-h exposures to cisplatin, fluorouracil, irinotecan, and/or paclitaxel. Of 358 specimens plated in the 1-h exposure studies, 148 (41%) were evaluable. Overall, responses were observed in 3% of specimens (4/144) at 0.1 microg/ml, 11% (17/148) at 1.0 microg/ml, and 23% (33/141) at 10 microg/ml. In this range of concentrations achievable clinically, there was a significant concentration-response relationship. At 10 microg/ml in the 1-h exposure studies, the response rate in colorectal cancer specimens was 32% (9/28), and the response rate in non-small-cell lung cancer was 25% (6/24). Responses were also observed in several chemoresistant tumors, including renal cell carcinoma, hepatocellular carcinoma, mesothelioma, and pancreatic carcinoma. The activity of MTA was not completely cross-resistant with that of cisplatin, fluorouracil, irinotecan, and paclitaxel. MTA demonstrated in vitro activity against a spectrum of tumors, including several tumors generally considered chemoresistant.
ISSN:0344-5704
1432-0843
DOI:10.1007/s002800050953