Mitomycin C was reviewed in this journal 25 years ago and an update of its clinical usefulness is appropriate. The current review is based on representative publications covering clinical trials performed throughout the world. Single agent activity in each of the major neoplastic diseases has been reassessed when possible and the most important combinations evaluated.
View Article and Find Full Text PDFBMY-25551, 7-(2-hydroxyethoxy)mitosane, was selected from a series of mitomycin A (MMA) analogues for more detailed study. As with other members of this class, it was shown to be 8 to 20 times more potent than mitomycin C (MMC) in cytotoxicity to murine and human tumor cell lines in vitro, in causing DNA cross links in vitro, and in dose levels for tumor inhibition in vivo. BMY-25551 appeared to be more effective in tumor inhibition than MMC against P388 leukemia and B16 melanoma in mice and comparable to MMC against L1210 leukemia and Madison 109 lung carcinoma.
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November 1991
FK973 is a novel, substituted dihydrobenzoxazine structurally similar to mitomycin. FK973 lacks cross-resistance with mitomycin, doxorubicin, and vincristine in murine tumor models. A phase I study of FK973 was initiated using a 30-minute infusion repeated every 4 weeks.
View Article and Find Full Text PDFThe antitumor and DNA-binding properties of a group of oligomeric platinum(II) and platinum(IV) complexes are described. The compounds, having the stoichiometry [cis-PtII(X)2(mu-OH)]2(NO3)2, where X is NH3, NH2CH2CH3, and NH2CH(CH3)2, were found to be inactive or only weakly active against L-1210 leukemia. In vitro studies involving PM2-DNA show that these compounds bind to and unwind closed circular DNA in a manner similar to cis-PtII-(NH3)2Cl2.
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February 1990
BMY-28175 is a novel antitumor antibiotic produced in fermentation by Actinomadura verrucosospora. The cytotoxic effects of BMY-28175 were determined using murine and human tumor cell lines in vitro. Following 72 hour exposure, the drug had IC50 values 1.
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