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Comparativein vitrocytotoxicity of cyclophosphamide, its major active metabolites and the new oxazaphosphorine ASTA Z 7557 (INN mafosfamide)

โœ Scribed by David S. Alberts; Janine G. Einspahr; Robert Struck; Gary Bignami; Laurie Young; Earl A. Surwit; Sydney E. Salmon


Publisher
Springer US
Year
1984
Tongue
English
Weight
623 KB
Volume
2
Category
Article
ISSN
0167-6997

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โœฆ Synopsis


Cyclophosphamide (CPA), the most commonly used alkylating agent in the treatment of a wide variety of hematologic and solid tumors, requires oxidation by hepatic microsomal enzymes to its active alkylating species. A number of alternative methods exist to simulate the in vitro cytotoxicity of CPA against animal and human tumors, including the co-incubation of CPA with the S-9 fraction of rat liver homogenates (S-9) and the use of either 4-hydroperoxy CPA (a stabilized form of a major blood-borne metabolite of CPA), phosphoramide mustard (PM, considered to be the ultimate intracellular alkylating metabolite of CPA), or ASTA Z 7557 [4-(2-sulfonatoethylthio)-CPA, a new oxazaphosphorine compound which after dissolution undergoes rapid spontaneous hydrolysis in vitro with liberation of 4-hydroxy-CPA]. Using a human tumor clonogenic assay (HTCA) we have quantitated the median molar inhibitory dose 50 (ID50) concentrations of S-9 activated-CPA, 4-hydroperoxy-CPA, PM, and ASTA Z 7557 against 107 previously untreated tumors, as well as determining the in vitro biological stability of the former three CPA metabolite preparations. 4-Hydroperoxy-CPA proved the most consistently cytotoxic (median molar ID50 = 5.7 X 10(-5)M) compound, followed by ASTA Z 7557, S-9 activated-CPA and PM in that order. Of additional interest S-9 activated CPA and PM proved relatively unstable biologically when frozen at -120 degrees C, whereas 4-hydroperoxy-CPA lost none of its cytotoxicity over a 36 day period during freezing.(ABSTRACT TRUNCATED AT 250 WORDS)


๐Ÿ“œ SIMILAR VOLUMES


A comparative study of therapeutic activ
โœ Martin R. Berger; Philip Bedford; W. Jens Zeller; Manfred Kaufmann ๐Ÿ“‚ Article ๐Ÿ“… 1984 ๐Ÿ› Springer US ๐ŸŒ English โš– 428 KB

This study compares the two oxazaphosphorine compounds ASTA Z 7557 (AZ) and cyclophosphamide (CP) in their therapeutic activity as well as in their myelotoxicity and DNA damage being induced after a single intraperitoneal injection. Therapeutic activity was determined towards methylnitrosourea-induc