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Differences in N-acetylation of the experimental antitumor agent batracylin in the mouse and the rat
M M Ames1, D A Mathiesen, J M Reid
1Mayo Clinic and Foundation, Department of Oncology, Rochester, MN 55905.
Abstract:
Batracylin (NSC-320846) is a quinalzolineone recently evaluated as a potential antitumor agent by the National Cancer Institute. The analog was active against a number of murine tumors, including colon adenocarcinoma 38 and multidrug resistant sublines of P-388 leukemia. Preclinical toxicity studies revealed that batracylin was much more toxic when administered orally to rats than to mice. The combined sex LD10 in mice was 5,655 mg/m2 while 576 mg/m2 was lethal to all rats treated at that dose. We determined that following oral administration of batracylin, systemic exposure of parent drug to the rat was only 14.9% of that to the mouse. It was subsequently noted that systemic exposure of a relatively non-polar metabolite was approximately 9 times greater in the rat than in the mouse. The metabolite was identified as N-acetylbatracylin by TLC, HPLC and mass spectral analyses. Observations by the National Cancer Institute that N-acetylbatracylin was not toxic following oral administration to mice or rats prompted evaluation of systemic exposure following oral administration to rats. Following oral administration of N-acetylbatracylin to rats, systemic exposure was almost nil. Indeed, exposure of rats to N-acetylbatracylin was several orders of magnitude greater following oral administration of six-fold lower doses of the parent drug, batracylin. Thus, N-acetylation may play a role in the toxicity of batracylin despite the lack of toxicity observed following oral administration of N-acetylbatracylin. In addition, further metabolism of the N-acetyl conjugate, analogous to that of other aromatic amines, may be involved in the pharmacology of batracylin and similar analogs.
Insights
Batracylin, an antitumor agent, showed higher toxicity in rats than mice due to differences in metabolism. N-acetylation of batracylin may influence its toxicity and pharmacology.
Area of Science:
- Pharmacology
- Toxicology
- Drug Metabolism
Background:
- Batracylin (NSC-320846) is a quinalzolineone with demonstrated activity against murine tumors.
- Preclinical studies indicated significant oral toxicity differences between rats and mice.
Purpose of the Study:
- To investigate the pharmacokinetic and metabolic differences of batracylin between rats and mice.
- To elucidate the role of N-acetylbatracylin in the observed toxicity.
Main Methods:
- Oral administration of batracylin to rats and mice.
- Analysis of systemic drug and metabolite exposure using TLC, HPLC, and mass spectrometry.
Main Results:
- Rats exhibited significantly lower systemic exposure to parent batracylin compared to mice.
- A metabolite, N-acetylbatracylin, showed higher systemic exposure in rats.
- N-acetylbatracylin itself demonstrated minimal systemic exposure and toxicity in rats after oral administration.
Conclusions:
- Species-specific metabolism, particularly N-acetylation, influences batracylin's systemic exposure and toxicity.
- Further metabolism of N-acetylbatracylin may be involved in the overall pharmacology of batracylin analogs.