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Preclinical studies with triazinate (NSC-139105), an antifolate drug, in beagle dogs and rhesus monkeys.

The effects of the intravenous administration of triazinate by single and multiple injections were studied in beagle dogs and rhesus monkeys. In dogs, dose levels ranging from 0.3125 to 40 mg/kg were given either as single doses daily for 5 days, or once weekly for 6 weeks. The 5-day regimen was also studied in monkeys with dose levels from 2.5 to 40 mg/kg/day. Prominent drug-related and drug-dependent effects which appeared in both species were piloerection, muscular weakness, and respiratory difficulty which occurred during and immediately after the administration of dose levels of 10 mg/kg or greater. Gastrointestinal toxicity was severe in dogs but mild in monkeys. Lymphoid tissue toxicity was manifested by a circulating lymphopenia and localized cellular depletion in the germinal centers of lymphoid tissues. In dogs, signs of bone marrow toxicity consisted of a circulating neutropenia and, at necropsy, a reduction in the number of erythroid and myeloid elements plus megaloblastosis. Only the latter change was observed in monkeys. This difference in the hematopoietic toxicity between the beagle dog and the rhesus monkey was corroborated by the findings from in vitro studies with bone marrow. DNA synthesis in beagle bone marrow cells was depressed significantly by triazinate as compared with cells from rhesus marrow. A direct renal toxic effect was observed in monkeys given high doses of triazinate (20 and 40 mg/kg/day or 240-280 mg/m/day) for 5 days.

Animals

Inhibition of DNA synthesis in normal and malignant human cells by triazinate (Baker's antifol) and methotrexate.

Triazinate (TZT), a triazine folate antagonist, is a potent inhibitor of dihydrofolate reductase from mammalian cells. Because antitumor activity of triazinate in experimental tumors correlated closely with the in vitro inhibition of DNA synthesis in tumor cells derived from these tumors, we studied cells from patients with leukemia, solid tumor effusions, and cells from normal marrow to determine their in vitro sensitivity to TZT. DNA synthesis in cells from patients with acute leukemia was less sensitive to TZT than it was to methotrexate (MTX) at 2 X 10(-6) M concentration of the inhibitor, whereas the sensitivity was similar at 10(-5) M. This could be accounted for by the known greater sensitivity of dihydrofolate reductase to MTX than to TZT, and the observation that, whereas intracellular drug levels were similar at low (2 X 10(-6) M) extracellular concentrations of TZT or MTX, at the higher (10(-5) M) extracellular drug concentration intracellular TZT was greater than 3 times intracellular MTX. In vitro inhibition of DNA synthesis in cells obtained after patients were treated with TZT was correlated with drug serum concentration and with leukemia cell kill. The sensitivity of cells from solid tumor effusions to TZT was similar to the sensitivity to MTX. Since patients can tolerate doses of TZT five times higher than MTX with less toxicity, there may be advantage to the clinical use of TZT in some tumor cell types.

Bone Marrow

Mutagenicity of the triazine herbicides atrazine, cyanazine, and simazine in Drosophila melanogaster.

Assays for dominant lethal mutations, sex-linked recessive lethal mutations, and chromosomal breakage, nondisjunction and loss were performed on Drosophila melanogaster males treated by injection or by larval feeding of the herbicides atrazine (2-chloro-4-ethylamino-6-isopropylamino-1,3,5-triazine), cyanazine [2-chloro-4-(1-cyano-1-methylethylamino)-6-ethylamino-1,3,5-triazine], or simazine [2-chloro-4,6-bis-(ethylamino)-1,3,5-triazine]. The three herbicides significantly increased the rate of apparent dominant lethals, but this reduction in egg hatch was probably due to physiologic toxicity to sperm. Atrazine significantly increased X-linked recessive lethals and X or Y loss after treatment by larval feeding. Injection of simazine elevated X-linked lethals, whereas treatment by larval feeding did not. None of these herbicides significantly increased partial loss of the Y chromosome nor sex chromosome nondisjunction. Much larger experiments are needed to determine with confidence the mutagenic potential of these herbicides.

Animals

Conversion of biguanides into substituted s-triazines assayable by GC or mass fragmentography.

Substituted s-triazines were prepared by the treatment of biguanides with various organic acid anhydrides. This reaction permits the ready conversion of the hypoglycemic drugs phenformin, buformin, and metformin and of other analogous biguanides into compounds suitable for GC and mass fragmentographic determination with a high degree of sensitivity. Mass spectral data and Kováts retention indexes are presented for all s-triazines prepared for this study.

Biguanides

Synthesis of as-triazines as potential antiviral agents.

Four acenaphtho[1,2-e]-as-triazines and 11 5,6-diaryl-as-triazines, all substituted with an aliphatic or aromatic amino function in the 3-position, were synthesized. Two acenaphthotriazines were active against vesicular stomatitis virus in tissue culture.

Animals

[Comparative chromatographic analyses of s-triazines (author's transl)].

The applicabilities of gas chromatography (GC), high-performance liquid chromatography (HPLC), thin-layer chromatography (TLC) and high-performance thin-layer chromatography (HPTLC) for residue analysis of s-triazine herbicides are compared. With the conditions discussed the detection limit for the 14 s-triazines was determined as follows: 0.02-0.03 ng in GC alkali flame-ionization detection, 0.8 ng in GC flame-ionization detection, 1 ng in HPLC (UV detection), 3-5 ng in HPTLC (UV detection) and 8-13 ng in TLC (UV detection). The linear range in GC (AFID) was 10(4) whereas in the three liquid chromatographic methods it was 10(2). The reproducibility with a confidence limit of P = 95% had a coefficient of variation of +/- 5%. In routine analysis requiring a large number of separations HPTLC has advantages, because the time for a single separation is only 40 sec.

Chromatography

Antifolate studies. Activities of 40 potential antimalarial compounds against sensitive and chlorguanide triazine resistant strains of folate-requiring bacteria and Escherichia coli.

As part of the search for new antimalarial drugs, a screening program was developed using sensitive and chlorguanide triazine (CGT, cycloguanil) resistant strains of the folate-requiring bacteria, Streptococcus faecium durans, Lactobacillus casei, and Pediococcus cerevisiae. The activities of 40 compounds have been studied against these strains and Escherichia coli. Observations have been made on the points of 50% growth inhibition, the fold increase of resistance shown to each compound by the resistant strains as compared with the parent sensitive strains, and the reversal of growth inhibition by folic acid with S. faecium and L. casei by folinic acid with P. cerevisiae and by p-aminobenzoic acid with E. coli. Comparisons have been made of the activities of the test compounds with those of the standard antimalarial antifoltes, CGT and pyrimethamine (PM), and the antibacterial results have been compared with the activities of the compounds against Plasmodium berghei infections in the mouse and against human malaria infections where data are available. Of the 17 compounds reversed by folates, five had patterns of activity similar to CGT and PM in that they were most active against S. faecium and nine compounds exhibited a different pattern, being highly active against all four test bacteria. This suggests that these latter compounds either have different pharmacokinetic properties or have additional modes of action. The three CGT-resistant organisms responded to antifolates in different ways. S. faecium (R) and P. cerevisiae (R) strains were cross resistant to 4,6-diaminotriazines, 2,4-diaminopyrimidines, 2,4-diaminoquinazolines, and active 2,4-diaminopteridines. L. casei (R) was cross resistant to the triazines but was collaterally sensitive to all the other antifolates. Most of the compounds not reversed by folates were much less inhibitory for the test organisms; they were most active against L. casei. In general, their growth inhibitory concentrations varied less for the four test organisms and the responses of the sensitive and CGTR strains were similar. However, there was some cross resistance to five compounds and some collateral sensitivity to five others. Comparison of the bacteriological data with the activities of the compounds against Plasmodium berghei in the mouse showed little correlation between the two test systems; each appears to provide independent and useful information.

Animals

Synthesis and antimicrobial activity of some novel heterocycles. Azolo-as-triazines.

A general method for the preparation of substituted azolo-as-triazines is reported. The various alpha-aminoazoles (3-aminopyrazole, 3-amino-s-triazole, 5-amino-v-triazole, 2-aminoimidazole, 4(5)-aminoimidazole, and their substituted derivatives) were diazotized and coupled with active methylene reagents (beta-diketones, beta-keto esters, beta-keto acids, ethyl cyanoacetate and malononitrile) to afford intermediates which were then cyclized in methanol, acetic acid, or benzene. The cyclized products were the corresponding pyrazolo[2,3-c]- (2), s-triazolo[2,3-c]- (3), imidazo[3,4-c]- (4), v-triazolo[1,2-c]- (5), and imidazo[3,4-c]-as-triazines (6) with substituents such as amino, alkyl (or hydrogen), ester, ketone, or nitrile, depending on the methylene reagent used. Of the 28 compounds synthesized (representative of the five heterocycles) six, with various substituents, exhibited specific in vitro antimicrobial activity. Compounds 2b and 2d inhibited the gram-negative bacterium Pseudomonas, 3a, and 5a inhibited the gram-positive Staphylococcus, 2h inhibited the dermatophyte Trichophyton, and 2c inhibited the yeast Candida in the MIC (minimum inhibitory concentration) range of 0.40-0.16 mumol/ml.

Anti-Bacterial Agents

Antimalarials. 3. 1,2,4-Triazines.

The syntheses of a number of substituted 1,2,4-triazines as potential antimalarials are described. The structural requirements for antimalarial activity are discussed with reference to the substituents of a phenyl group in the 6 position and amino groups at the 3 and 5 positions. Of the compounds tested, 2,5, and 7 produced cures in mice infected with plasmodium berghei. Compounds 2(3,5-diamino-6-(4-trifluoromethylphenyl)-1,2,4-triazine),3,5,8,12,and 37 produced cures in chicks infected with Plasmodium gallinaceum.

Animals

Anti-inflammatory action of an s-triazine derivative in rats.

Anti-inflammatory action of an s-triazine derivate (M 1704, 2-amino-4-(p-fluoroanilino)-6-n-propyl-1,3,5-triazine) was studied in rats. M 1704 inhibited carrageenan edema, cotton-pellet granuloma and adjuvant arthritis in intact rats. M 1704 was not effective on carrageenan edema in adrenalectomized rats, but effective when administered with cortisol. The drug appeared to potentiate the anti-inflammatory effects of cortisol on cotton-pellet granuloma. The results obtained in this and a previous study suggest that M 1704 exerts the anti-inflammatory action mainly by potentiating the peripheral anti-inflammatory action of endogenous steroid and partly by stimulating the secretion of corticosteroids.

Administration, Topical

Metabolism of 2-(3-chloro-4(4-chlorobenzoyl)-phenyl)-as-triazine-3,5(2H,4H)-dione by the chicken.

The metabolism of the anticoccidial 2-[3-chloro-4-(4-chlorobenzoyl)phenyl]-as-triazine-3,-5(2H,4H)-dione (CP-25,415) was investigated in the chicken. It was shown that the predominant residue present in the chicken was 2-[3-chloro-4-(alpha-hydroxy-4-chlorobenzoyl)phenyl]-as-triazine-3,5(2H,4H)-dione (CP-25,641). A gas-liquid chromatographic assay for the analysis of CP-25,641 in biological fluids and tissues was developed which was rapid, accurate, and reproducible. Results of the analytical method correlated well with radiochemical measurements and were indicative of the total drug-related residues. The half-life of CP-25,641 in tissues was approximately 32 hr except in the kidney, where the half-life was approximately 40 hr due to urine retention by the kidneys. CP-25,641 was excreted without further change.

Adipose Tissue

[Quantitative aspects of the relationship of the antitumor activity and toxicity of diaziridinyl-sym. triazines to their physicochemical properties].

The experiments on rats have shown that there is a linear dependence of the logarithms of reciprocal molar toxic (LD50) and therapeutic (ED50) for sarcoma 45 doses of 6-oxyalkyl-amino-2,4-bis(I-aziridinyl)-sym-triazines and 6-(5-substituted-2,2-dimethyl-1,3-dioxan-5-yl)-amino-2,4-bis(I-aziridinyl)-sym-triazines upon the induction constants of substituents at tertiary carbon, the antitumor activity being more sensitive to the substituent effect compared with the toxicity. The dependence of the logarithms of reciprocal molar therapeutic (ED50 for sarcoma 45 and ED95 for Walker sarcoma) and toxic (LD50 and LD100) doses of the compounds, both synthesized by us and taken from the literature, upon the logarithms of their distribution coefficients in the octanol-water system (IgP) shows a parabolic character with the maximum effect at the extreme point of the parabola. The antitumor activity was more sensitive to a changed IgP than the toxicity.

Animals

Metabolism of [14C] terbutryn (2-(t-butylamino)-4-(ethylamino)-6-(methylthio-s-triazine) by rats and goat.

Sixteen metabolites of terbutryn were isolated from the urine and feces of either rats or a goat given single oral doses of terbutryn-[14C](2-(t-butylamino)-4-(ethylamino)-6-(methylthio)-s-triazine). The metabolites resulted from one or more of the following changes: S-demethylation, conversion of the methylthio group to a hydroxy group; N-deethylation; oxidation of the terminal carbon of the ethyl group to a carboxylic acid; oxidation of a terminal carbon of the t-butyl group to either an alcohol or a carboxylic acid; or conjugation with glucuronic acid.

Animals

Mass spectral characterization of the glucuronide conjugates of terbutryn (2-(t-butylamino)-4-(ethylamino)-6-(methylthio)-s-triazine) metabolites from rats and goat.

Five metabolities from terbutyrn (2-(t-butylamino)-4-(ethylamino)-6-(methylthio)-s-triazine) were characterized to be glucuronide conjugates by interpretation of mass spectral data of their trimethylsilyl derivatives. These were isolated from rat and goat urine. Three of these glucuronides were characterized to be triazinyl-S-glucuronides and two were characterized to be alkyl-O-glucuronides.

Animals

The use of sym-triazine trichloride in RNA-protein cross-linking studies with Escherichia coli ribosomal subunits.

The reagent sym-triazine trichloride is used as a bifunctional reagent to generate RNA-protein cross-links within intact ribosomal subunits from E. coli. The reaction takes place in a stepwise manner, involving substitution of one chlorine atom at 12 degrees and pH 8, and substitution of the second at 40 degrees and pH 6. The cross-linked proteins are analysed by two-dimensional electrophoresis, and the existence of a stable cross-linkage is demonstrated by isolating protein-oligonucleotide complexes from 32P-labelled subunits. The proteins cross-linked are S3 and S4 in the 30S subunit, and L2 in the large subunit, together with smaller amounts of other proteins. The reagent should prove useful in topographical studies of the E. coli ribosome as it is a rigid molecule and generates very short cross-links.

Electrophoresis

Synthesis and antiinflammatory activity of trisubstituted pyrimidines and triazines.

A series of mono-, bi-, and tricyclic pyrimidines and as-triazines was prepared and their antiinflammatory activity measured against carrageenan-induced edema in the rat. The more active analogues (ED50), including 4-pyri-dylpyrimidines 4a (38), 4b (47), and 4g (49) and 2-hydroxypyrimidine 8r (43), were then tested against adjuvant-induced edema in the rat. None was active in the adjuvant arthritis model.

Animals