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Biomedical subjects

G T Bryan

Publications and source records attributed to G T Bryan.

At least 109 records · Page 6Linked to original sources

Comparative carcinogenicity of 5-nitrothiophenes and 5-nitrofurans in rats.

We investigated the carcinogenicity of five 5-nitrothiophenes with heterocyclic substituents at the 2-position of the thiophene ring by feeding the chemicals to Sprague-Dawley rats and comparing the type and incidence of lesions with those appearing after exposure to two 5-nitrofurans. Benign and malignant mammary tumors and intestinal tract sarcomas were the most frequent lesions induced by 5-nitrothiophenes. 4-Bis(2-hydroxyethyl)amino-2-(5-nitro-2-thienyl)quinazoline caused a 100% incidence of mammary adenocarcinomas in 28 female rats at risk; it induced 3 benign and 5 malignant mammary tumors and 13 small intestine sarcomas in 20 male rats. A high incidence of similar lesions was observed in male and female rats fed the corresponding 5-nitrofuran analogue, 4-bis(2-hydroxyethyl)amino-2-(5-nitro-2-furyl)quinazoline. In marked contrast, 4 of 28 female rats receiving 4-bis(2-hydroxyethyl)amino-2-(2-thienyl)quinazoline, which lacks the nitro group at the 5-position on the thiophene ring, had solitary benign mammary tumors (P greater than 0.2). Additional 5-nitrothiophenes demonstrating significant oncogenic activity for female rats were 4-morpholino-2-(5-nitro-2-thienyl)quinazoline, 4-(2-hydroxyethylamino)-2-(5-nitro-2-thienyl)quinazoline 4-(2,3-dihydroxypropylamino)-2-(5-nitro-2-thienyl)quinazoline, and 1,2-dihydro-2-(5-nitro-2-thienyl)quinazolin-4(3H)-one. Another nitrofuran, 4,6-dimethyl-2-(5-nitro-2-furyl)-pyrimidine, provided the following types of neoplasms in 30 female rats at risk: squamous cell carcinomas of the forestomach (30), sarcomas of the intestine (21), adenocarcinomas of the kidney (2).

Adenocarcinoma↗

Naturally occurring and braken-fern-induced bovine urinary bladder tumors. Clinical and morphological characteristics.

Clinical and morphological characteristics of 139 naturally occurring and 20 braken-fern-induced urinary bladder tumors of cows were studied. Hematuria was prominent and occurred as early as 60 days after braken fern feeding began. Anemia and changes in leukocytes were late manifestations. Papillomas appeared as early as 1 year, whereas invasive carcinomas did not develop until 2.6 years after initiation of feeding. Twenty of 30 cows fed braken fern developed bladder tumors within 5.3 years. None of eight untreated control cows that lived 4 years or six that lived 10 years developed neoplasms. Naturally occurring and fern-induced bladder tumors were epithelial (35%) or mixed epithelial and stromal (55%). Papillomas occurred in 24% and carcinomas in 61% of naturally occurring cases, whereas there were papillomas (40%) and carcinomas (50%) in fern-fed cows. Naturally occurring tumors were metastatic to regional lymph nodes and lung. No metastases were detected in fern-fed cows.

Adenoma↗

Enhancing effect of allopurinol on the induction of bladder cancer in rats by n-[4-(5-nitro-2-furyl)-2-thiazolyl]formamide.

The effects of allopurinol on the induction of bladder cancer by N-[4-(5-nitro-2-furyl)-2-thiazolyl]formamide (FANFT), excretion of urinary tryptophan metabolites, hepatic nitroreductase activity, and the acid-soluble thiol content of liver and blood in weanling female Fischer rats were investigated. Four groups of rats were given normal diet or normal diet supplemented with 0.005% allopurinol, 0.188% FANFT, or 0.005% allopurinol-0.188% FANFT. Transitional cell carcinomas appeared in 3 of 30 rats (10%) at 15 weeks and in 7 of 44 rats (16%) at 20 weeks in the FANFT-treated group; the carcinomas appeared in 14 of 35 rats (40%) at 15 weeks and in 27 of 50 rats (54%) at 20 weeks in the FANFT-allopurinol-treated group. Growth rate was not affected by allopurinol and FANFT. Allopurinol alone caused no morphological change in the epithelial cells of the urinary bladder but decreased hepatic cytosol nitroreductase activity. FANFT alone had no effect on hepatic cytosol or microsomal nitroreductase activity but increased hepatic and blood acid-soluble thiol content. FANFT increased the urinary excretion of anthranilic acid glucuronide, kynurenine, acetylkynurenine, and 3-hydroxykynurenine and decreased indican and o-aminohippurate excretion. Allopurinol did not alter the effects of FANFT on the acid-soluble thiol content of liver and blood or the excretion of urinary tryptophan metabolites.

Allopurinol↗

Effect of avitaminosis A and hypervitaminosis A on urinary bladder carcinogenicity of N-(4-(5-Nitro-2-furyl)-2-thiazolyl)formamide.

The effect of vitamin A deficiency and hypervitaminosis A on the urothelial carcinogenicity of N-[4-(5-nitro-2-furyl)-2-thiazolyl]formanmide (FANFT) was determined in female weanling Sprague-Dawley rats. Vitamin A deficiency resulted in squamous metaplasia of the urinary bladder and high incidences of cystitis, ureteritis, and pyelonephritis. Administration of FANFT to vitamin A-deficient rats appeared to accelerate the carcinogenic process, with earlier appearance of urinary bladder tumors and the development of ureteral and renal pelvic carcinomas. Most of these tumors were squamous cell, occasionally with transitional cell foci. Hypervitaminosis A prevented the appearance of squamous metaplasia and squamous cell neoplasia in rats fed FANFT, but it did not inhibit the formation of transitional cell hyperplasia or neoplasia in comparison to rats receiving normal levels of vitamin A and FANFT.

Animals↗

Effects of 5-(3,3-dimethyl-1-triazeno)imidazole-4-carboxamide and its metabolites on Novikoff hepatoma cells.

Studies were undertaken to determine the effects of 5-(3,3-dimethyl-1-triazeno)imidazole-4-carboxamide (DTIC) and its metabolites on the growth and macromolecular synthesis of Novikoff hepatoma cells in culture. DTIC (3.0 mM) in light decreased the viable cell count by 90% within 96 hr. DTIC protected from light, 2-azahypoxanthine, dimethylamine, and 5-aminoimidazole-4-carboxamide, all at 3.0 mM, reduced the rate of cellular proliferation. 5-Diazoimidazole-4-carboxamide (1.0 mM) and 5-(3-methyl-1-triazeno)imidazole-4-carboxamide (3.0 mM) decreased the viable cell count by 99%. Effects on macromolecular synthesis were determined by the rate of incorporation of the appropriate 3H-labeled precursor. Results after 6 hr are given as percentage of controls. DTIC (1.0 mM) in light inhibited DNA (8%), RNA (41%), and protein (63%) synthesis. DTIC (1.0 mM) protected from light inhibited DNA (12%) and RNA (57%) synthesis. 5-Diazoimidazole-4-carboxamide (0.1 mM) inhibited DNA (1%), RNA (9%), and protein (1%) synthesis. 5-(3-Methyl-1-triazeno)imidazole-4-carboxamide (1.0 mM) inhibited DNA (72%) and protein (65%) synthesis but stimulated RNA (127%) synthesis. 2-Azahypoxanthine (1.0 mM) inhibited DNA (43%), RNA 82%) and protein (28%) synthesis. 5-Aminoimidazole-4-carboxamide (3.0 mM) stimulated DNA (354%) and RNA (266%) synthesis. These data show that DTIC is able to generate several toxic metabolites that may be responsible for its biological effects.

Animals↗

Differential dependence on NADPH concentrations of two microsomal corticosteroid 21-hydroxylation reactions.

The dependency on NADPH concentrations of the bovine adrenal cortex microsomal 21-hydroxylation of progesterone and of 17-hydroxyprogesterone was investigated. The average Km for NADPH in the 21-hydroxylation of progesterone is 10.4 muM while that for the 21-hydroxylation of 17-hydroxyprogesterone is 0.6 muM. The optimal NADPH concentrations for these two hydroxylations are, in average, one order of magnitude apart. The different affinities of the two 21-hydroxylating activities with respect to NADPH may indicate the presence of independent 21-hydroxylation reactions for these two steroid substrates. This evidence is consistent with the observed genetic data in human congenital adrenal hyperplasia.

Adrenal Cortex↗

A simple method for detection and analysis of carcinogenic nitrofuran compounds and their metabolites by combining chromatography and spot mutation tests.

A simple, sensitive, and convenient method combining thin-layer chromatography and a spot test for mutagenicity of Salmonella typhimurium TA100 was utilized for the analysis of urine of rats fed N-[4-(5-nitro-2-furyl)-2-thiazolyl]-formamide (FANFT), a potent experimental urinary bladder carcinogen. Three metabolites of FANFT were detected in urine, and one of these, accounting for 33% of the urinary metabolites of FANFT, was identified as 2-amino-4-(5-nitro-2-furyl)thiazole (ANFT). ANFT was the only urinary metabolite that clearly demonstrated mutagenic activity, suggesting that ANFT may be a proximate vesical carcinogen of FANFT.

Animals↗

Histogenesis of urinary bladder cancer induced in rats by bracken fern.

Histologic examination of the urinary bladders of albino rats fed bracken fern (Pteris aqulinum) showed epithelial hyperplasia in all test animals after 3 weeks of feeding and nuclear abnormalities at 4 to 6 weeks. Epithelial tumors were present in animals surviving more than 12 weeks, and invasion of subepithelial tissue occurred in animals sacrificed after this time. Carcinoma in situ, comparable to that in man, was not observed before invasive carcinoma, but was noted later in the surface epithelium adjacent to invasive carcinoma. Transitional cell carcinomas originated from hyperplastic epithelium, squamous cell carcinomas from metaplastic squamous epithelium, and papillary carcinomas from papillomas. Papillomas were preceded by epithelial hyperplasia. The results suggest that hyperplasia precedes bladder carcinoma in rats fed bracken fern.

Animals↗

Effect of progesterone on human corticosteroid 21-hydroxylation.

Progesterone inhibits the 21-hydroxylation of 17alpha-hydroxyprogesterone by human adrenal cortex microsomes. The possible light this finding may shed on the genetic condition, the 'adrenogenital syndrome' is discussed. Km and Vmax data for the above hydroxylation reaction are given.

Adrenal Cortex↗

Further clinical studies with intrahepatic arterial infusion with 5-fluorouracil.

A total of 419 patients with progressive liver disease, in nearly all cases metastatic from gastrointestinal primaries, were treated by intrahepatic arterial infusion with 5-FU. Three-fourths of these patients had had prior trials with intravenous 5-FU for 1 or 2 months to several years and had been switched to the infusion upon the development of progression. Catheters were placed percutaneously and the patients infused with 5-FU at a dose of 20 to 30 mg/kg/day X 4, then 15 mg/kg/day X 17, at which point the catheter was removed and the patient sent home on weekly i.v. doses at 15 mg/kg. Toxicity, morbidity, and mortality were minimal with the intrahepatic arterial infusion treatment and the rigid criteria of improvement were met by 55% of the study cases. The survival rate of those patients who responded to the treatment was greater than the survival rate of those who failed to respond.

Fluorouracil↗

Steroid hydroxylations by human adrenal cortex microsomes 1, 2.

Microsomes were prepared from human adrenals obtained at the time of cadaveric renal transplantation. Microsomes were assayed for cytochrome P-450 concentrations (mean =0.63 nmol/mg protein) and NADPH-cytochrome c reductase activity (mean 65 nmol times min-1 times mg-1 protein). Rates of steroid hydroxylation were measured. In man, the rate of 21-hydroxylation of 17-hydroxyprogesterone was approximately three times the rate of 21-hydroxylation of progesterone. The rate of 17-hydroxylation of progesterone was approximately three times the rate of 21-hydroxylation of progesterone. Substrate binding to microsomes showed a type I spectrum with progesterone and 17-hydroxy-progesterone. Both substrates bound all spectrally identifiable sites. Antibody prepared against procine NADPH-cytochrome c reductase inhibited concomitantly human reductase, 21-hydroxylation of progesterone and 17-hydroxyprogesterone, and 17-hydroxylation of progesterone. These results were compared to previous studies with beef adrenal microsomes. No specific evidence was obtained to suggest multiple forms of 21-hydroxylase in human adrenal microsomes. It appears as though the human adrenal microsomal cytochrome P-450 electron transport chain is immunologically similar to those studied previously--beef adrenal, and rat and human liver.

Adrenal Cortex↗

Mutagenicity of nitrofurans, nitrothiophenes, nitropyrroles, nitroimidazole, aminothiophenes, and aminothiazoles in Salmonella typhimurium.

Thirty-two heterocyclic compounds, including 24 nitroheterocycles, 7 aminoheterocycles and derivatives, and 1 thiophene lacking a nitro group, were tested for mutagenic activity in Salmonella typhimurium TA 98 and TA 100. All the nitroheterocycles (11 new), including nitrofurans, nitrothiophenes, nitropyrroles, and 1 nitroimidazole, were mutagenic in TA 100; 13 were also mutagenic in TA 98. 5-Nitro-2-furoic acid, a noncarcinogen, was mutagenic in TA 100. Seven carcinogenic nitroheterocycles were mutagenic in both strains. Seven aminoheterocycles (4 new), aminothiophenes and aminothiazole derivatives, and 1 thiophene without a nitro group were not mutagenic. Both TA 98 and TA 100 were uvrB and lacked the ability of excision repair of DNA. Among the 24 mutagenic nitroheterocycles, only 13 compounds exhibited bacterial killing effects, suggesting that more than 1 mechanism may be involved in the interaction of nitroheterocycles with bacterial DNA.

Amines↗

Correlation between the carcinogenicities of nitrofuran derivatives and their destructive actions on sebaceous glands of mouse skin.

The effects of six nitrofuran derivatives (including a formerly used food preservative) on mouse skin sebaceous glands were investigated. A close correlation was found between the carcinogenicities and destructive activities of nitrofuran derivatives on the sebaceous glands. 5-Nitro-2-furaldehyde semicarbazone and 4-methyl-1-[(5-nitrofurfurylidene)amino]-2-imidazolidinone, which are carcinogenic, caused marked destruction of the glands at a dose of 1-5 mg/mouse. 2-(5-Nitro-2-furfurylidene)-aminoethanol almost completely destroyed the glands at a dose of 5 mg/mouse; its carcinogenicity has not yet been investigated. 1-[(5-Nitrofurfurylidene)amino]-carcinogenic, did not affect the glands, even at a dose of 5 mg/mouse. 2-(2-Furyl)-3-(5-nitro-2-furyl)acrylamide, which is a potent mutagen but not carcinogenic, had no effect on the glands at a dose of 5 mg/mouse. Under similar conditions, the potent carcinogen 7,12-dimethylbenz(alpha)athracene almost completely destroyed the sebaceous glands at a dose of 0.05 mg/mouse, but dimethyl sulfoxide (used as solvent for the test compounds) had no effect.

Animals↗