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Biomedical subjects

D Hoffmann

Publications and source records attributed to D Hoffmann.

At least 343 records · Page 19Linked to original sources

[Hypertension and surgical risk].

The perioperative risk of the patients with hypertension improves when the antihypertensive therapy is continued to the date of operation and a differentiated selection of narcotics and narcosis adjuvants as well as a careful narcotization is performed. In these cases the continuous control of the patient is necessary. In case of an operative intervention hypertension must be reason for the interdisciplinary cooperation between internist, surgeon and anaesthesiologist.

Anesthesia, General↗

Metabolic beta-hydroxylation and N-oxidation of N'-nitrosonornicotine.

3'-Hydroxy-N'-nitrosonornicotine (2), 4'-hydroxy-N'-nitrosonornicotine (3), N'-nitrosonornicotine 1-N-oxide (4) were synthesized and identified as metabolites in the F-344 rat of the tobacco-specific carcinogen N'-nitrosonornicotine (1). For the synthesis of 2, myosmine (5) was converted to 3'-bromomyosmine (6). Displacement by acetate and hydrolysis gave 3'-hydroxymyosmine (7), which was reduced and nitrosated to give 2. 4'-Hydroxymyosmine (13), the precursor to 3, was prepared by ammonolysis of 1,2-epoxy-4-(N-morpholino)-4-(3-pyridyl)-4-cyanobutane (10). N'-Nitrosonornicotine 1-N-oxide (4) was prepared by m-chloroperbenzoic acid oxidation of 1. When 1 was incubated with liver microsomes from Aroclor-pretreated F-344 rats, trace amounts of 2 and 3 were produced and 4 was a major metabolite. The urine from rats treated with N'-nitrosonornicotine-2'-14C contained only trace amounts of 2 and 3, whereas 4 accounted for 6.7-9.4% of the dose.

Animals↗

Identification of mutagenic dihydrodiols as metabolites of benzo(j)fluoranthene and benzo(k)fluoranthene.

The metabolism of the environmental agents benzo(j)-fluoranthene and benzo(k)fluoranthene was investigated using supernatants from the livers of Aroclor 1254-pretreated rats, which are effective in activating benzo(j)fluoranthene and benzo(k)fluoranthene to metabolites mutagenic toward Salmonella typhimurium TA 100. Six bands of metabolites of benzo(j)fluoranthene were separated by high-pressure liquid chromatography, and each band was tested for mutagenicity toward S. typhimurium TA 100 with activation. The major mutagenic band contained two dihydrodiols, one of which was identified as 9,10-dihydro-9, 10-dihydroxybenzo(j)fluoranthene by comparison to a synthetic reference standard. 9,10-Dihydro-9,10-dihydroxybenzo(j)fluoranthene was mutagenic toward S. typhimurium TA 100 with activation, presumably as a result of conversion to the corresponding dihydrodiol-epoxide. The major dihydrodiol metabolite of benzo(k)fluoranthene was identified, by comparison to a synthetic standard, as 8,9-dihydro-8,9-dihydroxybenzo(k)fluoranthene. This dihydrodiol, which could also be converted to a dihydrodiol-epoxide, was mutagenic toward S. typhimurium TA 100 with activation. The results of this study indicate that metabolism to dihydrodiols is one pathway in the activation of benzo(j)fluoranthene and benzo(k)fluoranthene to ultimate mutagens for S. typhimurium TA 100.

Animals↗

The detection of mutagenic air pollutants from filter samples by the Salmonella/Mammalian S-9 mutagenicity test (Ames test) with S. typhimurium TA 98 (Part 1).

Particulate airborne pollutants, collected in 1977 at an urban point in Wanne-Eickel, G.F.R., were investigated for mutagenic activity in the Ames Salmonella/mammalian S-9 mutagenicity tet with S. typhimurium TA98. Two kinds of filters were used: Mikrosorbanfilters (polystyrene) and Membranfilters (cellulose nitrate). Sample preparations obtained following gel chromatography of solutions of the Mikrosorbanfilters showed only weak mutagenic activity. Soxhlet extracts of the Membranfilters gave positive dose-response relations (figs. 3-6), while splitting the initial extract into six fractions resulted in the bacterial reversion rates due to certain sub-fractions increasing over the reversion rates due to the unfractionated preparation (fig. 7). The highest activities were observed in the fractions of the polar compounds and of the polycyclic aromatic hydrocarbons. Some (30-50%) of the mutagenic activity was not enzymatically mediated. GC-MS analysis of the samples demonstrated the presence of an average content of around 11 microgram benzo(a)-pyrene/1000 m3 of air.

Air↗

Assays for metabolic alpha-hydroxylation of N'-nitrosonornicotine and N-nitrosopyrrolidine and the influence of modifying factors.

High-pressure liquid chromatographic methods were developed to study microsomal alpha-hydroxylation, which is likely to be an activation mechanism for N-nitrosopyrrolidine (NPYR) and N'-nitrosonornicotine (NNN). The effects of ethanol, phenobarbital and 3-methylcholanthrene pretreatment on the alpha-hydroxylation of NPYR and NNN were determined using F-344 rats and Syrian golden hamsters. In the rat, 3-methylcholanthrene pretreatment decreased the rates of alpha-hydroxylation of NPYR and 5'-hydroxylation of NNN, but increased the rate of 2'-hydroxylation of NNN. Phenobarbital pretreatment of rats did not markedly affect rates of alpha-hydroxylation of NPYR or NNN. In the hamster, 3-methylcholanthrene pretreatment increased the rate of alpha-hydroxylation of NPYR, but did not affect the rates of alpha-hydroxylation of NNN. Phenobarbital or ethanol pretreatment of hamsters resulted in increased rates of alpha-hydroxylation of NPYR and 5'-hydroxylation of NNN. The induction of alpha-hydroxylation of NNN and NPYR by ethanol suggests that these nitrosamines may be more carcinogenic in alcohol-treated animals.

Animals↗

Chemical studies on tobacco smoke LXVIII. Analysis of volatile and tobacco-specific nitrosamines in tobacco products.

The yields of volatile N-nitrosamines in cigarette smoke are primarily dependent upon the nitrate content of the tobacco and, to some extent, on the protein content. Cellulose acetate tips, such as those found on most commercial filter cigarettes, selectively remove at least 70% of the volatile N-nitrosamines, independently of the pH of the weakly acidic or weakly alkaline smoke. So far, three tobacco-specific N-nitrosamines have been detected in tobacco and tobacco smoke. During tobacco processing and smoking, N'-nitrosonornicotine is formed by nitrosation of nicotine and, to a minor degree, by nitrosation of nornicotine, whereas 4-(N-methyl-N-nitrosamino)-1-(3-pyridyl)-1-butanone originates from oxidative nitrosation of nicotine. N'-Nitrosoanatabine is formed by nitrosation of the second most abundant tobacco alkaloid, anatabine. The tobacco-specific N-nitrosamines in the smoke arise partly from the tobacco by transfer and partly by nitrosation of the alkaloids during smoking (pyrosynthesis). Preliminary results indicate that cellulose acetate filter tips may selectively remove considerable amounts of the nonvolatile nitrosamines from the smoke.

Chromatography, High Pressure Liquid↗

Metabolism of the tobacco specific nitrosamines, N'-nitrosonornicotine and 4-(N-methyl-N-nitrosamino)-1-(3-pyridyl)-1-butanone.

The metabolism, in the F-344 rat, of the tobacco-specific carcinogens, N'-nitrosonornicotine (NNN) and 4-(N-methyl-N-nitrosamino)-1-(3-pyridyl)-1-butanone (NNK) was studied. NNN was hydroxylated at each position of the pyrrolidine ring; 2'-hydroxylation gave 4-hydroxy-1-(3-pyridyl)-1-butanone in vitro and the corresponding acid in vivo, 3'-hydroxylation gave 3'-hydroxyNNN, 4'-hydroxylation gave 4'-hydroxy-NNN and 5'-hydroxylation gave 4-hydroxy-4-(3-pyridyl)butanal (in vitro) and 4-hydroxy-4-(3-pyridyl) butanoic acid (in vivo). The principle ring hydroxylation in the untreated F-344 rat was 5'-hydroxylation. Pyridine N-oxidation was also observed, giving NNN-1-N-oxide as a major metabolite. The principle urinary metabolites of NNN were formed by 5'-hydroxylation and pyridine-N-oxidation. For NNK, a major process was reduction of the carbonyl to give 4-(N-methyl-N-nitrosamino)-1-(3-pyridyl)-1-butanol. alpha-Hydroxylation of both the N-methyl and N-methylene groups was also observed, as was formation of NNK-N-oxide in vitro and in vivo.

Animals↗

Comparative carcinogenicity in F344 rats of the tobacco-specific nitrosamines, N'-nitrosonornicotine and 4-(N-methyl-N-nitrosamino)-1-(3-pyridyl)-1-butanone.

The tobacco-specific carcinogens, N'-nitrosonornicotine (NNN) and 4-(N-methyl-N-nitrosamino)-1-(3-pyridyl)-1-butanone (NNK), were tested for carcinogenicity in F344 rats. Each nitrosamine in trioctanoin was administered by s.c. injection to 12 male and 12 female rats over a period of 20 weeks. The total dose of each nitrosamine was 3.4 mmol. The experiment was terminated after 12 months. NNK induced nasal cavity tumors in 83% of the males and in 83% of the females, liver tumors in 83% of the males and in 100% of the females, and lung tumors in 67% of the males and in 67% of the females. NNN induced nasal cavity tumors in 92% of the males and in 75% of the females. Only one liver tumor and no lung tumors were observed in the NNN-treated rats. These results indicate that, in the F344 rat, NNK is a more powerful carcinogen than is NNN.

Animals↗

Tumor-initiating activity of dihydrodiols formed metabolically from 5-methylchrysene.

The major dihydrodiols formed from 5-methylchrysene by rat liver 9000 X g supernatant were tested for tumor-initiating activity on mouse skin. The compounds tested were 1,2-dihydro-1,2-dihydroxy-5-methylchrysene, 7,8-dihydro-7,8-dihydroxy-5-methylchrysene, 9,10-dihydro-9,10-dihydroxy-5-methylchrysene, and 5-methylchrysene. Each compound was applied in a total initiating dose of 30 microgram and was followed by promotion with tetradecanoylphorbol acetate. 1,2-Dihydro-1,2-dihydroxy-5-methylchrysene was the most powerful tumor initiator, inducing tumors in 95% of the animals and 7.3 tumors per animal. 5-Methylchrysene and 7,8-dihydro-7,8-dihydroxy-5-methylchrysene induced tumors in 75 and 50% of the animals and gave 3.0 and 1.1 tumors per animal, respectively. 9,10-Dihydro-9,10-dihydroxy-5-methylchrysene was not tumorigenic. The results indicate that 1,2-dihydro-1,2-dihydroxy-5-methylchrysene is a major proximate carcinogen of 5-methylchrysene. Both 1,2-dihydro-1,2-dihydroxy-5-methylchrysene and 7,8-dihydro-7,8-dihydroxy-5-methylchrysene can theoretically form bay-region dihydrodiol epoxides, but the former was more tumorigenic than the latter. The high activity of 1,2-dihydro-1,2-dihydroxy-5-methylchrysene is typical of hydrocarbon derivatives with a methyl group in the bay region adjacent to an unsubstituted angular ring.

Animals↗

Hydrazines as mutagens in a histidine-requiring auxotroph of Salmonella typhimurium.

Hydrazines have been found naturally in tobacco and mushrooms. Other hydrazines are used in industry, medicine, and agriculture. Although about 38 hydrazines are carcinogenic, few, if any, have been tested successfully in rapid bacterial mutagenesis assays. We have utilized a tester strain of Salmonella typhimurium (TA1530) in order to determine the mutagenic activity of a number of hydrazines and related compounds. This strain is thus shown to be effective as a tester organism for the facile detection of hydrazines as mutagens.

Dose-Response Relationship, Drug↗

Mutagenicity of aminophenyl and nitrophenyl ethers, sulfides, and disulfides.

The mutagenic activity of several aromatic amines and aromatic nitro compounds related to 4,4'-methylenedianiline towards Salmonella typhymurium tester strains TA100 and TA98 was evaluated. The heteroatomic analogs of 4,4'-methylenedianiline which include aminophenyl and nitrophenyl ethers, sulfides and disulfides were assayed in the presence of rat-liver homogenate. The relative mutagenic response of these analogs indicated the following order of activity, --S-- greater than --O-- greater than --CH2--CH2-- greater than or equal to --S--S--. In both tester strains 4-aminophenylsulfone was inactive with and without microsomal activation. The p-nitrophenyl ethers, sulfides and disulfides were relatively strong mutagens without microsomal activation towards TA100. While 4-nitrophenyldisulfide was found to possess significantly different mutagenic activity than 4-nitrothiophenol in TA98, 4-AMINOPHENYl disulfide has similar mutagenic properties to 4-aminothiophenol in both tester straains TA100 and TA98.

Aniline Compounds↗