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At least 19 recordsLinked to original sources

A water-extractable toxic compound in vinyl upholstery fabric.

A compound, highly toxic to goldfish, was found to be released from a vinyl (polyvinyl chloride) automotive upholstery fabric when the material was immersed in their water. The compound, a flame retardant used in such material, was identified by specific detector gas chromatography and mass spectrometry as triphenyl phosphate. Fish exposed to the immersed fabric or pure triphenyl phosphate showed neurologic intoxication and extensive histopathologic lesions.

Animals

Sister-chromatid exchanges induced by vinyl esters and respective carboxylic acids in cultured human lymphocytes.

Vinyl acetate--an efficient inducer of sister-chromatid exchanges (SCEs)--is known to be hydrolyzed in mammalian cells into acetic acid and acetaldehyde, the latter being the likely metabolite responsible for the SCE induction. As similar hydrolysis to acetaldehyde and to a carboxylic acid is also expected for other vinyl esters, five such compounds--vinyl formate, vinyl chloroformate, vinyl propionate, vinyl crotonate and vinyl-2-ethylhexanoate--and five carboxylic acids--formic acid, acetic acid, propionic acid, crotonic acid and 2-ethylhexanoic acid--were tested for their ability to induce SCEs in cultured (72 h) human lymphocytes with a 48-h treatment, starting at 24 h after culture initiation. Vinyl formate, vinyl propionate and vinyl crotonate induced a clear dose-dependent increase in the number of SCEs/cell at concentrations of 0.125-0.5 mM and vinyl chloroformate at 0.063-1 mM, i.e., at roughly the same concentration range as vinyl acetate and acetaldehyde. Vinyl-2-ethylhexanoate required slightly higher concentrations (0.25-4 mM) for SCE induction. All of the carboxylic acids tested also elevated SCEs, but only slightly. Formic acid and crotonic acid produced some SCE increase at a concentration of 10 mM, acetic acid at 5 and 10 mM and propionic acid at 2.5 mM. 2-Ethylhexanoic acid induced SCEs at a lower concentration range (0.63-2.5 mM) than the other acids. The positive concentrations of the first three carboxylic acids lowered the pH of the culture medium immediately after the treatment by 0.5-1.0 pH unit (lowest observed pH 6.53). The pH differences from the control cultures became smaller in measurements done 24 h and 48 h after the beginning of treatment. Propionic acid and 2-ethylhexanoic acid affected medium pH only slightly (maximum drop 0.2 pH units) at the concentrations that induced SCEs. The results lend support to the idea that the efficient SCE induction observed with the vinyl esters results from the formation of acetaldehyde, with carboxylic acids--with the possible exception of 2-ethylhexanoic acid--playing no significant role. The slight SCE induction obtained with the carboxylic acids cannot be explained by lowered pH alone.

Carboxylic Acids

Comparison of wool reactions with selected mono and bifunctional reagents.

The molecular structure of wool is discussed in relation to chemical reactivity and the role of disulfide crosslinks. Ideal characteristics of an effective medium (e.g. dimethylformamide) for modifying wool include the ability to penetrate and swell wool without interfering with reagents used. The extent of reaction of wool or reduced wool is compared for mono-and bifunctional activated vinyl compounds, isocyanates, acid chlorides, acid anhydrides, sulfonyl chlorides, and alkyl halides. The degree of crosslinking is assessed by solubility, supercontraction, and tensile tests. Optical and electron scanning microscopy can give evidence of external polymer deposition in contrast to internal chemical modification. Effects of crosslinking by bifunctional reagents are related to changes in mechanical, chemical, and biological (moth-resisting) properties of the modified wool.

Animals

Evaluation of the genetic effects induced by vinyl chloride monomer (VCM) under mammalian metabolic activation: studies in vitro and in vivo.

As part of a programme of investigations on the biological effects of the industrial compound vinyl chloride monomer (VCM), the raw material for the production of polyvinyl chloride (PVC), analyses on the genetic effects by this compound have been done by experiments (in vitro) which have taken mammalian metabolism into account. Vinyl chloride in the presence of purified microsomes (sedimented at 105,000 g) obtained from mouse liver was converted into an active metabolite(s) which produced gene mutations in the yeast Schizosaccharomyces pombe (forward mutation) and gene conversions in two loci of a diploid Saccharomyces cerevisiae. Moreover, the compound was active in the host-mediated assay, when mice were treated with an oral dose of 700 mg/kg. The role is discussed of mutagenicity tests for the prediction of both genetic and carcinogenic risks of chemical compounds in industrial use.

Animals

Audiogenic seizure protection by elevated brain GABA concentration in mice: effects of gamma-acetylenic gaba and gamma-vinyl GABA, two irreversible GABA-T inhibitors.

gamma-Acetylenic GABA and gamma-vinyl GABA, two catalytic irreversible inhibitors of GABA-transaminase, produce marked and sustained elevations in mouse brain GABA concentrations and protect DBA/2 mice against audiogenically induced seizures in a similar dose and time-dependent manner. The acetylenic analog also inhibits GAD activity while the vinyl compound has minimal activity against this enzyme. The increase in brain GABA concentrations induced by these compounds correlates well with attenuation of audiogenic seizure intensity (r = 0.991 and 0.962 for gamma-acetylenic and gamma-vinyl GABA respectively) and with degree of seizure protection (r = 0.974 and 0.834). Seizure intensity is reduced by 50% when brain GABA is increased to 265% and 264% of control values by the two inhibitors and seizure incidence is halved at 322% and 324%. Thus, audiogenic seizure protection in genetically susceptible mice is apparently a function of whole brain GABA concentrations.

4-Aminobutyrate Transaminase

Interferon induction in human lymphocytes by complexes of vinyl copolymers with polynucleotides.

Analogues of the dsRNA poly(I).poly(C), namely double-stranded like complexes of poly(I) or poly(C), respectively, with corresponding vinyl nucleobases copolymerized with various vinyl compounds are highly effective interferon inducers in human lymphocyte cultures. Like poly(I).poly(C) they stimulate the liberation of an inhibitor(s) of interferon activity and, moreover, display mitogenic effect. With respect to the extent of these effects the various inducers differ considerably.

DNA

Mutagenicity and metabolism of vinyl chloride and related compounds.

The various adverse biological effects of vinyl chloride appear to be dependent upon the metabolic conversion of this compound into chemically reactive metabolites. The metabolism of vinyl chloride in mammals and in man, including the formation of monochloroacetic acid and some identified sulfur conjugates is reviewed. Hepatic microsomal mixed function oxidases from rats, mice, and humans were equally effective in transforming vinyl chloride into alkylating agents in vitro. Two of the enzyme reaction products, i.e., chloroethylene oxide and 2-chloroacetaldehyde, showed potent genetic activity in microorganisms and Chinese hamster V79 cells. The role of liver microsomal enzymes in the generation of electrophilic mutagenic vinyl chloride metabolites is discussed.

Animals

[Vinylogous acyl compounds. XV. Thin-layer chromatographic detection of 2-halovinyl ketones with toxicological relevance (author's transl)].

The basic ring-opening of 1-(2-acylvinyl)-pyridinium salts yielding azaoxonol dyes and the spontaneous dehydrohalogenation of 1-(2-acylvinyl)-4-(4-nitrobenzyl)-pyridinium salts to deeply coloured anhydrous bases underlie two sensitive thin-layer chromatographic detection procedures for 2-halovinyl ketones (R-CO-CH=CH-X). The detection limits are 0.06 mug on successive use of methanolic solutions of pyridine and potassium hydroxide as spray reagents and 0.02 mug on spraying with an acetonic solution of 4-(4-nitrobenzyl)-pyridine. RF values of twenty-five trans- and twelve cis-configurated 1-halovinyl ketones for three solvent systems are given.

Chromatography, Thin Layer

[Research in antitumoral chemotherapy. X. Cytotoxic and antitumoral activity of beta-nitrostyrenes and of composed nitrovinyl derivatives].

In previous work the antitumoral cytotoxicity of beta-nitrostyrenes obtained by simplification of the aristolochic acid molecule was demonstrated. The effect of modifying the three characteristic parts of the beta-nitrostyrene molecule has now been investigated. The results obtained in vitro and in vivo allow hypothesis of a mechanism of action for the various beta-nitrostyrene and nitrovinyl compounds studied and definition of the maximum simplification compatible with retention of biological activity.

Animals

[Prevention of abnormalities induced by 2 organophosphate insecticides (parathion and bidrin) in quail embryos].

When Quail embryos, injected with bidrin at the unincubated stage, are treated with nicotinamide, beak and leg abnormalities are prevented, but niacin has no beneficial effect on the axial deformities caused by both parathion and bidrin. In contrast, vertebral defects are greatly reduced by giving pralidoxim, an antidote known and used in organophosphorus intoxications. But this compound has no effect on beak and leg damage caused by bidrin. Two other cholinesterase reactivators, diacetylmonoxime and monoisonitrosoacetone have any effect on organophosphorus abnormalities and have no antiteratogenic action either on the beak and legs or on the vertebral column. From these observations the multiple causes of teratogenic effects induced by organophosphorus compounds are evident. Both aspects of teratogenesis, one related to the nicotinamide level, and the other related to the physiology of the cholinergic system are discussed.

Abnormalities, Drug-Induced