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DNA adduct formation by mineral oils and their fractions as indicated by 32P-postlabelling: is adduct formation truly indicative of carcinogenic potential?

Oils of differing types, physical properties and carcinogenic activity were tested for ability to produce epidermal DNA adducts 24 h after application to the skin of mice, using the 32P-postlabelling method. Two studies were carried out, the first on three oils to identify the adduct-forming components, and the second on nine oils to investigate whether the nature of the oils affected their adduct-forming potential. In addition to the whole oils, fractions of the oils containing saturated hydrocarbons, 2-6-ring aromatic compounds and polar compounds were tested in both studies in proportion to their concentration in the original oil. In addition, a further examination of the aromatic fractions from two carcinogenic oils was carried out in the first study by testing 2-3-ring and 4-6-ring subfractions (the latter containing carcinogenic polycyclic aromatic compounds (PACs)). Results from the first study indicated that carcinogenic oils do produce adducts and that the adduct-forming components were mainly in the aromatic fraction. When, however, subfractions of the aromatic fraction were examined, it was found that slightly higher adduct levels were produced by the 2-3-ring aromatic fraction than with the 4-6-ring PAC fraction. This was contrary to expectation from published work on the skin carcinogenicity of oils and suggested that some non-carcinogenic PACs may produce adducts. The second study indicated that although most carcinogenic oils produced adducts, some non-carcinogenic oils can also do so.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Isoaspartate formation at position 23 of amyloid beta peptide enhanced fibril formation and deposited onto senile plaques and vascular amyloids in Alzheimer's disease.

Senile plaques and amyloid-bearing vessels consisting of fibrillar amyloid beta peptides (A beta) are characteristic neuropathological features of Alzheimer's disease (AD). A beta undergo spontaneous post-translational modifications, such as isomerization and racemization, at their aspartyl residues in AD brains. Here we present evidence that A beta isomerized at position 23 are deposited on plaques and vascular amyloids using an anti-isomerized A beta antibody. In vitro experiments showed that isomerization at position 23, but not position 7, enhanced aggregation. Furthermore, A beta with the Dutch mutation, but not the Flemish mutation, also showed greatly enhanced aggregation. These results suggest that mutations or modifications at positions Glu 22 and Asp 23 have a pathogenic role in the deposition of A beta. The development and progression of sporadic AD may be accelerated by spontaneous isomerization at position 23 of A beta.

Aged↗

Kinetic studies on the formation of nitrosamines I. Formation of dimethylnitrosamine in aqeous solution of perchloric acid.

The kinetics of nitrosation of dimethylamine (DMA) in aqueous perchloric acid solution have been studied using a differential spectrophotometric technique. The rate law is Initial rate = e[DMA]0 [nitrite]2 0 [H+]/(f + [H+])2 where [DMA]0 and [nitrite]0 represent initial stoichiometric concentrations. At 310.0 K and mu = 2.0 M, e = (2.2 +/- 0.2) X 10(-5) M-1 s-1 and f = (1.28 +/- 0.02) X 10(-3) M. The associated activation energy is 56 +/- 3 kJ mol-1. A clear inhibition of the nitrosation rate by ionic strength has been observed in which only the kinetic parameter (f) has an effective change. It is concluded that under the experimental conditions of this work only the dinitrogen trioxid is the effective carrier for the nitrosation.

Dimethylnitrosamine↗

[Influence of nystatine, a polyene antibiotic, on the formation of complex-bound sterols and the formation of conidia by Coprinus cinereus (author's transl)].

In contrary to the wild strain, a monocaryotic mutant of Coprinus cinereus (basidiomycete) does not contain hydrosoluble, complex-bound sterols. Under nystatine-treatment, however, the mutant is induced to produce this kind of stereols in abundance. Furthermore, nystatine highly increases sporulation of the mutant and decreases sporulation of the wild strain.

Agaricales↗