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B C Sweatman

Publications and source records attributed to B C Sweatman.

23 records · Page 2Linked to original sources

Pattern recognition analysis of high resolution 1H NMR spectra of urine. A nonlinear mapping approach to the classification of toxicological data.

A computer-based pattern recognition (PR) approach has been applied to the interpretation of 1H NMR generated urinalysis data in a variety of experimental toxicity states in the rat. 1H NMR signal intensities for each endogenous metabolite in urine were regarded as coordinates in multi-dimensional space and analysed using computer pattern recognition methods through which the dimensionality was reduced for display and categorization purposes. Initially 17 metabolic dimensions were used which were defined by the scored relative concentrations of a variety of urinary metabolites detected in 1H NMR spectra. By employing the unsupervised learning methods of 2- and 3-dimensional nonlinear mapping (NLM) different types of toxin (hepatotoxins, cortical and papillary nephrotoxins) could be classified according to NMR-detectable biochemical effects in the urine. The robustness of the classification methods, and the influence of the addition of new scored biochemical data reflecting dose response situations, nutritional effects on toxicity, sex differences in biochemical response to toxins and addition of a new toxin class (testicular toxin) to the pattern recognition analysis were also evaluated. We find that the initial training set maps are fundamentally stable to the addition of all data types and that the PR methods correctly 'predicted' the toxicological effects of the test compounds. These results confirm the power and wide applicability of linked PR and 1H NMR urinalysis as an approach to the generation and classification of acute toxicological data.

Animals↗

The induction of hepatic cytochrome P-450 in C57 BL/10 and DBA/2 mice by isosafrole and piperonyl butoxide. A comparative study with other inducing agents.

The formation of cytochrome P-450 metabolite complexes with isosafrole and piperonyl butoxide in vivo in genetically 'responsive' C57 BL/10 mice and 'non-responsive' DBA/2 mice is described. Displacement of the isosafrole metabolite complex can be brought about by incubation with certain type I ligands. The capacity of isosafrole and piperonyl butoxide to induced cytochrome P-450 was evaluated by measurement of biphenyl 2- and 4-hydroxylase, ethoxyresofurin O-deethylase and ethylmorphine N-demethylase and by sodium dodecyl sulphate (SDS) polyacrylamide gel electrophoresis and compared with results obtained for phenobarbitone, 3-methylcholanthrene and pregnenolone-16 alpha-carbonitrile. All four monooxygenase activities were elevated by isosafrole and piperonyl butoxide, as were cytochrome P-450 levels in both strains of mice. There was a large increase in biphenyl 2-hydroxylase in microsomes from isosafrole treated mice of both strains on displacement of the metabolite complex. SDS polyacrylamide gel electrophoresis demonstrated that isosafrole and piperonyl butoxide induce protein bands of mol. wt., 54000 in both the responsive and non-responsive strains. In addition, piperonyl butoxide induces a protein band of mol. wt. 49000 in both strains of mice. The changes in metabolic activities on pretreatment with isosafrole and piperonyl butoxide do not correspond to those seen with any single inducing agent. The differences in the inducing capabilities of isosafrole and 3-methylcholanthrene in the 'non-responsive' DBA/2 strain are discussed with reference to possible mechanisms of induction by benzodioxole (methylenedioxyphenyl) compounds.

Animals↗

NMR spectroscopy of human post mortem cerebrospinal fluid: distinction of Alzheimer's disease from control using pattern recognition and statistics.

1H NMR spectra have been measured at 500 and 600 MHz on 23 human cerebrospinal fluid samples obtained at autopsy from Alzheimer's disease patients and controls. The spectra at 500 MHz were quantified using 42 descriptors based on NMR peak heights and it was shown that differences between the two classes were apparent in the delta 2.4-2.9 region. Remeasured at 600 MHz a detailed examination of this chemical shift range identified citrate, aspartate, N-acetyl aspartate, methionine and glutamate in this region of the spectra. Principal components analysis showed that a separation of the two classes was possible and detailed statistics indicated that citrate level was the principal marker. Patient age and the interval between death and autopsy (parameters not closely matched between the two groups) were examined statistically to establish whether these might account for the citrate differences. Although they could possibly account for them to some extent, the relationship between citrate levels and disease state remained significant at p < 0.05. The data invite a test of the importance of citrate levels in Alzheimer's disease using samples taken ex vivo.

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