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Biomedical subjects

M Doss

Publications and source records attributed to M Doss.

At least 127 records · Page 7Linked to original sources

Hexachlorobenzene porphyria in rats as a model for human chronic hepatic porphyrias.

1. Hexachlorobenzene porphyria in the rat provides a suitable experimental model of the stages of development of human chronic hepatic porphyria. Just as in chronic hepatic porphyria in man, the development of experimental HCB porphyria in the rat can be divided into several stages. 2. The findings in this study indicate that porphyrins increase in the urine, liver, kidney, and spleen, and to a lesser degree in the serum, with uroporphyrin and heptacarboxylic porphyrin predominating. 3. In contrast to the distribution of porphyrin accumulation in the various organs, clear evidence of a uroporphyrinogen decarboxylase defect was found only in the liver. Formation of uroporphyrin and heptacarboxylic porphyrin by homogenized HCB kidney tissue did not deviate significantly from that by control kidney. The defect could not be unequivocally evaluated in the spleen because the spleen, like the red cells, normally forms considerable amounts of uroporphyrin from porphobilinogen, which were increased only a few times over in synthesis by the HCB spleen. 4. Isomer studies provide no evidence for an additional uroporphyrinogen cosynthase defect.

Aminolevulinic Acid↗

Porphyrin biosynthesis from ALA and PBG by human erythrocytes in porphyrin disorders. Kinetic studies of the isomer series I and III.

Porphyrin biosynthesis from exogenous ALA and PBG was observed over a period of from 1 to 8 hours in hemolysates of red blood cells from patients with AIP, PCT, and EPP. In all these conditions all porphyrins in the biosynthetic pathway through to PROTO were formed, with URO as the dominant component. Compared to normals, total porphyrin synthesis was lowered during the entire incubation period in both AIP and EPP, but enhanced in PCT. In hemolysates after 1 hour the second component of the pattern in AIP is COPRO, in PCT HEPTA and in EPP PROTO. Of the isomers, COPRO III predominates in all conditions (greater than 80%), whereas URO contains more isomer I than III. In intact red cells from controls, AIP, and PCT, COPRO is always the main component formed from ALA. Total synthesis is diminished in AIP by about 50%, in analogy to the findings on hemolysates from AIP. In heated hemolysates URO formation is diminished by half in AIP, but nearly double control values in PTC. In this sense URO'gen-I-synthase activity is increased in PCT. These findings reflect the underlying enzymatic defect: Diminished URO'gen-I-synthase activity in AIP, diminished URO'gen decarboxylase activity in PCT, and diminished activity of ferrochelatase in EPP.

Aminolevulinic Acid↗

Separation of the coprophorphyrin isomers I and III by thin-layer chromatography.

An improved, specific and sensitive method for the determination of the coproporphyrin isomers I and III is described. In this method, the hydrolysis of the coproporphyrin methyl esters takes place in the silica gel layer of acid-resistant pre-coated thin layer plates. After chromatography in the solvent system 2,6-dimethylpyridine/water, (volume ratio 20 ml + 6 ml), in an ammonia atmosphere, the isomers are measured, either directly in the silica gel layer by fluorimetry, or after elution in 1.0 mol/l hydrochloric acid. The technique makes analysis in the nanogram range possible. See article.

Chromatography, Thin Layer↗