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Biomedical subjects

M Macek

Publications and source records attributed to M Macek.

At least 91 records · Page 5Linked to original sources

Gamma-glutamyl transferase activity in the amniotic fluid of fetuses with chromosomal aberrations and inborn errors of metabolism.

The activity of gamma-glutamyl transferase (GGT) was measured in amniotic fluid collected between the 16th and 30th weeks of gestation from 81 pregnancies with fetuses affected by chromosomal aberrations, nine with different types of inborn errors of metabolism, two with hemophilia A and one with fragile X syndrome. The GGT activity was compared with that from 1000 normal pregnancies and deliveries resulting in healthy newborns. Contamination of amniotic fluid by blood did not affect the GGT activity. Pathologically decreased activity was found in 25 of 56 amniotic samples from pregnancies with fetal autosomal chromosomal aberrations (44.6%). It was decreased in 15 of 35 pregnancies with fetal trisomy 21 (43%), in 11 of 19 pregnancies with fetal trisomy 18 (58%), in one of three pregnancies with fetal trisomy 13 and in two pregnancies with fetal trisomy 8 and triploidy, respectively. In only three of 16 pregnancies with fetal sex chromosomal aberrations was the GGT activity low. Increased GGT activity was found in three of six pregnancies with unbalanced structurally rearranged karyotypes of the fetuses. Normal GGT activity was observed in all nine amniotic fluid samples from pregnancies with fetuses affected with different forms of inborn errors of metabolism diseases, in the two pregnancies with hemophilia A and in the pregnancy with a male fetus with fragile X syndrome. These and earlier findings indicate that the GGT activity in amniotic fluid is mostly decreased in pregnancies with severe fetal developmental abnormalities, such as autosomal chromosomal aberrations, which could possibly be secondary to an alteration of the microvillar transport system of GGT to the amniotic fluid.(ABSTRACT TRUNCATED AT 250 WORDS)

Amniotic Fluid↗

Prenatal diagnosis of GM2 gangliosidosis with high residual hexosaminidase A activity (variant B1; pseudo AB variant).

A case of infantile GM2 gangliosidosis with high residual beta-hexosaminidase A activity toward the synthetic substrate 4-methylumbelliferyl-2-acetamido-2-deoxy-beta-D-glucopyranoside was diagnosed prenatally. Extracts from cultured amniotic fluid cells of the fetus had a hexosaminidase A activity of 27% of total hexosaminidase but were almost completely unable to degrade [3H]ganglioside GM2 (less than 0.5% of control values) when assayed in the presence of the natural activator protein. These results were confirmed by analyses of fetal muscle fibroblasts, liver, and brain. All tissues examined showed a profound deficiency of ganglioside GM2 galactosaminidase despite hexosaminidase A levels in the heterozygote range. In brain tissue, ganglioside GM2 content was elevated more than 4-fold. Hydrolysis of p-nitrophenyl glucosaminide-6-sulfate, a substrate specific for hexosaminidases A and S, by tissue extracts was also markedly reduced but the residual activities found (5% in liver, 12% in fibroblasts, and 16% in brain) were much higher than those with the physiological lipid substrate, ganglioside GM2.

Amniocentesis↗

Liver findings in Niemann-Pick disease type C.

A complex analysis of liver from a series of eight cases of Niemann-Pick disease type C showed practically generalized storage of glycolipids and phosphoglycerides by chemical and histochemical techniques. In six of the eight cases the storage process was of low degree, barely recognizable by routine histology, but well recognizable by histochemistry and electron-microscopy. In two cases it was marked and led to early functional impairment of the liver. Changes in various enzyme activities and in ultrastructural features of the storage process are described. Sphingomyelin was found to participate to a very low low degree and its accumulation was not proportional to the extent of overall storage. In two cases with prominent involvement of the liver normal levels of sphingomyelin were found. In other cases sphingomyelin was found, by lipid histochemistry, to be stored only in macrophages. To stress that the storage process in Niemann-Pick disease type C is qualitatively different a comparison was made with liver findings in sphingomyelinase-deficient patients. This feature is of practical as well as theoretical importance.

Acid Phosphatase↗