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Biomedical subjects

L Zimmer

Publications and source records attributed to L Zimmer.

24 records · Page 2Linked to original sources

Bile salt sulfotransferase: alterations during maturation and non-inducibility during substrate ingestion.

Development of the capacity for hepatic biotransformation of potentially toxic, endogenous compounds such as lithocholate may be dependent on induction by substrate or hormonal modulation. Our aim was to observe the ontogeny of hepatic sulfotransferase (ST) activity, a presumed detoxification pathway, and to determine the effect of substrate ingestion and cortisone administration on ST activity. Pregnant rats were fed a standard chow diet containing lithocholate; the maternal diet was continued during the suckling and weaning phase of the pups. Liver cytosol and serum were obtained from dams and from pups at weekly intervals from fetal life through 4 weeks of age. In controls, there was a progressive increase in hepatic ST activity from 6.2 +/- 2.9 pmol/mg protein per min, (mean +/- SEM) in fetal liver, 18.1 +/- 3.9 at 1 week, an 33.6 +/- 7.2 at 2 weeks to a peak of 56.4 +/- 11.8 at 3 weeks of age. In female rats older than 4 weeks of age, ST activity in hepatic cytosol was threefold higher than in males. There was a decline to adult levels (9.2 +/- 2.4 in males and 39.4 +/- 4.3 in females) at 56 days of life. Cortisone acetate administration had no effect on enzyme activity in pups except those 3 weeks old or older in which there was a precocious decrease in enzyme activity to adult levels. The administration of lithocholate caused a dose-related postnatal alteration of intrahepatic bile ducts manifest as cholangitis with ductular proliferation; hepatocytes were spared.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging↗

Motor development, tissue weights and seizure susceptibility in perinatally lead-exposed rats.

Motor impairments and seizures are frequent neurologic sequelae of excess lead exposure in children. To evaluate the relative significance of such symptoms in an animal model, Long-Evans rats were lead-exposed from parturition to weaning by adulteration of the dams' drinking water with 0.02% or 0.2% lead acetate. Ontogeny of swimming ability from 6 through 24 days of age was not altered by postnatal lead exposure. Rotorod performance was tested on 21, 30, 60, 90, 150 and 440 days of age and was maximal in rats 30 through 150 days of age, with the poorest performance by 440-day-old rats. Rotorod performance was decreased by both levels of lead exposure and this effect was most evident at 60 and 150 days of age. Both levels of lead exposure increased kidney weights of dams at weaning and the 0.2% lead acetate exposure decreased hematocrit of dams. Kidney weights of lead-exposed pups were not increased at 10 days of age, but pups in the 0.2% lead acetate group had increased kidney weights at 20, 90 and 150 days of age. Hematocrit values of pups in the 0.2%, but not in the 0.02%, lead acetate exposure group were decreased at 20 days of age. No effects of lead exposure on hematocrits were found at 10, 90 or 150 days of age. Wet weight of brain, cerebellum, adrenals, spleen and thymus were not altered at any age by postnatal lead treatment. In a second study, Sprague-Dawley rats exposed to lead via dams drinking 0.2% lead acetate throughout gestation and lactation. Pre- and postnatal lead exposure did not alter the ontogeny of electro-shock seizure thresholds in rats tested on 8 through 20 days of age. The results suggest that the lead exposure levels used were at or near a no-effect level for several common neurobehavioral tasks and that kidney weight may be a more discriminative index of excess lead exposure than some simple neurobehavioral indices.

Animals↗