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J Frangia

Publications and source records attributed to J Frangia.

3 recordsLinked to original sources

Effects of spinal transection on presynaptic markers for glutamatergic neurons in the rat.

To evaluate the hypothesis that glutamic acid may be the neurotransmitter of descending, excitatory supraspinal pathways, the uptake and release of L-[3H] glutamate and the levels of endogenous glutamate were measured in preparations from rat lumbar spinal cord following complete mid-thoracic transection. Following transection, the activity of the synaptosomal high-affinity glutamate uptake process was increased in both dorsal and ventral halves of lumbar cord between 1 and 14 days after transection and returned to control levels by 21 days posttransection. At 7 days, the increased activity of the uptake process for L-[3H]glutamate resulted in elevation of Vmax with no significant alteration in KT as compared to age-matched controls. Depolarization-induced release of L-[3H]glutamate from prelabeled slices did not differ significantly from control in the lesioned rat except at 21 days after lesion when the amount of tritium release was significantly greater in the transected preparations than in control. Amino acid analysis of the lumbar cord from control and transected rats indicated only a 10% decrease in the level of endogenous glutamate and no alterations in the concentration of GABA and glycine 7 days after lesion. These findings do not support the hypothesis that glutamate serves as a major excitatory neurotransmitter in supraspinal pathways innervating the lumbar cord of the rat.

Animals↗

Cerebroside sulfotransferase: preparation of antibody and localization of antigen in kidney.

This immunohistochemical study describes the localization of the enzyme cerebroside sulfotransferase (phosphoadenosine phosphosulfate: galactosylceramide sulfotransferase, EC 2.8.2.11) in rat kidney. The enzyme was purified from kidney and the preparation was used to raise antibodies for immunocytochemical investigations. In the kidney, the antigen was present only on the brush border of the epithelial cells of the proximal tubules, suggesting that sulfation of glycolipids occurs in the cytoplasm and plasma membranes of these specific cells. Moreover, biochemical and immunocytochemical studies of cerebroside sulfotransferase during development indicate that catalytic activity is correlated with the appearance of enzyme protein.

Animals↗

Chronic lead intoxication: effects on developing optic nerve.

The effects of chronic lead intoxication were studied by examining the optic nerve of mice given lead-containing mother's milk from day 1 to day 21 of life. Biochemical assays for myelin basic protein, 2',3'-cyclic nucleotide phosphodieterase, and cerebroside sulfotransferase showed that the total amount of myelin produced by the lead-exposed animals was decreased. Lead exposure did not alter the number of oligodendroglia or the relationship between axons and myelin sheaths. The hypomyelination was paralleled by a reduction in size of optic axons in the lead-exposed animals. The data suggest that chronic exposure to lead in developing mice results in a primary effect on neurons and that hypomyelination is secondary to reduction in axon size.

2',3'-Cyclic-Nucleotide Phosphodiesterases↗