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A Ferke

Publications and source records attributed to A Ferke.

5 recordsLinked to original sources

Histochemical and atomic absorption demonstration of trace metal mobilization in the central nervous system and liver of the rat.

Histochemical and atomic absorption spectrophotometric analysis of trace metal mobilization caused by the action of ethanol in the central nervous system (CNS) and liver of the rat is described. Histochemically it has been shown that in all neurons examined (motoneurons, pyramidal and Purkinje cells) the trace metals (mainly Zn2+ and Cu2+) are mobilized. Most of the stained materials disappear from the perikaryon of the Purkinje cells, while in both the motoneurons and the pyramidal cells the trace metals are displaced from the perikaryon into the axon and axon hillock. At the same time, some of the glia cells display a high metal content. Quantitative determination of the Zn2+ and Cu2+ by means of atomic absorption spectrophotometry reveals that after 2 hours ethanol treatment both the Zn2+ and the Cu2+ levels are decreased in the archicerebellar cortex, while after 4 hours the Zn2+ levels are increased in the cerebrum and the spinal cord. The present observations on the histochemical localization and the contents of zinc and copper in different parts of the CNS and liver reveal the important role of the effect of ethanol on the trace metal mobilization.

Animals

Trace element localization and changes in zinc and copper concentrations during postnatal development of the rat CNS.

Changes in concentration and localization of the trace metals during postnatal ontogenetic development in the archi-, paleo-, and neurocerebellum, the cortex and the spinal cord of the rat have been studied by means of histochemical and atomic absorption spectrophotometric analysis. It has been shown that the trace elements in the different regions of the nervous system become progressively detectable during the postnatal ontogenesis, and in the various structures (PURKINJE cells, pyramidal cells, motoneurons, mossy-fibre terminals) different times are necessary for the attainment of the localization observed in the mature animals. It is suggested that the trace elements may be transported not only intraneuronally, but also from neuron to neuron, from neuron to glia cell, and in the reverse direction, too.

Animals

Ultrastructural identification of neural elements containing trace metals.

The quantitative distribution of heavy metals in the central nervous system was studied by atomic absorption spectrophotometry. It was shown that, of the regions studied, the archicerebellar cortex contains the highest levels of metals. A light microscopical histochemical technique (TIMM silver sulphide method) reveals the neurons and glial cells which possess the trace elements. Ultrastructurally, the staining occurs in different axon terminals, lysosomes, neuronal surface membranes and the cytoplasm of glial cells.

Animals