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A Rotter

Publications and source records attributed to A Rotter.

At least 55 records · Page 3Linked to original sources

Cerebellar histamine-H1 receptor distribution: an autoradiographic study of Purkinje cell degeneration, staggerer, weaver and reeler mutant mouse strains.

The distribution of 3H-mepyramine binding sites in cerebellae of normal mice and Purkinje cell degeneration, staggerer, weaver and reeler mutant mice was studied by light microscopic autoradiography. The binding of 3H-mepyramine to 20 micron coronal sections through the cerebellum and medulla had the characteristics expected of histamine-H1 receptor labeling. In the cerebellar cortex of normal mice, a high density of 3H-mepyramine binding was observed over the molecular layer and an intermediate density over the Purkinje cell layer, while the granule cell layer and white matter were almost devoid of labeling. The deep cerebellar nuclei were labeled to an intermediate density. In the 54 day old Purkinje cell degeneration mutant cerebellum, which is depleted of Purkinje cells, a greatly reduced labeling of the cerebellar cortex was observed. Labeling in the deep cerebellar nuclei was unaffected. In the 27 day old staggerer cerebellum, a mutation characterized by Purkinje cells which are almost devoid of spines and which do not form synaptic contacts with granule cells, a higher than normal grain density was seen over the cerebellar cortex, while normal grain density was observed over the deep cerebellar nuclei. The cerebellar cortex of 81 day old weaver mice, which is almost devoid of granule cells, had a high grain density over medial regions of the cortex, while the portion of the granule cell layer which remained relatively unaffected in the lateral parts of the cerebellum was unlabeled. The deep cerebellar nuclei had grain densities similar to littermate controls. In the 29 day old reeler cerebellae, which contain malpositioned Purkinje cells, high grain density regions corresponding to the heterotopically located Purkinje cells were observed. The present observations suggest that cerebellar cortical histamine-H1 receptors are associated predominantly with Purkinje cells. Furthermore, the expression of these H1 receptors appears not to be adversely affected by several alterations in the Purkinje cell environment, which have previously been shown to dramatically influence Purkinje cell morphology.

Animals↗

Glycine receptor distribution in mouse CNS: autoradiographic localization of [3H]strychnine binding sites.

Biochemical and electrophysiological studies of mammalian CNS indicate that the amino-acid, glycine, is a major inhibitory neurotransmitter whose location is, for the large part, confined to the spinal cord and brain stem. In this study, autoradiographs of C57BL/6J mouse brain sections labeled with [3H] strychnine, a potent antagonist of glycine, were used to map the distribution of glycine receptors in the CNS. Autoradiographs showed highly localized areas of grain density, which confirmed the gross distributions described in homogenate binding studies and gave a more precise regional localization of glycine receptors in this animal. The highest overall labeling was observed in the spinal cord and medulla; areas of highest grain density included the dorsal horn of the spinal cord, the cranial nerve nuclei, the dorsal column nuclei and nuclei of the medullary reticular formation. A decrease in overall grain density was observed rostrally throughout the midbrain and pons; in caudal regions, however, dense labeling was observed over the trigeminal, vestibular and facial nuclei and over the major nuclei of the auditory system. In more rostral areas, the interpeduncular nucleus and the substantia nigra were also clearly delineated, as were certain thalamic nuclei. The cerebellum, cortex, hippocampus and olfactory bulbs showed only very low levels of grain density. In summary, it appears that high concentrations of glycine receptors in the brain and spinal cord may be preferentially localized to neurons involved in the processing of information originating from exteroceptive sensory mechanoreceptors.

Animals↗

Regulation of glycine receptor binding in the mouse hypoglossal nucleus in response to axotomy.

Recent studies have shown that muscarinic receptors in brain hypoglossal nuclei exhibit a loss of specific ligand binding in response to axotomy of the hypoglossal nerve. The mouse hypoglossal nucleus contains a high level of receptors for the inhibitory neurotransmitter, glycine; the ligand [3H]strychnine binds to the glycine receptor with high affinity. In the present study [3H]strychnine binding in mouse hypoglossal nuclei was examined at 1 to 150 days after unilateral lesions of the hypoglossal nerve. Brains were sectioned on a cryostat, thaw-mounted onto microscope slides, incubated with [3H]strychnine and processed for light microscopic autoradiography. Receptor density was assessed by counting silver grains in photomicrographs of operated and control nuclei. During the first 25 days after axotomy grain density fell to 50 percent of that of the control nucleus. After this time grain density slowly increased, returning to control levels by 150 days post lesion. These data indicate that glycine receptors on the axotomized cells of the hypoglossal nucleus are lost when connection with the target muscles of the tongue is interrupted, and that the receptors reappear when the hypoglossal nerve regenerates. It is suggested that excitatory and inhibitory neurotransmitter receptor systems may be regulated in a coordinated fashion by the functional state of the motoneuron.

Animals↗

Localization of substance P, acetylcholinesterase, muscarinic receptors and alpha-bungarotoxin binding sites in the rat interpeduncular nucleus.

On the basis of acetylcholinesterase (AChE) staining, the rat interpeduncular nucleus was subdivided into five distinct zones. Intense AChE staining was observed in the dorsal cap and the lateral zones. Moderate staining was seen in the median zone and the dorsoventral column. The perivascular zones were unlabeled. Adjacent sections were stained for AChE and for substance P immunofluorescence. Substance P like immunoreactivity was found to coincide with the localization of AChE in the dorsal cap and the lateral zones. Both muscarinic receptors and alpha-bungarotoxin binding sites had distributions resembling that of AChE. Neither unilateral nor bilateral lesions of the habenulae changed the number or distribution pattern of the receptors. It was concluded that cholinergic receptors are localized postsynaptically. Our study suggests AChE and substance P containing fibers terminate in well defined zones of the interpeduncular nucleus which also contain muscarinic and nicotinic receptors.

Acetylcholinesterase↗

Dynamics of changes in the blood coagulation system, fibrynolysis and kallikreinogenesis in endotoxin shock in rabbits.

In rabbits intravenous injection of subtoxic doses of E. coli endotoxin serotype 02:K1 (10 micrograms/kg), resulted in the activation of intrinsic and extrinsic pathways of blood coagulation and, in some animals, simultaneous fall of the fibrinolytic activity which was manifested by hypercoagulability and intravascular coagulation already at the initial stage of the endotoxin shock. Among the earliest changes which appeared 30 min after endotoxin injection, was a decrease of blood platelets count and concentration of factor X in plasma. Out of the blood coagulation tests performed, most sensitive appeared the paracoagulation tests (particularly ethanol test). The second dose of endotoxin (20 micrograms/kg) injected 4 h later intensified the observed changes and autopsy of animals performed after further 4 h revealed extravasations of blood and hemorrhagic changes in the lungs, liver and occasionally in the kidneys. In spite of the above alterations, AT-III activity in the animals plasma decreased by ca. 30% as compared to the initial value.

Animals↗

Modulation of synapse formation by cyclic adenosine monophosphate.

Synapses between neuroblastoma-hybrid cells and myotubes exhibit a high degree of plasticity. Increase of cyclic adenosine monophosphate (AMP) levels of the hybrid cells for several days results in the appearance of functional voltage-sensitive Ca2+ channels, which are required for evoked secretion of acetylcholine. The results show that cyclic AMP regulates synaptogenesis by regulating the expression of voltage-sensitive Ca2+ channels, and suggest that cyclic AMP affects posttranslational modifications of some glycoproteins and cellular levels of certain proteins.

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Neurochemical identification of cholinergic forebrain projection sites of the nucleus tegmentalis dorsalis lateralis.

The projection sites of the nucleus tegmentalis dorsalis lateralis (ntdl) were examined in rats by a biochemical technique. The ntdl was destroyed unilaterally and brains were assayed after 14 days survival for changes in choline acetyltransferase activity in discrete brain areas. A bilateral projection appears to exist to the anteroventral and the posterior nucleus of the thalamus. An ipsilateral projection to the lateral portion of the medial thalamic nucleus and the ventral geniculate was found. It is suggested that the nucleus tegmentalis dorsalis lateralis may play a role in the modulation forebrain areas.

Acetylcholinesterase↗