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A H Tissari

Publications and source records attributed to A H Tissari.

11 recordsLinked to original sources

Synaptosomal dopamine autoreceptors: sensitivity changes after in vitro and in vivo treatments.

Dopamine (DA) synthesis in rat striatal synaptosomes was approximately doubled either by treating the animals from which the synaptosomes were obtained with reserpine, or by treating the preparations in vitro with d-amphetamine, ouabain or dibutyryl cyclic AMP. The concentration-response curve of DA synthesis inhibition by apomorphine was shifted to the right after treatment with all these compounds. The inhibitory effect of bromocriptine on DA synthesis was reduced completely after treatment with all the above compounds with the exception of dibutyryl cyclic AMP. When the inhibitory effect of bromocriptine was eliminated by treatment with reserpine or d-amphetamine, bromocriptine antagonized the inhibitory effect of apomorphine. This indicates that bromocriptine could still be bound to the DA autoreceptors and that the reduced sensitivity was due to a reduced functioning of the DA autoreceptors. The reduced sensitivity to apomorphine observed after all the above treatments was possibly due both to a reduced function of and/or to a reduced binding to the DA autoreceptors. The increase in DA synthesis produced by treatment with reserpine in vivo or with d-amphetamine or ouabain in vitro was additive to that produced by a maximally effective concentration of dibutyryl cyclic AMP in vitro, and thus mediated by a presumably non-cyclic AMP-dependent mechanism. Our results obtained with bromocriptine suggest that stimulation of the DA autoreceptors may inhibit DA synthesis by diminishing Ca2+-dependent and not cyclic AMP-dependent phosphorylation of tyrosine hydroxylase.

Animals

Foot-shock stress accelerates non-striatal dopamine synthesis without activating tyrosine hydroxylase.

Electric foot-shock stress (20 min) increases DOPAC content in the frontal cortex (by about 80%) and in the nucleus accumbens (by 35%) but not in the striatum. However, foot shock stress failed to modify the kinetic properties of tyrosine hydroxylase (Vmax, Km for DMPH4 cofactor) in any of the above areas. Similar results were obtained in rats in which noradrenergic terminals in the n. accumbens and in the frontal cortex had been eliminated by injection of 6-OH-dopamine into the ascending dorsal noradrenergic bundle. The results support the hypothesis that limbic and cortical DA is involved in emotional states and indicate that DA synthesis may be regulated independently from changes in the kinetics properties of tyrosine hydroxylase.

3,4-Dihydroxyphenylacetic Acid

Ultrastructure of synaptosomes from fetal rat brain.

The crude mitochondrial fraction P2 and subfractions of P2 were prepared from the brain stem, hemispheres and whole brain of 19-day-old fetal rats. Samples were fixed in glutaraldehyde-osmium, NaMnO4 or by Tranzer's triple fixation method (aldehydr-chromate-dichromate-osmium) and examined by electron microscopy. The C-fraction from whole brain was the main synaptosome fraction, containing 3.2% presynaptic terminals as counted from all membrane bound particles. The brain stem showed more presynaptic terminals than the hemisphere (2.8% versus 0.9%) suggesting a caudal-rostral maturation gradient for synaptogenesis. The maturity of the nerve endings obtained was very variable in contrast to the rather uniform synaptosomes derived from adult tissue. They varied from profiles without any substructures to mature synaptosomes displaying asymmetric synaptic junctions. Monoamine synaptosomes containing small granular vesicles were not detected in the present study, suggesting immaturity of the granular monoamine pool at this stage of development.

Animals

Ultrastructural identification of monoaminergic synaptosomes from one day old rat brain.

Synaptosomes from one day old and adult rat brain were studied. Specific cytochemical methods for demonstrating monoaminergic (MA) nerve endings were used. Permanganate fixation after preincubation with 5-OHDA or alpha-methyl-NA demonstrated MA synaptosomes. Their number was small in the adult (less than 1 %) and still smaller in the one day old rat brain. The MA synaptosomes from developing rats were different from the adult ones. The large amount of endoplasmic reticulum in developing synaptosomes suggests that granular vesicles are formed from endoplasmic reticulum in nerve endings.

Animals

Synaptosomes containing large agranular vesicles isolated from developing rat brain.

Using the subcellular fractionation technique the fine structure of the isolated nerve endings (synaptosomes) from the hemispheres and brain stem of the 1-day old and adult rat was examined. In the synaptosomal fractions of the brain of 1-day old rats we observed a new type of nerve endings containing predominantly large agranular vesicles about 1,000 A in diameter. After incubation with alpha-methylnoradrenaline or 5-hydroxydopamine these vesicles remained agranular. It is assumed that the new type of large vesicles represent developing synaptic vesicles.

Age Factors

Pharmacological and ultrastructural maturation of serotonergic synapses during ontogeny.

Studies were made on the course of maturation of serotonergic synapses during ontogeny in rat brain. Mature synaptosomes containing the same five types of synatic vesicles as in the adult, including small dense core vesicles, could be isolated in low proportion from the brain of 1-day-old rats. Although the buoyant density of these synaptosomes varied more than in the adult, the 5-hydroxytryptamine (5-HT) synaptosomes at the two age groups had similar sedimentation characteristics. Ouabain and imipramine, which block active transport of 5-HT, and reserpine, which blocks its granular storage, resulted respectively in a similar slight inhibition of uptake and accumulation of (-14C)5-HT in synaptosomes of 19-day foetuses. Transport and storage of (-14C)5-HT in the brain stem matured simultaneously with endogenous 5-HT content. In subcellular fractionation of the brain 5-HT content, the percentage of 5-HT in the supernatant was significantly lower in neonatal than in adult rats. After treatments with monoamine oxidase inhibitors (MAOIs) and reserpine plus MAOI, respectively, the maximum brain content and subcellular distribution of 5-HT were similar in 1-day-old and adult rats; the result suggests the existence of some other binding mechanism besides the Mg++-ATP-dependent granular storage. Imipramine and N,N-dimethyltryptamine, which cause stimulation of 5-HT receptors, decreased the turnover of brain 5-HT by 40% in adults but had no effect in neonatal rats. Immobilization increased the turnover of brain 5-HT by 35% in adults but had no effect in neonatal rats, whereas fasting increased it by 20% in adults and by 150% in neonatal rats. At 3 weeks of age the responses to imipramine, immobilization and fasting resembled those seen in adults. These responses occurred later than the appearance of the endogenous content, transport and storage of 5-HT and may require maturation of synaptic junctions, the latest neuronal structures to develop.

5-Hydroxytryptophan