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Biomedical subjects

A McRae-Degueurce

Publications and source records attributed to A McRae-Degueurce.

27 records · Page 2Linked to original sources

Alterations in tyrosine hydroxylase activity elicited by raphe nuclei lesions in the rat locus coeruleus: evidence for the involvement of serotonin afferents.

The time course of the variations in tyrosine hydroxylase (TH) activity was measured in the rat locus coeruleus (LC) after lesions of the nucleus raphe dorsalis (NRD), nucleus raphe centralis superior (NRCS) and nucleus raphe pontis (NRP). A certain number of lesions were performed in the raphe magnus (RM), the caudal and rostral NRP and the caudal and rostral NRCS, lateral to raphe nuclei and in adrenalectomized animals. The serotonin (5-HT) content in the LC was also determined after these lesions. Only raphe nuclei producing significant decreases in the 5-HT content in the LC are successful in provoking increases in the TH activity in the LC, thus these results suggest that the noradrenaline (NA) synthesis in the LC may be regulated by 5-HT afferents. Moreover, intraventricular injections of 5,6-dihydroxytryptamine (5,6-DHT) and administration of parachlorophenylalanine (PCPA) also produce significant increases in TH in the LC. After immunotitrations of TH in the LC it was shown that, with exception of a high dose of 5,6-DHT (75 micrograms), all these treatments provoke an increase in the concentration of the enzyme. It therefore seems that one of the functional roles of 5-HT in the LC could be the regulation of the concentration of TH.

5,6-Dihydroxytryptamine↗

The viability of transplants of mesencephalic raphe nuclei in the IVth ventricle of the adult rat.

Mesencephalic raphe nuclei were transplanted via the cisterna magna near the locus coeruleus. The transplants were observed at different time intervals ranging from 24 h to 4 months. Microscopic observations revealed that from 3 weeks to 4 months the transplant developed with a well-defined neural organization. Radioautographic results showed that some of the neurons in the implant at 3 weeks captured and retained [3H] serotonin. These results indicate that the intact IVth ventricle seems to be a likely culturing floor for mesencephalic raphe nuclei.

Animals↗

Functional recuperation of the serotoninergic innervation in the rat locus coeruleus.

1. 5,6-dihydroxytryptamine (5,6-DHT) or a lesion of the raphe centralis superior (RCS) cause significant decreases in the serotonin (5-HT) content and significant increases in the tyrosine hydroxylase activity in the locus coeruleus (LC) of the rat. This suggests that noradrenaline (NA) synthesis is controlled by serotonin-containing neurons in the raphe system via their terminals in the LC. 2. Radioautography after intraventricular infusion of tritiated serotonin (3H-5-HT) and biochemical determinations of endogenous 5-HT content showed an almost complete disappearance of serotoninergic axonal varicosities and content in the LC region 10-15 days after intraventricular administration of 75 micrograms of 5,6-DHT. Two to 4 months after neurotoxin administration, 5-HT fibers had regrown in the LC but, contrary to the normal innervation pattern, the majority of them invaded the medial most portion of the nucleus and the adjacent subependymal region. The LC region regained almost all of its endogenous 5-HT content in the same time period. 3. Functional recuperation of these 5-HT fibers was demonstrated by the fact that the RCS had, after regeneration, the same functional control on NA synthesis as in the normal animal.

5,6-Dihydroxytryptamine↗

Alteration of tyrosine hydroxylase activity in the locus coeruleus after administration of p-chlorophenylalanine.

The time course of the variations in tyrosine hydroxylase activity (THA) and serotonin (5-HT) content were measured in the rat locus coeruleus after parachlorophenylalanine (PCPA) administration. Highly significant decreases in the 5-HT content in LC were found 24-48 h after PCPA treatment (300 mg/kg daily). An increase in THA (in the LC) was found to be significant 4 days after 2 successive injections of PCPA and after 4 successive injections of the drug THA gradually increased, reaching a maximum around 4 days after the last injection. This maximum increase in THA was greatly reduced when 5-HTP was simultaneously administered with PCPA. These results join others which suggest that a serotonin-mediated mechanism could be one of the processes controlling noradrenaline metabolism in the locus coeruleus.

Animals↗

Genetic studies of daily variations of first-step enzymes of monoamines metabolism in the brain of inbred strains of mice and hybrids. I. Daily variations of tryptophan hydroxylase activity in the nuclei raphe dorsalis, raphe centralis and in the striatum.

A daily variation of tryptophan hydroxylase (TrH) activity was observed in the raphe dorsalis (RD), raphe centralis (RC) and striatum (St) of 3 inbred strains of mice (BALB/c, C57BL/6, C57BR) and of the reciprocal hybrids obtained from Balb/c and C57BL6. Significant differences of the characteristics of these rhythms have been found in the same strain between different structures and for the same structure between different strains. In RD and RC hybridization led to less defined daily variations which, in the striatum, remained well synchronized and could be controlled by a dominant genetic mechanism part. These results help to discuss evidence for selective control mechanisms of regulation responsible for daily variation of TrH in the 5-HT cell bodies and terminals and their relative independence.

Animals↗

Genetic studies of daily variations of first-step enzymes of monoamines metabolism in the brain of inbred strains of mice and hybrids. II. Daily variations of tyrosine hydroxylase activity in the locus coeruleus.

Daily variations of tyrosine hydroxylase (TH) activity in the locus coeruleus of 3 inbred strains of mice (BALB/c; C57BL6; C57Br) and the F1 hybrids obtained from BALB/c and C57BL/6 are discussed. Precise characteristics of the circadian rhythms were observed in each strain. They were found significantly different in two genetically pure parents (BALB/c and C57BL6). In their two F1 hybrids the daily variation of TH activity was similar to that observed in one of the parents (C57BL6). This strongly suggests selective and genetically controlled mechanisms of regulation responsible for the daily variation of TH activity in the locus coeruleus of mice.

Animals↗

Correlation between the increase in tyrosine hydroxylase activity and the decrease in serotonin content in the rat locus coeruleus after 5,6-dihydroxytryptamine.

A correlation is demonstrated between the increase in tyrosine hydroxylase activity and the decrease in serotonin concentration in the rat locus coeruleus after various doses of 5,6-dihydroxytryptamine and gradual protection of serotonin neurons by pretreatment with two serotonin uptake inhibitors: fluoxetine or citalopram.

5,6-Dihydroxytryptamine↗

GABA-accumulating neurons in the nucleus raphe dorsalis and periaqueductal gray in the rat: a biochemical and radioautographic study.

The possibility of a GABAergic innervation of the nucleus raphe dorsalis (NRD) has been investigated by using the following approaches: (i) the identification of the principal neuronal groups afferent to the NDR by using horseradish peroxidase retrograde transport, (ii) the determination of glutamate decarboxylase activity (GAD) in the NRD after lesioning these groups or their putative pathways, and (iii) the radioautographic identification of terminals axons and nerve cells accumulating intraventricularly injected [3H]GABA. The hypothesis of a local GABAergic network is supported by the failure to obtain important changes in GAD after lesions of NRD afferents and the presence in this nucleus of terminals, fibers and nerve cell bodies accumulating [3H]GABA. It appears that these GABA-accumulating neurons could represent a portion of aperiventricular GABAergic system in the periaqueductal gray and the pontine ventricular gray.

Afferent Pathways↗

Participation of serotonin in thyrotropin release. II. Evidence for the action of serotonin on the phasic release of thyrotropin.

During a 12-h light 12-h dark schedule (lights off at 1900 h), male Sprague-Dawley rats show a circadian rhythm of plasma TSH with a zenith near midday. The participation of serotonin (5HT) in the phasic release of TSH was studied using both pharmacological and surgical-stereotaxical approaches. Animals treated with parachlorophenylalanine methyl ester (pCPA), an inhibitor of 5HT synthesis (one or two injections of 250 mg/kg each) showed a reduction or a disappearance of the diurnal peak of TSH, respectively. Additional treatment by 5-hydroxytryptophan, a precursor of 5HT, completely, restored the diurnal TSH peak. Treatment with 5,6-dihydroxytryptamine creatine sulfate, a neurotoxin which selectively destroys 5HT terminals, also induced alterations of the diurnal peak of TSH. There were no major modifications observed in the low nocturnal levels of TSH in rats treated with pCPA, 5-hydroxytryptophan, or 5,6-dihydroxytryptamine. The major serotoninergic innervation of the hypothalamus originates from the raphe dorsalis or centralis; destruction of these two nuclei caused a quasiabolition of the diurnal TSH peak (only a low amplitude TSH circadian rhythm persisted). Hypothalamic 5HT content was measured in the majority of these experiments; the greatest depletions (near 90%) were observed after two injections of pCPA or in rats bearing raphe lesions. We conclude that the diurnal peak of TSH, observed during the physiological circadian rhythm, is serotoninergic dependent.

5,6-Dihydroxytryptamine↗