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Y Ibata

Publications and source records attributed to Y Ibata.

At least 91 records · Page 5Linked to original sources

Neuronal interaction between VIP and vasopressin neurones in the rat suprachiasmatic nucleus.

Synaptic interaction between VIP-like immunoreactive (VIP-LI) and vasopressin-like immunoreactive (VASO-LI) neurones both of which are main neuronal components in the SCN was investigated using double labelling immunoelectron microscopy. VIP-LI axons were identified as having synaptic contacts with VASO-LI neuronal perikarya and dendrites. VIP-LI axons also formed synapses on non-immunoreactive dendrites or dendritic spines. In addition to the above findings, VIP-LI neuronal elements also formed synaptic contacts with other VIP immunoreactive structures.

Animals↗

Learning behaviour in chronic vitamin E-deficient and -supplemented rats: radial arm maze learning and passive avoidance response.

The effects of long-term vitamin E deficiency and supplementation on learning behaviour were investigated. Rats were fed vitamin E-deficient [VE(-)], -supplemented [VE(+)], or control standard food beginning after the age of 4 weeks. They were trained in an eight-arm radial maze learning task at the age of 17 months, and in a step-through passive avoidance response (PAR) task at the age of 25 months. In the radial maze task, both VE(-) and VE(+) animals required as many trials to reach the learning criterion as control animals. Scopolamine injection (0.25-0.5 mg/kg) after acquisition of the task decreased the number of correct choices dose-dependently; however, the degree of the drug effect on VE(-) and VE(+) rats did not differ from that on control rats. On the other hand, VE(-) animals showed significantly lower rate of avoidance response and VE(+) animals tended to show higher rate of avoidance response in the PAR task than did control animals. These results suggest that long-term vitamin E deficiency or supplementation does not influence general ability to acquire and maintain memory tasks in rats, but that it may affect learning behaviour, depending on the kind of task in which animals were trained.

Age Factors↗

Distribution of tyrosine hydroxylase immunoreactive nerve fibers in the canine larynx.

The sympathetic innervation of the canine larynx was investigated using tyrosine hydroxylase (TH) immunohistochemistry. Many tyrosine hydroxylase immunoreactive (TH-IR) nerve fibers were observed around arteries and arterioles in the laryngeal mucosa and intrinsic laryngeal muscles. In the glandular region, TH-IR fibers were also found, with some of these fibers terminating around the basement membranes of the glandular cells. The quantity of TH-IR fibers in the mucosa differed among regions of the larynx. Many of these fibers could be found in the laryngeal surface of the epiglottis as well as the posterior glottis. These findings suggest that TH-IR fibers may directly innervate muscles in the intrinsic larynx.

Adrenergic Fibers↗

Distribution of calcitonin gene-related peptide nerve fibers in the canine larynx.

Immunohistochemistry was used to investigate the distribution pattern of calcitonin gene-related peptide (CGRP) nerve fibers in the laryngeal mucosa, glands and intrinsic muscles of the dog. CGRP immunoreactive nerve fibers were found more frequently than substance P immunoreactive nerve fibers in every region of the larynx. In the epithelia, CGRP nerve fibers were mainly found in the epiglottis, arytenoid region and subglottis. Many taste buds were observed in the arytenoid region and were densely innervated by the CGRP nerve fibers. In the lamina propria, the plexus of CGRP nerve fibers was present, with some of these fibers associated with blood vessels. Laryngeal glands were also innervated by a few CGRP nerve fibers. In the intrinsic laryngeal muscles, abundant immunoreactivity was observed and many motor end-plate-like structures were found with CGRP immunoreactivity. These findings strongly suggest that CGRP plays an important role in all of the sensory, motor and autonomic nervous systems of the larynx.

Animals↗

Detection of tyrosine hydroxylase and phenylethanolamine-N-methyltransferase messenger RNAs in the mouse adrenal gland and the brain by in situ hybridization.

To study the expression of tyrosine hydroxylase (TH) and phenylethanolamine-N-methyltransferase (PNMT) genes in the mouse adrenal gland and the brain, we performed in situ hybridization studies by using several types of complementary DNA probes recognizing coding regions of human TH (THc), the 3'-end of the human region of TH (TH3'), and the coding region of the human PNMT (PNMTc). THc mRNA was detected in the chromaffin cells of the mouse adrenal medulla and brain catecholaminergic neurons including the substantia nigra and ventral tegmental area. TH-immunopositive neurons were located in a similar pattern in adjacent sections. However no positive signals were detected by the TH3' probe. Using the PNMTc probe, the majority of cells in the adrenal medulla demonstrated positive labelling. Although the mouse TH and PNMT genes have not been fully isolated and sequenced, the present study strongly suggests that the sequence of the coding regions of TH and PNMT are similar in human and mouse. The THc and PNMTc probes are particularly useful in investigating the loci of gene transcription in mouse tissues.

Adrenal Glands↗

Immunocytochemical survey of haloperidol-induced immunoreactive changes of [Met]enkephalin-Arg6-Gly7-Leu8 in the rat forebrain.

It has already been demonstrated that chronic treatment with the dopamine receptor blocker, haloperidol, results in an increase of proenkephalin-A-derived peptides in the caudate-putamen (CP). To examine this phenomenon at the cellular level, we used immunocytochemistry to investigate the effects of haloperidol on [Met]enkephalin-Arg6-Gly7-Leu8 (MEAGL) immunoreactivity in the rat forebrain. After daily haloperidol (5 mg/kg, IP, for 6 days) or haloperidol decanoate (70 mg/kg, IM, given once or twice) treatment, immunoreactive neurons appeared diffusely in the whole CP and in the core part of the nucleus accumbens (Acb) and less frequently in the outer shell part of the Acb and the cell-dense layer of the tuberculum olfactorium (TuO). Increase of MEAGL-immunoreactive fibers in the CP, Acb, and TuO was also detected after these treatments, a particularly prominent increase being found in the striopallidal terminals in the globus pallidus and ventral pallidum. Haloperidol or haloperidol decanoate had no effect on MEAGL immunoreactivity in the cerebral cortex, amygdala, or hypothalamus. Reserpine treatment (5 mg/kg, IP, for 6 days) caused similar effects on the dorsal and ventral striopallidal system, and the direct injection of 6-hydroxydopamine (10 micrograms/5 microliters) into the CP led to the appearance of MEAGL-immunoreactive neurons in accordance with the depleted dopaminergic terminal area. These findings suggest that haloperidol influences enkephalinergic neurons region specifically and that in the dorsal and ventral striopallidal enkephalinergic system haloperidol increases MEAGL immunoreactivity in cell bodies, fibers, and terminals by blocking intrastriatal dopaminergic neurotransmission.

Animals↗

Localization of vasoactive intestinal peptide (VIP) messenger RNA (mRNA) in amacrine cells of rat retina.

We detected vasoactive intestinal peptide (VIP) messenger RNA (mRNA) in the rat retina using an in situ hybridization technique and a 35S-labelled cDNA probe. VIP mRNA was present in the cells of the inner nuclear layer (INL). The VIP mRNA-positive cells showed a distribution similar to that of the VIP-like immunoreactive amacrine cells. This observation suggests that VIP mRNA undergoes transcription in the VIP-immunoreactive amacrine cells.

Animals↗

Degeneration of the nigral dopamine neurons after 6-hydroxydopamine injection into the rat striatum.

6-Hydroxydopamine (6-OHDA) was injected into the rat striatum unilaterally. After 2-4 weeks, a marked decrease in the number of tyrosine hydroxylase-immunoreactive neuronal perikarya and dendrites was observed in the substantia nigra (SN) ipsilateral to the injection. Nissl staining showed a severe cell loss in the same region and electron microscopy revealed neuronal perikarya under degenerating process in the SN. The results showed a retrograde cytotoxic effect of 6-OHDA from the striatal terminals to their dopaminergic neuronal perikarya in the SN, and suggest the possibility that the striatum may be a primary locus in the degeneration process in Parkinson's disease.

Animals↗

Localization of the sensory neurons in the canine nodose ganglion sending fibers into the internal branch of the superior laryngeal nerve.

The distinct localization of the sensory neurons in the canine nodose ganglion that send fibers into the internal branch of the superior laryngeal nerve (the main sensory pathway from the larynx) was studied using horseradish peroxidase technique. The labeled cells were located mainly in the rostral one-third of the lateral side of the nodose ganglion. We conclude that the localization of these labeled cells does not reflect a difference in cellular role or function but is due to the course of the nerve's fibers.

Animals↗

A diurnal variation of vasoactive intestinal peptide (VIP) mRNA under a daily light-dark cycle in the rat suprachiasmatic nucleus.

We detected a diurnal change of vasoactive intestinal peptide (VIP) messenger RNA (mRNA) in the rat suprachiasmatic nucleus (SCN) using the in situ hybridization technique combined with computed image analysis. The amount of VIP mRNA was greatest at 02.00 h, the next largest level was seen at 20.00 h during the dark phase and smallest at 14.00 h during the light phase. We also confirmed that the onset of the fluctuation of mRNA occurred 2-6 h prior to the diurnal variation of the content of VIP-like immunoreactivity by semiquantitative immunocytochemistry. These findings suggest that light stimulus from the retina is a primarily influence on the transcription of VIP mRNA and induces a diurnal variation of VIP synthesis.

Animals↗

Hereditary transmission of tetralogy of Fallot, cardiac hypertrophy, and anomalies of great vessels in WKY/NCrj rats.

We examined 78 fetuses on d 21 of gestation (G21) and 83 neonates on d 2 after birth (A2), which were first generation offspring of WKY rats mated with normal Wistar rats (F1). In addition, we examined six groups of fetuses on d 19 of gestation (G19): 65 Wistar rats, 111 WKY rats, 85 F1, 100 F1 X F1, 92 F1 X Wistar, and 97 F1 X WKY progeny. In the F1 at G19, G21, and A2, there were abnormalities of the pulmonary valve, pulmonary outflow tract, architecture of muscle bundle, and pulmonary arterial branch, as well as hypoplastic ductus arteriosus and postnatal cardiac hypertrophy, similarly in males and females but at a lower incidence and to a lesser extent than in the WKY rats. Severe pulmonary valve dysplasia and ventricular septal defect with overriding of the aorta (tetralogy of Fallot), usually associated with a markedly small ductus, were not present or were very rare in the F1 and the F1 X Wistar but were present in the F1 X WKY and in the F1 X F1 less prevalently than in the WKY. The size of the ductus showed a continuous distribution in all of the six groups; there was a large skewing toward lower values in the WKY, the F1 X WKY, and the F1 X F1. These results suggest that cardiovascular anomalies of WKY rats are transmitted as autosomal recessive or incomplete autosomal dominant traits with an incomplete penetrance and variable expressivity or as polygenic traits. Chromosomal analysis of 31 WKY fetuses revealed no aberrations specifically related to the development of cardiovascular malformations.

Animals↗

Effects of astroglia on the development of cultured neurons from embryonic rat cerebral cortex.

1. Previous studies from our laboratory demonstrated that subcultured astroglia enhance neurite outgrowth and survival of cultured neurons from embryonic rat cerebral cortex, but suppress proliferation of neuroblasts. 2. In the present study, the mechanisms of these three effects were further investigated. 3. Dissociated neurons were seeded on poly-L-lysine-coated coverslips which were plated on subcultured astroglia, and the survival, proliferation and neurite outgrowth of the neurons were investigated. Under these conditions, survival and antimitotic effects were also observed, while neurite extension was not stimulated. 4. The results clearly indicate that neuronal survival and proliferation are regulated by soluble factors produced by astroglia. 5. We also postulated that the neurite-promoting effect of astroglia is mediated by cell-cell contact. 6. This idea was confirmed by the finding that neurite extension was enhanced when the neurons were cultured directly on heat-treated astroglia. 7. The neurite-promoting effect was found to be specific to astroglia. 8. We preliminarily characterized the astroglial surface neurite-promoting factors (ASNPFs). 9. The relationship of laminin to ASNPFs was examined by using antibody to laminin. Laminin antibody did not inhibit the ASNPF activity. 10. The effect of digestion of heat-treated astroglia with enzymes (sialidase and endo-beta-galactosidase) on the ASNPF activity was also examined. 11. These enzyme treatments did not inhibit the ASNPF activity. 12. These results suggest that enhancement of the neurite-promoting activity is not associated with the sugar moiety of ASNPFs.

Animals↗

Possible induction of [Met]enkephalin-Arg6-Gly7-Leu8 immunoreactivity in neurons of the rat superior colliculus following eye enucleation.

The distribution of [Met]enkephalin-Arg6-Gly7-Leu8 (MEAGL)-immunoreactive (-IR) neurons and its modification after enucleation have been investigated in the rat superior colliculus. In normal rats and on the ipsilateral side of monocular-enucleated rats, small sized vertically elongated fusiform-shaped weakly immunostained neurons were dispersed throughout the sublamina of the stratum griseum superficiale (SGS). In bilaterally enucleated rats and on the contralateral side of monocular-enucleated rats, many small strongly immunoreactive MEAGL-containing neurons, projecting processes horizontally or obliquely toward the surface, appeared in the deepest part of the SGS and the superficial part of the stratum opticum (SO), in contrast to the disappearance of the fusiform-shaped weakly stained neurons in the SGS. MEAGL-IR fibers increased in density throughout the sublamina of the SGS, being densest in the deep SGS, accompanying their increase in the neighboring SO. Sporadically found MEAGL-IR neurons in the deep SO and the stratum griseum intermediale did not show the detectable change of immunoreactivity. These results indicate that enkephalin biosynthesis is undergone by different type of neurons in the normal and the ocular-derived superior colliculus, and suggest that some neurons in the adult superior colliculus have a potentiality to express the peptidergic phenotype.

Animals↗

Contrary effect of eye enucleation on VIP-immunoreactive neurons in the suprachiasmatic nucleus and the superior colliculus of the rat.

The topographic alternation of vasoactive intestinal peptide (VIP) immunoreactivity after long-term bilateral eye enucleation (80 days) was investigated in the suprachiasmatic nucleus (SCN) and the superior colliculus of the adult rat with the peroxidase-antiperoxidase method. In the SCN, the immunostaining of VIP-immunoreactive (IR) cell bodies increased, and the intensity and density of VIP-IR fibers and terminals were markedly enhanced after eye enucleation. On the other hand, after eye enucleation, no VIP-IR cell bodies and fibers were visible in the stratum griseum superficiale of the superior colliculus, although fusiform-shaped VIP-IR neurons were distributed in the layer of unoperated control rats. The present results, therefore, have revealed that the long-term blockage of retinal input induces changes of VIP immunoreactivity in different manners, according to the target brain areas.

Animals↗

Immunocytochemical demonstration of GAP-like immunoreactive neuronal elements in the human hypothalamus and pituitary.

GnRH-associated peptide (GAP)-like immunonreactive elements located in the human hypothalamus were investigated by PAP immunocytochemistry using specific antiserum against [pro-GnRH (14-69) OH]. Immunoreactive neuronal perikarya were distributed in the MPOA, PVN and infundibular nucleus, with the largest numbers of GAP-like immunoreactive perikarya found in the infundibular nucleus. We also detected the coexistence of GAP-like and GnRH-like immunoreactivities in the same neuronal perikarya in the MPOA by using a double immunolabelling procedure. In addition to the above regions immunoreactive neuronal perikarya were present in the region dorsal to the medial mammillary nucleus. GAP-like immunoreactive fibers were distributed in same areas that immunoreactive perikarya were observed. Many immunoreactive terminals were found adjacent to capillaries in the infundibulum. Immunoreactive dots, presumably terminals, were observed in the posterior pituitary and these were particularly evident along the margin adjacent to the anterior pituitary. The distribution pattern and density of GAP-like immunoreactive neuronal elements are compared with those of other mammalian species. We also compared GAP-like immunoreactive elements with that of GnRH as has been previously observed in the human hypothalamus.

Adult↗

Effect of haloperidol on immunoreactive neuropeptide Y in rat cerebral cortex and basal ganglia.

To clarify the dopaminergic regulation of neuropeptide Y (NPY) neurons, the effect of haloperidol on NPY in basal ganglia and the cerebral cortex of the rat brain was investigated by sensitive radioimmunoassay and immunocytochemistry using antiserum against rat NPY. After repeated intraperitoneal injections of haloperidol (5 mg/kg) for 6 days, the content of immunoreactive NPY was significantly decreased in the caudate-putamen, but significantly increased in the lateral prefrontal cortex. After treatment for 21 days, the content of immunoreactive NPY in the caudate-putamen remained significantly low, but the extent of change in the lateral prefrontal cortex diminished. In the medial prefrontal cortex, piriform cortex, parietal cortex and nucleus accumbens, no significant changes were found after treatment for either 6 or 21 days. These findings were compatible with those obtained by immunocytochemistry using the same antiserum: an increase of immunoreactive fibers and terminals in the lateral prefrontal cortex and their decrease in the caudate-putamen. However, in the nucleus accumbens the density of immunoreactive fibers and terminals was decreased in the rostral portion, but not in the caudal portion after haloperidol treatment for 6 and 21 days. These findings suggest that dopaminergic afferents region-specifically regulate dopamine-sensitive NPY neurons in the rat brain.

Animals↗

Tetralogy of Fallot, pulmonary valve stenosis, ventricular septal defect, and hypertrophic cardiomyopathy in WKY/NCrj rats.

We examined anatomically the hearts of 198 WKY/NCrj rats of 20 litters. There were 51 rats with moderate to severe thickening of the pulmonary valve and 19 rats with a ventricular septal defect; the two lesions occurred together in 16 rats, in 15 of which there were overriding of the aorta, stenosis of the pulmonary outflow tract, and hypertrophy of the right ventricle, fulfilling the criteria for tetralogy of Fallot in man. The papillary muscle of the conus was absent in 65 rats. The heart was abnormally heavy in 18. We analyzed the relationship between cardiac hypertrophy and valvular lesions and septal defects in these rats plus 27 selected WKY rats with abnormally heavy hearts. Of the 151 rats with neither severe valvular lesions nor septal defects, six rats had abnormally heavy hearts and 67 rats had disproportionate ventricular septal thickening. This situation in the rats is similar to hypertrophic cardiomyopathy. The occurrence of these abnormalities, isolated or in association, in rats of an established inbred strain strongly suggests that they are etiologically or genetically linked, and that the rats should be a useful animal model for these diseases in man.

Animals↗