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S Shioda

Publications and source records attributed to S Shioda.

At least 145 records · Page 8Linked to original sources

Enkephalinergic synaptic axon terminals on serotoninergic neurons in the dorsal raphe nucleus of the rat: an electron microscopic study by the double immunostaining method.

Met-enkephalinergic synaptic axon terminals on serotoninergic neurons in the dorsal raphe nucleus of the rat were observed with double immunostaining at the electron microscopic level. Met-enkephalin-like immunoreactive axon terminals were found to make asymmetrical or symmetrical synaptic contacts with serotonin-like immunoreactive nerve cell bodies and dendrites. The findings suggest that opioid-containing neurons modulate serotoninergic neurons through synapses in the dorsal raphe nucleus.

Animals↗

Immunocytochemistry of thyrotropin-releasing hormone in the rabbit medulla oblongata.

The distribution and ultrastructure of thyrotropin-releasing hormone-like immunoreactive (TRH-LI) neurons were examined in rabbit medulla oblongata. TRH-LI cell bodies were located in the ventral region of the medulla oblongata: in the paraolivary and parapyramidal regions, regions in and around the pyramidal tract, the dorsolateral region of the lateral reticular nucleus, and the raphe nuclei. The paraolivary and parapyramidal regions contained most of the TRH-LI cell bodies in the medulla oblongata. TRH-LI neurons processes were densely distributed in the dorsal vagal complex and the area postrema. Electron-microscopic immunocytochemical studies revealed TRH-LI neurons at the obex level in the paraolivary region of rabbits. TRH-like immunoreactivity was localized in larger granular vesicles. TRH-LI somata and dendrites received synaptic inputs from both TRH-LI and unlabeled axon terminals. More than half of the TRH-LI axon terminals made synapses with somata or processes of TRH-LI neurons. These observations, together with previous reports that TRH causes respiratory facilitation, suggest that TRH-LI neurons in the paraolivary region in rabbits may be involved in respiratory functions.

Animals↗

US and CT evaluation of cervical lymph node metastasis from oral cancer.

A comparison was made of clinical diagnosis by ultrasound (US) and CT examination in 52 patients who had undergone radical neck dissection. The site, size, depth and other patterns concerning the nodes which could not be detected by physical examination was examined. US and CT examination proved superior to conventional clinical examination in detecting metastatic nodes. US and CT revealed that the disease stage in nine necks had increased from N1 to N2b and in seven of 11 necks from N0 to N positive. The characteristic features of US and CT diagnosis of metastatic lymph nodes were elucidated. Specifically, the diagnosis of cervical metastatic nodes by a combination of US and CT was found to be the most reliable method for detection of subclinical lymph nodes.

Carcinoma, Squamous Cell↗

[Bacteriological examination of infections in the field of oral surgery].

Etiology of bacterial infections in the field of oral surgery was studied. A total of 270 samples collected from patients with encapsulated abscess in their oral cavities was examined and bacteria were isolated from the 244 samples (90.4%). The following results were found; 1) Organisms more than one from one sample were frequently isolated from cases with parodontitis, pericoronitis and gnathitis. Isolation of anaerobic bacteria was common (54.2%). 2) Streptococcus milleri and Streptococcus sanguis and Capnocytophaga species were the most common isolates among aerobic gram-positive and gram-negative bacteria, respectively. 3) Peptostreptococcus micros and Eubacterium lentum were most frequent isolates among gram-negative anaerobic bacteria. Among gram-negative bacteria, Oral Group Bacteroides, especially Bacteroides gingivalis, Bacteroides intermedius, Bacteroides buccae and Bacteroides oralis were most prominent. 4) Isolation frequency of bacteria (both species and strains) was high from samples obtained from patients before antibiotic chemotherapy. 5) Most strains were sensitive to Midecamycin acetate and Josamycin. Minimum inhibitory concentration of 80% isolates (MIC80) against these antibiotics was 0.39 microgram/ml.

Bacteria↗

Analysis of ultrastructural immune deposits in passive heymann nephritis by double-staining methods with electron microscopy.

In this study, we located and quantitated the ultrastructural glomerulus-bound immunoglobulins of passive Heymann nephritis from 10 min through 64 days using the double immunogold staining method. At the early stage (10 min to 21 days), rabbit IgG was found predominantly comparing rat IgG. With time (from 21 days to 32 days), rat IgG increased, although rabbit IgG was almost the same as at the early stage. At the late stage (64 days), rat IgG was predominantly found in all of the dense deposits on the glomerular basement membrane, whereas rabbit IgG was decreased. Thus, the double staining method was useful to analyze the composition of the immune complex and also to elucidate the immunopathogenesis of immune complex-mediated glomerulonephritis.

Animals↗

Immunoelectron microscopic observation of cells in the rat retinal containing gamma-aminobutyric acid and catecholamine.

Interactions between gamma-aminobutyric acid (GABA)- and catecholamine (CA)-containing cells in the rat retina was revealed by a double-labeling immunocytochemical technique using the antisera to GABA- and CA-synthesizing enzymes, such as tyrosine hydroxylase (TH) and phenylethanolamine-N-methyltransferase (PNMT). At the light microscopic level, GABA-, TH- and PMNT-immunoreactive (GABA-, TH- and PMNT-IR) amacrine cell bodies and their processes appeared in the inner nuclear layer and the inner plexiform layer, respectively. By electron microscopy observation, in the inner plexiform layer, GABA-, TH- or PMNT-IR amacrine cell processes were found making synaptic contacts with the axon terminals of immunonegative bipolar cells or with the processes of immunonegative amacrine cells. TH-IR amacrine cell processes formed synapse-like contacts with the GABA-IR amacrine cell perikarya and processes. In contrast, GABA-IR amacrine cell processes formed symmetric synaptic contacts onto the TH-IR as well as PNMT-IR amacrine cell processes. From these findings, it appears that the GABA- and CA-containing amacrine cells may interact with each other and play some important role in regulating the activities of bipolar cells and other unknown amacrine cells in the rat retina.

Animals↗

Transferrin receptor expression in oral tumors.

Transferrin receptor expression in oral tumors was examined by staining with monoclonal antibody against the human transferrin receptor. The cells with positive reaction were recognized in the basal and parabasal layers of the normal epithelium. The staining was found in all the malignant tumors but not in the benign tumors. These results suggest that the immunohistochemical analysis of the transferrin receptor is useful for the diagnosis of oral malignant tumor in addition to the clinical and pathological examinations.

Antibodies, Monoclonal↗

Distribution and co-existence of Met-enkephalin-like and mesotocin-like immunoreactivity in the neural lobe of the pituitary of the frog.

Content and distribution of Met-enkephalin (Met-ENK)-like immunoreactivity in the hypothalamo-hypophysial system of bovine, rat and frog were examined using specific radioimmunoassay and immunohistochemistry. Ultrastructural localization and co-existence of Met-ENK-, mesotocin (MT)- and vasotocin (VT)-like immunoreactivity in the neural lobe of the frog pituitary was examined by a method combining pre-embedding peroxidase-antiperoxidase immunostaining for Met-ENK with post-embedding immunocolloidal gold staining for MT or VT. The highest concentrations of immunoassayable Met-ENK were present in the neural lobe of the pituitary of the frog. In addition to nerve fibers showing only MT-like or Met-ENK-like immunoreactivity, nerve fibers containing neurosecretory granules showing both MT- and Met-ENK-like immunoreactivities were very rich. But VT-like and Met-ENK-like immunoreactivity was confirmed separately in different axon terminals.

Animals↗

[Ultrasound and CT evaluation of cervical lymph node metastasis of oral cancer].

A comparison of the results of clinical diagnosis and ultrasound (US) and CT examinations was carried out in 43 patients who underwent radical neck dissection. We examined the site, size, depth and other features of lymph nodes which were unable to be detected by physical examination. US and CT proved superior to conventional clinical examination in detecting metastatic nodes. US and CT revealed that the disease in seven necks (12%) was not N1 but N2b, while in six of nine necks it changed from N0 to N positive. The features of metastatic lymph nodes on US and CT were clarified, and it was found that the detection of cervical metastatic nodes by a combination of US and CT is the most reliable method for assessing metastasis from tumors of the oral cavity.

Humans↗

[Clinical cytogenetic studies on patients with cleft lip and/or cleft palate--2. Chromosome analysis of twins].

Development of DNA diagnosis on the monocular level for patients with cleft lip and/or palate may be expected in the near future. The necessary condition for this is to confirm the heredity, elucidate the mode of inheritance and decide on the regional mapping etc. The authors tried a chromosome analysis on a pair of monozygotic twins with cleft lip and palate by using high-resolution banding techniques (about 700 bands). However, chromosome aberration was not confirmed. Therefore, the relation between this congenital anomaly and the chromosome aberration could not be confirmed. In this paper the authors discussed about this problem.

Chromosome Aberrations↗

Electron microscopic studies of medullary synaptic inputs to vasopressin-containing neurons in the hypothalamic paraventricular nucleus.

We have observed the ascending projections from the lower brain stem to the magnocellular vasopressin-like immunoreactive (VP-LI) neurosecretory neurons in the paraventricular nucleus (PVN) using electron microscopy. The tissues were prepared by a double labeling technique combining anterograde tracing after iontophoretic injection of wheat germ agglutinin-coupled horseradish peroxidase (WGA-HRP) in the A1 group (lateral reticular nucleus in the medulla oblongata) with VP immunocytochemistry. Both the WGA-HRP-labeled and the unlabeled axon terminals made synaptic contacts with VP-LI cell bodies and processes in the PVN. This indicates a direct synaptic influence of medullary A1 group on the secretory activity of the VP-containing neurons in the hypothalamic paraventricular nucleus.

Animals↗

Ultrastructural analysis of enkephalinergic terminals in parasympathetic ganglia innervating the urinary bladder of the cat.

Leucine enkephalin immunoreactivity was identified in axons and varicosities in parasympathetic ganglia located in the pelvic plexus and on the surface of the urinary bladder of the cat. Electron microscopic immunohistochemical studies revealed that varicosities containing leucine enkephalin exhibited large dense core vesicles and small, clear, spherical vesicles, which were similar to those found in cholinergic terminals. Leucine enkephalin immunoreactivity was primarily associated with large dense core vesicles. The varicosities formed axodendritic and axosomatic synapses with principal ganglion cells. Axoaxonic synapses were not detected. Some axosomatic enkephalinergic synapses were detected embedded within or invaginating the principal ganglion cells. Varicosities containing flattened and/or small dense core vesicles did not exhibit enkephalin immunoreactivity. Bladder ganglion cells identified by retrograde HRP tracing from the urinary bladder exhibited similar leucine enkephalinergic synapses. These observations, coupled with previous reports that leucine enkephalin is present in sacral preganglionic neurons and released by preganglionic nerve stimulation, suggest that leucine enkephalin and acetylcholine are cotransmitters stored and released from the same nerve terminals in bladder parasympathetic ganglia.

Animals↗

Co-existence of TRH with mesotocin in the same axon terminals of the bullfrog pars nervosa as revealed by double labeling immunocytochemistry.

The co-existence of thyrotropin-releasing hormone (TRH)- and mesotocin (MT)-like immunoreactivities in single axon terminals in the frog pars nervosa was observed using a method combining pre-embedding peroxidase-antiperoxidase for TRH with post-embedding immunocolloidal gold staining for MT. Both TRH- and MT-like immunoreactivities were localized in the same large dense elementary granules 130-220 nm in diameter (170 nm mean diameter). A few axons contained only TRH-like immunoreactive small granular vesicles 80-120 nm in diameter (92 nm mean diameter). Axon terminals containing both TRH- and MT-like immunoreactive granules were in direct contact with the perivascular basal lamina of blood capillaries.

Animals↗

Catecholaminergic innervation of GRF-containing neurons in the rat hypothalamus revealed by electron-microscopic cytochemistry.

The catecholaminergic innervation of neurons containing growth hormone-releasing factor (GRF) was examined by use of a method which combined either 5-hydroxydopamine (5-OHDA) uptake or autoradiography after intraventricular injection of 3H-noradrenaline with immunocytochemistry for GRF in the same tissue sections at the electron-microscopic level. In the ventrolateral part of the arcuate nucleus of the rat hypothalamus a large number of immunonegative axon terminals were found to make synaptic contact with GRF-like immunoreactive (GRF-LI) cell bodies and processes. 3H-noradrenaline autoradiography or 5-OHDA-labeling combined with GRF immunocytochemistry revealed that axon terminals labeled with 3H-noradrenaline or 5-OHDA make synaptic contact with the GRF-LI nerve cell bodies and processes. These findings indicate that catecholamine-containing neurons innervate GRF neurons to regulate GRF secretion via synapses in the rat arcuate nucleus.

Animals↗

Heterotropic brain tissue in the oropharynx. Report of a case.

A case of a 7-month-old boy with oropharyngeal heterotropic brain tissue is presented. The lesion, which protruded from the right side of the oropharynx, occupied the oropharyngeal space and pressed the tongue forward and downward. A cranial computed tomograph showed that the mass had some radiolucent areas. Surgical treatment was performed to remove the respiratory and feeding distress. Histologically, the lesions consisted of matured glial cells, ependymal clefts with choroid plexus, and scattered pigmented cells in a part of lining cells of cyst wall.

Brain↗

Apicoectomy with retrograde gutta-percha root filling.

Sixty-four teeth were treated by means of apicoectomy with retrograde gutta-percha filling with the use of new instruments that we devised. The new instruments consisted of a biangle explorer, angle reamers, and angle files. Operations with this technique showed a success rate of 95.3% (61/64 teeth). We conclude that our technique for apicoectomy with retrograde gutta-percha filling is not only simple in procedure, but also shows excellent results.

Adolescent↗