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T Shin

Publications and source records attributed to T Shin.

At least 73 records · Page 4Linked to original sources

A new anti-rheumatic drug, T-614, effectively suppresses the development of autoimmune encephalomyelitis.

In the present study, we examined the therapeutic effects of T-614 (3-formylamino-7-methylsulfonylaminoxy-4H-1-benzopyran-4-one), a new anti-rheumatic drug, on a T cell-mediated autoimmune disease, experimental autoimmune encephalomyelitis (EAE). T-614 dose-dependently suppressed the development of active EAE induced in Lewis rats by immunization with myelin basic protein (MBP) when administered for 2 weeks starting on the day of immunization (day 0 to 14). Amelioration of clinical signs was also obtained by the treatment at the effector phase (day 7 to 14) of the disease. Furthermore, T-614 treatment of recipient rats that had received MBP-sensitized lymphoid cells resulted in suppression of the clinical severity of EAE. Immunohistological examination revealed that the number of TCR alpha beta-expressing T cells and the extent of MHC class II expression in the spinal cord of rats treated with T-614 was markedly reduced. In vitro study using MBP-specific T cells showed that the addition of T-614 inhibited the proliferative responses of T cells and the production of pro-inflammatory cytokines such as IFN-gamma, IL-6 and TNF produced by T and accessory cells. Taken together, these findings imply that T-614 suppresses the development of EAE by inhibiting the proliferation of autoreactive T cells and pro-inflammatory cytokine production not only by T cells but also by macrophages/microglia. This may be attributable to the result that T-614 is more effective at the effector phase rather than the induction phase. Thus, this drug has a potential value for the treatment of various T cell-mediated autoimmune diseases including multiple sclerosis (MS) as well as rheumatoid arthritis.

Animals↗

Medullary swallowing-related neurons in the anesthetized cat.

Swallowing-related neurons (SRNs) were recorded systematically in the medulla oblongata of urethane-anesthetized cats. The SRNs received orthodromic inputs from the superior laryngeal nerve (SLN) and showed transient changes in their activity synchronous with swallowing. These neurons could be divided into three types. Type I SRNs are sensory-relay neurons from the SLN in the nucleus of the tractus solitarius (NTS), type II are interneurons located diffusely in the parvocellular reticular formation ventral to the NTS, which received oligosynaptic inputs from the SLN, and type III are motoneurons in the nucleus ambiguus. Some type II neurons still showed the swallowing activity after the animals were paralysed, which suggests that they could be involved in the generation of swallowing outputs.

Anesthetics↗

Role of natural killer cells and TCR gamma delta T cells in acute autoimmune encephalomyelitis.

To elucidate the role of NK cells and TCR gamma delta+ T cells in acute experimental autoimmune encephalomyelitis (EAE) induced in Lewis rats, the distribution, number and function of these cells were studied using several methods. Immunohistochemical and flow cytometric analysis revealed that a certain number of NK cells (17 of the total inflammatory cells) infiltrated the central nervous system (CNS) at the peak stage of EAE and were mainly located in the perivascular region. On the other hand, virtually no TCR gamma delta+ T cells were found in the CNS. NK-T (NKR-P1+TCR alpha beta+) cells were few and did not increase in number in the CNS and lymphoid organs. In the cytotoxic assay using YAC-1 cells, effector cells isolated from the spleen of rats at the peak of EAE showed essentially the same cytotoxicity as those isolated from normal controls although the total number of NK cells decreased to one fifth of that of normal rats. Furthermore, in vivo administration of anti-NK cell (3.2.3 and anti-asialo GM1), but not of anti-TCR gamma delta (V65), antibodies exacerbated the clinical features of EAE and induced fatal EAE in some rats. These findings suggest that NK cells play a suppressive role in acute EAE whereas TCR gamma delta+ T cells are not involved in the development of or recovery from the disease.

Acute Disease↗

Expression of c-Met in laryngeal carcinoma.

Expression of c-Met, a gene for the hepatocyte growth factor/scatter factor (HGF/SF) receptor, is known to be associated with tumour development in several human carcinomas. The expression of c-Met was examined using immunohistochemistry in 82 cases of primary laryngeal carcinoma to evaluate the tissue distribution of c-Met and the clinicopathological significance of c-Met expression. In normal larynx, c-Met expression was observed only in some minor salivary glands. Positive reaction for c-Met in neoplastic epithelium was noted in 45 out of 82 (54.9%) cases. In 44 cases, structures adjacent to the carcinoma (noncancerous squamous epithelium, some stromal fibroblastic cells, and endothelial cells) showed positive reaction for c-Met. c-Met expression in cancerous epithelium was significantly correlated with lymph node status (P<0.04) and proliferating activity expressed by the Ki-67 labelling index (P<0.02). There was no correlation between c-Met expression and age, sex, histological type, T category, distant metastasis or clinical stage. The data suggest that overexpression of c-Met in laryngeal carcinomas represents a growth advantage for cancer cells, which may be conferred by the mitogenic effect of HGF/SF. Simultaneous c-Met expression in noncancerous components of the larynx may represent a paracrine modification of c-Met.

Adult↗

Crossing inputs of the superior laryngeal nerve afferents to medullary swallowing-related neurons in the cat.

To understand the neural mechanism for generation of synchronous activity on both sides during swallowing, we examined the convergence of inputs from the bilateral superior laryngeal nerves (SLNs) in the urethane-anesthetized cat medulla and we also examined the changes in swallowing outputs after a longitudinal brain-stem split in decerebrate cats. Twenty-six (31%) of 84 swallowing-related neurons (SRNs) that were oligosynaptically activated by ipsilateral SLN stimulation and recorded mostly in the reticular formation received contralateral inputs, which were confirmed by orthodromic spike responses (n = 16) or were detected as subliminal facilitatory or inhibitory inputs (n = 10) using conditioning-test stimuli. The rate of convergence of inputs from bilateral SLNs in these SRNs was significantly higher than that (4%) in the SRNs that were regarded as sensory-relay neurons in the nucleus tractus solitarius (NTS). The SRNs receiving signals from the contralateral SLN were located diffusely from the NTS and the adjacent reticular formation to the nucleus ambiguus (NA) and the reticular formation dorso-medial to the NA. A midsagittal split from 3 mm caudal to 6 mm rostral to the obex could change symmetrical swallowing to unilateral swallowing. Thus the crossing projections to the contralateral SRNs appear to contribute to symmetrical swallowing.

Afferent Pathways↗

Beaded nerve terminals in feline laryngeal mucosa.

To investigate the mechanism of airway defense reflex, beaded nerve terminals were studied by immunohistochemical techniques. In the supraglottic region the density of PGP 9.5-immunoreactive nerve fibers was the highest at the base of the glottic surface in the epiglottis, and in the glottic region it was the highest in the arytenoid region. In the subglottic region the number of positive nerve fibers was less than the number at the base of the glottic surface in the epiglottis, and when the laryngeal mucosa was processed with NaOH to dissolve the epithelium, it was possible to observe beaded nerve terminals more clearly. These beaded nerve terminals were found just beneath, in the epithelial basement membrane. Electron microscopic examination of beaded nerve terminals revealed a large quantity of secretory granules and mitochondria, suggesting that their structure is similar to that of nerve terminals. Thus these beaded nerve terminals may function as mechanoreceptors.

Animals↗

Comparative studies of suidatrestin, a specific inhibitor of trehalases.

Suidatrestin, isolated from a Streptomyces strain, was characterized as a new trehalase inhibitor. Its inhibitory potential was 7 to 50-fold higher than that of validamycin when tested against insect, fungal and mammalian trehalases. The kinetic properties of suidatrestin were studied in vitro with trehalases from flight muscle mitochondria of the fly, Protophormia terraenovae, from larval midgut of the moth, Spodoptera littoralis, and from porcine kidney, as well as with maltase from yeast. Suidatrestin was inactive on maltase but inhibited all trehalases with IC50 values of 0.08-0.1 microM; Ki values ranged from 0.02 to 0.05 microM. The very low Ki/K(m) ratios (3.9 x 10(-6) -4.9 x 10(-6)) indicated excellent in vitro inhibitory action of suidatrestin. When injected into larvae of S. littoralis, suidatrestin required high and repetitive doses which lead to reversible inhibition of larval growth only. Consecutive omission of the inhibitor even stimulated weight increase above that of controls. Significant mortality was achieved at a rather high dose only. Injection of a growth-inhibiting dose of suidatrestin did not change hemolymph osmolality as a measure of sugar concentration. The discrepancy between in vitro and in vivo potency of suidatrestin may be understood once its chemical structure is fully known.

Animals↗

Inhibition of the induction of the inducible nitric oxide synthase in murine brain microglial cells by sodium salicylate.

The induction of the inducible nitric oxide synthase (iNOS) has been proposed to play a role in a variety of inflammatory diseases. Sodium salicylate (NaSal) is the most commonly used anti-inflammatory agent. We investigated whether NaSal can diminish the induction of iNOS in murine brain microglial cells. In primary cultures, interferon-gamma (IFN-gamma) or lipopolysaccharide (LPS) separately did not stimulate nitric oxide (NO) production, whereas IFN-gamma combined with LPS synergistically induced iNOS. NaSal inhibited both the production of NO and expression of iNOS in microglial cells. Synergy between IFN-gamma and LPS was mainly dependent on tumour necrosis factor-alpha (TNF-alpha) secretion as the increase of the induction of the iNOS by IFN-gamma plus LPS was associated with the increase of TNF-alpha secretion and IFN-gamma plus LPS-induced TNF-alpha secretion by microglial cells was decreased by the treatment with NaSal. These results suggest a possible use of NaSal in managing inflammation of the central nervous system through inhibition of the iNOS induction.

Animals↗

Distribution and origin of the intraepithelial nerve fibres in the feline pharyngeal mucosa.

Sensory inputs from the pharynx play an important role in initiation of the swallowing reflex and in feedback control of motor activities. Using an immunohistochemical technique and denervation procedures, we examined the distribution and origin of the intraepithelial nerve fibres in the feline pharyngeal mucosa to clarify the role of the afferent nerve in swallowing. The posterior pillar was very densely innervated, and the posterior and lateral walls of the mesopharynx had a moderate nerve density. In contrast, the base of the tongue, the vallecula, the pharyngeal surface of the epiglottis, and the pyriform sinus had only a few nerve fibres. The epithelium of the rostral and caudal portions of the pharyngeal mucosa were innervated by the glossopharyngeal nerve and superior laryngeal nerve, respectively, with a borderline at the middle level of the epiglottis. A portion of the intraepithelial nerve fibres in the lateral and posterior walls of the mesopharynx originated from the pharyngeal branch of the vagus nerve. It is hypothesized that the intraepithelial nerve fibres that exist in densely innervated areas are related to the initiation of the swallowing reflex induced by stimulation of the pharyngeal mucosa.

Afferent Pathways↗

Distribution of NADPH-diaphorase activity in the feline laryngeal mucosa.

We studied nicotinamide adenine dinucleotide phosphate (NADPH) diaphorase activity in the feline laryngeal mucosa using a histochemical technique in an effort to clarify the role of nitric oxide (NO) in the larynx. Many NADPH-diaphorase-positive nerve fibres were distributed around the blood vessels and the laryngeal glands. The majority of neuronal cells in the intralaryngeal ganglia were NADPH-diaphorase-positive. It is likely that NADPH-diaphorase-positive nerve fibres around the blood vessels and glands in the laryngeal mucosa originate from the intralaryngeal ganglia, and that NO regulates circulation and secretion in the larynx.

Animals↗

Ultrastructure of the myelinated nerve fibers in the feline laryngeal mucosa.

We studied the myelinated sensory nerve fibers in the feline laryngeal mucosa. Myelinated afferent nerve fibers (A-delta type) present in the lamina propria showed deterioration of the myelin sheath and Schwann cells under the basement membrane. Axons penetrated the basement membrane and entered the intercellular space of the epithelium. Nerve endings with many mitochondria and small clear vesicles existed in the intercellular space. No synapse-like structure was found between the endings and the surrounding epithelial cells. It is likely that these endings act as mechanosensitive receptors that respond to water or chemical stimuli and that participate in eliciting swallowing, coughing, and bronchoconstriction.

Animals↗

Changes in laryngeal muscle activities during hypercapnia in the cat.

The larynx has three functions: phonation, airway protection, and respiration. Few studies have dealt with laryngeal respiratory function. To elucidate respiratory regulation by the larynx, we studied the changes in the activity of the intrinsic laryngeal muscles during hypercapnia in decerebrated cats. The electromyographic activities of the posterior cricoarytenoid (PCA) and thyroarytenoid (TA) muscles were recorded simultaneously with an electromyogram of the diaphragm, endotracheal pressure, and concentrations of O2 and CO2. The activity of the intrinsic laryngeal muscles during hypercapnia (end-tidal CO2, 8% to 10%) was analyzed in comparison with that during eucapnia. In hypercapnia, both the PCA and TA muscles increased their activities, and the endotracheal pressure during expiration was elevated to a higher level than that in eucapnia. TA muscle activities returned to the level during eucapnia after ligation of the common carotid arteries. These findings suggest that hypercapnia causes a further widening of the glottis during inspiration to decrease inspiratory resistance and a further narrowing of the glottis during expiration to prevent alveolar collapse. Thus it may be concluded that the larynx actively participates in respiratory regulation under the control of the brain stem through a process of peripheral inputs from the carotid receptors.

Airway Resistance↗

Immunohistochemical study of protein kinase C in the testes of cattle and pigs.

We investigated the expression of novel protein kinase C (PKC) delta and theta in the testes of pigs and cattle using Western blot and immunohistochemical analysis. PKC delta and theta are recognized in the testes of pigs and cattle by Western blot analysis. We found in immunohistochemical study that PCK delta was localized in the spermatids of seminiferous tubules, but not in the interstitial cells, while PKC theta was recognized only in the interstitial cells of the testes of in both species. These findings suggest that PKC delta and theta play an important role in the development of spermatozoa and the regulation of androgen in the testicular interstitial cells (probably Leydig cells), respectively.

Animals↗

Temporal pattern of blood volume change in cerebral infarction: evaluation with dynamic contrast-enhanced T2*-weighted MR imaging.

OBJECTIVE: The purposes of this study were to evaluate the temporal pattern of blood volume change in cerebral infarction and to provide a guideline in the interpretation of blood volume data, which are known to vary according to the stage of infarction. SUBJECTS AND METHODS: Thirty-three patients with large middle cerebral infarctions were examined one to three times (one time in 20 patients, two times in eight patients, and three times in five patients) after the onset of stroke by dynamic contrast-enhanced T2*-weighted MR imaging and MR angiography. A total of 54 infarctions (29 in an acute stage [up to 7 days], 15 in a subacute stage [8-21 days], and 10 in a chronic stage [22-35 days]) were included. After blood volume maps were created, blood volume ratios (blood volume of the infarcted region divided by blood volume of corresponding contralateral region) were compared at different stages. Likewise, findings on MR angiography were compared at different stages. RESULTS: Mean blood volume ratios in each stage of infarction were 0.46 in the acute stage, 1.48 in the subacute stage, and 0.73 in the chronic stage (p < .001). Recanalization of occluded arteries occurred in 21% of infarctions in the acute stage and 80% in the subacute stage. Infarctions with recanalization had higher blood volume ratios than did those without recanalization (p < .001). A biphasic pattern of blood volume ratios was found in 13 patients who underwent at least two MR examinations: increased blood volume in the subacute stage and decreased blood volume in the chronic stage, regardless of recanalization (p < .01). CONCLUSION: Blood volume that initially decreases in cerebral infarction increases in the subacute stage, reflecting reperfusion hyperemia. Blood volume decreases again in the chronic stage. The time interval between onset of stroke and MR examination must be considered for correct interpretation of blood volume data in cerebral infarction at various stages.

Adolescent↗

Pleomorphic adenoma of the salivary glands: correlation between gallium-67 uptake and histopathological components.

UNLABELLED: We correlated 67Ga uptake and histopathological findings in pleomorphic adenomas of the salivary glands. METHODS: Sixty-two pleomorphic adenomas of the salivary glands were visually graded by degree of 67Ga uptake as negative, weakly positive or strongly positive in comparison to uptake in the nasal cavity. These adenomas were re-examined pathologically and classified as epithelial, intermediate or mesenchymal type according to their dominant histological components. The pathological presence of marginal invasion or associated sialoadenitis was also re-examined. RESULTS: Eighteen adenomas were classified as strongly positive, eight as weakly positive and 36 as negative. Nine (50%) of the 18 strongly positive adenomas were of the epithelial type and the other nine (50%) strongly positive adenomas were of the intermediate type. While none of the strongly positive adenomas were of the mesenchymal type, 27 (75%) of the 36 negative adenomas were of the mesenchymal type. Six (75%) of the eight weakly positive adenomas were of the intermediate type. About half of the adenomas showed marginal invasion regardless of the grade of 67Ga uptake. None of the strongly positive adenomas were associated with sialoadenitis. CONCLUSION: The epithelial component of pleomorphic adenomas may be responsible for 67Ga uptake. The presence of marginal invasion or associated sialoadenitis has little relation to 67Ga uptake in pleomorphic adenomas.

Adenoma, Pleomorphic↗

Expression of MMP-1, TIMP-1, and type I collagen in laryngeal carcinoma.

Matrix metalloproteinases (MMPs) are thought to play an important role in tumor invasion and metastasis. To our knowledge, however, no previous report examined the histologic localization of matrix metalloproteinase-1 (MMP-1), tissue inhibitor of metalloproteinase-1 (TIMP-1) and Type I collagen in laryngeal carcinoma from the same samples. In this study, immunohistochemical staining for MMP-1, TIMP-1, and Type I collagen was performed on paraffin-embedded sections from 83 laryngeal squamous cell carcinomas. Twenty of the 83 tumors were examined for MMP-1 and TIMP-1 mRNA using in situ hybridization (ISH). Immunohistochemical and ISH analyses indicated that squamous cancer cells as well as stromal cells such as fibroblasts, macrophages, and mononuclear and endothelial cells expressed MMP-1 and TIMP-1 in the area adjacent to the tumor. The localization of MMP-1 and TIMP-1 protein is similar to that of their respective transcripts. Dense or moderate patterns of Type I collagen were associated with a tendency toward positivity for TIMP-1 and negativity for MMP-1 (P < .002). A sparse pattern of Type I collagen was associated with a tendency toward positivity for MMP-1 and negativity for TIMP-1 (P < .004). The patterns of Type I collagen staining correlated significantly with imbalances in MMP-1 and TIMP-1 expression (P < .001). Matrix degradation and remodeling in squamous cell carcinoma of the larynx might be attributable to an imbalance in the expression of MMP-1 and TIMP-1.

Adult↗

Requirement for Valpha14 NKT cells in IL-12-mediated rejection of tumors.

A lymphocyte subpopulation, the Valpha14 natural killer T (NKT) cells, expresses both NK1.1 and a single invariant T cell receptor encoded by the Valpha14 and Jalpha281 gene segments. Mice with a deletion of the Jalpha281 gene segment were found to exclusively lack this subpopulation. The Valpha14 NKT cell-deficient mice could no longer mediate the interleukin-12 (IL-12)-induced rejection of tumors. Although the antitumor effect of IL-12 was thought to be mediated through natural killer cells and T cells, Valpha14 NKT cells were found to be an essential target of IL-12, and they mediated their cytotoxicity by an NK-like effector mechanism after activation with IL-12.

Animals↗