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Biomedical subjects

Y Tamura

Publications and source records attributed to Y Tamura.

At least 271 records · Page 15Linked to original sources

Interaction between cell-surface-expressed 70-kilodalton heat shock protein-like antigen and CD3(+)4(-)8(-) killer T cells.

The 70-kilodalton heat shock proteins may be expressed on the cell surface by an unknown mechanism and may interact with CD3+4-8- T cell receptor-alpha beta-killer (DNT) cells. In this interaction, certain cellular nascent or mutant peptides may be important (the complexes of 70-kilodalton heat shock protein and cellular peptides directly interact with DNT cells). The results imply that the interaction between 70 kilodalton heat shock proteins and DNT cells may also work in graft rejection. By using antibodies that react with the cell surface-expressed 70-kilodalton heat shock proteins, one may overcome graft rejection.

Animals↗

Non-major histocompatibility complex antigen class I-regulatory molecule for cytotoxicity by natural killer cells.

The mechanism of the cytotoxicity by natural killer (NK) cells is not known. It is speculated that there exist several positively regulated and negatively regulated target molecules expressed on the target cell surface. Although one of the latter is considered to be major histocompatibility complex antigen (MHC) class I, in this study we described a novel non-MHC class I molecule that may negatively regulate the NK cytotoxicity. This antigen is defined by monoclonal antibody Cho-1 and is composed of noncovalently associated antigens that are 40 and 200 kilodaltons in molecular size. The expression of this antigen is reduced along with the cell growth induced by growth factors and/or oncogenes. Thus, Cho-1-defined antigen appears to be involved as one of the resistant molecules in the cytotoxic mechanism of NK cells.

Animals↗

Thyrotropin induces G1 cyclin expression and accelerates G1 phase after insulin-like growth factor I stimulation in FRTL-5 cells.

We have investigated the mechanism by which TSH pretreatment potentiates insulin-like growth factor I (IGF-I)-induced DNA synthesis in FRTL-5 cells. As previously described, pretreatment with TSH increased IGF-I-induced DNA synthesis, suggesting that the effect of TSH is mediated through the cAMP pathway. TSH and A kinase activators required at least 12 h to precondition cells to respond to IGF-I stimulation. The presence of cycloheximide abolished the effect of TSH to increase IGF-I-induced DNA synthesis. When the time course of thymidine uptake after IGF-I addition was studied, TSH pretreatment increased the maximum DNA incorporation and shortened the G1 phase interval. These results indicated that some proteins induced by TSH are required for the effect of TSH on IGF-I activity, and the proteins are important for cell cycle progression. Cyclins are key regulators of the cell cycle; therefore, we investigated the expression of cyclins D1 and E after TSH stimulation. TSH- and A kinase-activating agents increased the expression of cyclins D1 and E after 24 h. The same amounts of cyclins D1 and E induced by IGF-I were increased after TSH pretreatment. TSH pretreatment induced the expression of G1 cyclin in FRTL-5 cells, and IGF-I caused the accumulation of enough G1 cyclins to drive the cell cycle from G1 to S phase in a short time, which accounts for the effect of TSH on IGF-I induced DNA synthesis.

Animals↗

Differences in bone and vitamin D metabolism between primary hyperparathyroidism and malignancy-associated hypercalcemia.

Bone and vitamin D metabolism are examined in patients with primary hyperparathyroidism (1 degree HPT), humoral hypercalcemia of malignancy (HHM), and local osteolytic hypercalcemia (LOH) with normal renal function. Among the bone resorption markers, T scores of total deoxypyridinoline (Dpyd) were highest in HHM and were significantly higher than those in 1 degree HPT. Among the formation markers, T scores of osteocalcin (OC) were highest in 1 degree HPT but were negative in HHM. The elevation in total Dpyd was associated with an increase in OC in 1 degree HPT, and the ratios of total Dpyd/OC were similar to those in controls. In contrast, many patients with HHM and LOH exhibited elevated total Dpyd and suppressed OC with increased total Dpyd/OC ratios, but the ratios varied widely. Serum 1,25-dihydroxyvitamin D [1,25(OH)2D] was elevated in 1 degrees HPT but was suppressed in HHM and LOH at any serum Ca levels. These results demonstrate that increased bone resorption is associated with enhanced bone formation in 1 degrees HPT but are uncoupled in many of the HHM and LOH patients, and that total Dpyd/OC ratio can be a useful index to estimate the coupling state of bone. It is suggested that the reduction in serum 1,25(OH)2D cannot be explained by an elevation in serum Ca in HHM and LOH, and that the differences in bone and vitamin D metabolism in HHM and LOH from those in 1 degree HPT may be caused by a common mechanism such as the secretion of some cytokines from tumors.

Adult↗

Protection against oxidative damage by dihydroflavonols in Engelhardtia chrysolepis.

Dihydroflavonol taxifolin and its glycoside, astilbin, from Engelhardtia chrysolepis were evaluated as antioxidants and radical scavengers. These dihydroflavonols inhibited superoxide anion production in the xanthine/xanthine oxidase system. Microsomal lipid peroxidation induced by NADPH-cytochrome P-450 reductase was also inhibited by these flavonoids. Mitochondrial lipid peroxidation was inhibited only by the aglycon. Taxifolin protected peroxy radical-damaged mitochondria with no effect on enzyme activity. Furthermore, taxifolin and astilbin protected red cells against oxidative hemolysis. These dihydroflavonols were found to be effective for protecting subcellular systems and red blood cells against oxidative stress in vitro.

Animals↗

Serovars of Erysipelothrix strains isolated from pigs affected with erysipelas in Japan.

Serovars of 1,046 Erysipelothrix strains isolated from diseased pigs during a period from 1983 to 1993 in Japan were determined by an agar gel double-diffusion precipitation system using typing sera representing all the known serovars, 1 through 23 and type N, of 2 species of Erysipelothrix. A total of 943 strains could be serotyped within the serovars. The remaining 103 strains could not be determined for their serovars and were classified as untypable. Of the 938 (99.5%) strains serologically identified as Erysipelothrix rhusiopathiae, 423 (40.4%) belonged to serovar 1a, 359 (34.3%) to serovar 2, 65 (6.2%) to serovar 1b, 35 (3.3%) to serovar 6, 19 (1.8%) to serovar 5, 11 (1.1%) to serovar 21, and the remaining 26 to serovars 4, 8, 11, 12, 15, 17, or 19. Only 5 (0.5%) strains isolated from the cases of erysipelas belonged to Erysipelothrix tonsillarum and represented serovars 7 or 23.

Animals↗

Serum levels of dehydroepiandrosterone sulfate in patients with asymptomatic cortisol producing adrenal adenoma: comparison with adrenal Cushing's syndrome and non-functional adrenal tumor.

The reported number of adrenal incidentalomas has been increasing because of wider application of imaging techniques. Patients with asymptomatic cortisol producing adrenal adenoma (ASCA) which secretes cortisol without clinical evidence of Cushing's syndrome has been more frequently observed than previously assumed, and they have a risk of adrenal insufficiency after adrenalectomy. Therefore patients with incidentalomas should be screened for cortisol overproduction. The aim of this study is to discover an easy screening test to uncover ASCA. We investigated the hormone profiles of 4 patients with ASCA in comparison with 11 patients with non-functional adrenal tumor and 10 patients with adrenal Cushing's syndrome. We also investigated the expression of dehydroepiandrosterone sulfotransferase (DHEA-ST) in surgically removed attached non-neoplastic adrenal tissues by immunostaining, which was considered to represent the degree of suppression of the hypothalamo-pituitary-adrenal axis. Serum dehydroepiandrosterone sulfate (DHEA-S) levels of all the patients with ASCA and adrenal Cushing's syndrome were lower than those of healthy subjects of corresponding age, but they were within the normal range in the patients with non-functional adrenal tumors. The serum DHEA-S level reflects the degree of suppression of the normal adrenal gland by cortisol hypersecretion from adrenal tumors. But the serum level of DHEA-S decreases with age, and because the normal range of serum DHEA-S is low in elderly subjects, we should be careful to evaluate the level of DHEA-S in elderly patients with adrenal Cushing's syndrome or ASCA. The immunohistochemical study showed DHEA-ST expression was noticeably suppressed in the adjacent adrenal cortex in ASCA and adrenal Cushing's syndrome. The decreased expression of DHEA-ST may reflect autonomous neoplastic cortisol secretion and subsequent ACTH suppression in ASCA and adrenal Cushing's syndrome. A single measurement of plasma ACTH or measurement of ACTH response to corticotropin-releasing hormone was not enough to screen for ASCA because of the wide variation among the cases. Dexamethasone suppression test is essential in identifying ASCA and also a single determination of serum DHEA-S is easy and may be useful for the screening of ASCA in adrenal incidentalomas in young and middle aged subjects, and is especially useful for outpatients.

Adenoma↗

Chemical modification of PA-48153C, a novel immunosuppressant isolated from Streptomyces prunicolor PA-48153.

5beta-Methoxy (20), 14-methyl (24), 14,14-dibromo-15-nor (25), 8-O-acyl (26-45), 8-O-alkyl (46), 8-O-alkoxycarbonyl (47, 48), and 8-O-carbamoyl (49) derivatives of PA-48153C, a novel immunosuppressant isolated from fermentation products of Streptomyces prunicolor PA-48153, were prepared. These compounds were found to retain the inhibitory activity on the responses of both T and B cells to mitogens. Among them, the C-8 hexanoate 28 showed potent suppressive effects on mitogen responses with less cytotoxicity to EL4 cells and was selected for in vivo evaluation.

Animals↗

[Prognostic factors in squamous cell carcinoma of the head and neck].

The clinical and histological factors predicting survival of patients with head and neck cancer were discussed. Recent reports with multivariate analysis focusing on clinical prognostic factors revealed that staging of nodal metastases is most significant. Number and size of metastatic nodes can be evaluated as factors to predict the outcome of advanced cancer. The number of positive nodes over 4 may be associated with poor prognosis. A scoring system of histological grading has been developed at this primary site. The mode of invasion or depth of invasion of cancer may predict the metastases to regional nodes. The research on molecular pathology is ongoing in head and neck cancer. No independent prognostic factor is yet available in clinical practice.

Carcinoma, Squamous Cell↗

[Experimental techniques for developing new drugs acting on dementia (11)--Experimental methods on glutamate neurotoxicity].

Glutamate-induced neurotoxicity was examined in cultured rat cortical cells. Primary cultures were obtained from the cerebral cortex of fetal rats (17-19 days of gestation). Single cells dissociated from the cerebral cortex were plated on plastic coverslips placed in 35- or 60-mm culture dishes. Cultures were incubated in Eagle's minimal essential medium supplemented with 10% fetal calf serum or 10% horse serum at 37 degrees C in a humidified 5% CO2 atmosphere for 10-14 days. The neurotoxicity induced by glutamate was quantified by trypan blue exclusion. The viability of cultures was markedly reduced by a 10-min exposure to glutamate followed by incubation with glutamate-free medium for 1-24 hr. Glutamate neurotoxicity was prevented by the N-methyl-D-aspartate (NMDA) receptor antagonists, MK-801, 3-[(+/-)-2-carboxypiperazin-4-yl] propyl-1-phosphoric acid (CPP), ifenprodil and 7-Cl-kinurenate. Glutamate neurotoxicity was augmented by phorbol dibutyrate, that activates protein kinase C (PKC), but reduced by H-7, that inhibits PKC. These results suggest that PKC plays an important role in NMDA receptor-mediated glutamate neurotoxicity in the cerebral cortex.

Animals↗

Mutagenic activation of 3-methoxy-4-aminoazobenzene by mouse renal cytochrome P450 CYP4B1: cloning and characterization of mouse CYP4B1.

A new P450 responsible for mutagenic activation of 3-methoxy-4-aminoazobenzene (3-MeO-AAB) which is a potent procarcinogen was purified from renal microsomes of male mice using an index of umu gene expression. The purified P450 had high bioactivation toward 3-MeO-AAB and also 2-aminofluorene and 2-aminoanthracene. The antibody against this P450 completely inhibited mutagenic activation of 3-MeO-AAB of mouse renal microsomes. With immunoblotting, this form was present abundantly in renal microsomes of male mice but not in those of female mice. This P450 was also present in pulmonary microsomes of male and female mice but not in hepatic microsomes. The NH2-terminal amino acid sequence analysis indicated that this form belonged to the CYP4B subfamily. Thus, mouse kidney cDNA library was screened with rat CYP4B1 probe. The cDNA-deduced amino acid sequence of isolated cDNA consisted of 511 amino acids and bore 90, 86, and 84% similarities to rat, rabbit, and human CYP4B1, respectively. The NH2-terminal amino acid sequence of the purified renal P450 and amino acid sequence of BrCN-digested peptides from the purified P450 agreed with the cDNA-deduced amino acid sequence. These results suggest that CYP4B1 is a major form in renal microsomes of male mice and plays a major role in mutagenic activation of 3-MeO-AAB. In extrahepatic tissue, CYP4B1 may contribute to chemical carcinogenesis.

Amino Acid Sequence↗

Freeze-fracture and immunohistochemical studies of gap junctions in human gastric mucosa with special reference to their relationship to gastric ulcer and gastric carcinoma.

Our aim was to determine whether the development of gap junctions in the human gastric mucosa has any relation to gastric ulcer and gastric carcinoma. Freeze-fracture replicas were prepared from the endoscopic biopsy specimens of 20 patients with gastric ulcer and 7 healthy volunteers. Large fractured areas of lateral cell membranes of surface mucous cells were examined randomly under an electron microscope. Small gap junctions were observed between gastric surface mucous cells in all healthy volunteers. Gap junctions in the patients with gastric ulcer were significantly fewer than in the healthy volunteers. In addition, gap junctions in patients with recurrent ulcer were significantly fewer than in those with first-onset ulcer. There was no obvious relationship between age and the development of gap junctions in patients with gastric ulcer or in healthy volunteers. In the areas of intestinal metaplasia, gap junctions were occasionally seen between absorptive cells of the villi, but not in the lateral membranes of goblet cells. Fresh frozen sections for indirect immunofluorescence were prepared from the endoscopic biopsy specimens of 19 patients with gastric ulcer and 5 patients with gastric cancer. Monoclonal antibody against liver gap junction protein (anti-connexin 32, 6-3G11) was used for the indirect immunofluorescence. On the border of gastric ulcer, fluorescent spots in the surface mucous cells were significantly fewer than in the surface mucous cells of the body and antrum which were distant from the ulcer area in the same patients. In gastric cancer tissue specimens, fluorescent spots were not observed at all.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenoma↗

Glutamate-induced antigenic changes of phospholipase C-delta in cultured cortical neurons.

Phosphoinositide-specific phospholipase C (PLC) is a key enzyme in signal transduction. It was previously demonstrated that an antibody to an isozyme of PLC, PLC-delta, produces intense staining of neurofibrillary tangles (NFT), the neurites surrounding senile plaque (SP) cores and neuropil threads in the brains of patients with Alzheimer's disease (AD). Although the etiology of neuronal degeneration in AD is still to be defined, excitotoxic glutamate might be a candidate. In the present study, an anti-PLC-delta antibody was used to examine the influence of glutamate on PLC-delta immunoreactivity in cultured rat cortical neurons. Exposure to glutamate caused the death of cultured cortical neurons and exhibited increased immunostaining with the anti-PLC-delta antibody. Subtoxic doses of glutamate also increased PLC-delta immunoreactivity in a dose-dependent manner. Both glutamate-induced neuronal degeneration and the increases in PLC-delta immunoreactivity were prevented by removal of extracellular Ca2+ or the application of an N-methyl-D-aspartate (NMDA) receptor antagonist, MK-801. The glutamate-induced increase in PLC-delta immunoreactivity was also prevented by N omega-nitro-L-arginine, a nitric oxide (NO) synthase inhibitor. These results suggest that NO formation secondary to Ca2+ influx by NMDA receptor activation leads to similar modifications of PLC-delta to those seen in AD.

Animals↗

Compactness of thermally and chemically denatured ribonuclease A as revealed by volume and compressibility.

The conformational changes of ribonuclease A due to thermal and guanidine hydrochloride denaturation were monitored by means of precise density and sound velocity measurements. It was found that the apparent molar volume decreased but the adiabatic compressibility increased on thermal denaturation under acidic conditions (pHs 1.60, 1.90, and 2.08). On the other hand, guanidine hydrochloride denaturation (pH 2.00) brought about large decreases in the compressibility and apparent molar volume. These results indicate that the conformation of the denatured protein is greatly different between the two types of denaturation: the thermally denatured state corresponds to the structure with enhanced thermal fluctuation having a residual secondary structure and a high local concentration of nonpolar groups exposed, but the guanidine hydrochloride denaturation leads to exposure of a large amount of amino acid residues, resulting in an increase in hydration and a decrease in the internal cavity. The compressibility changes due to both types of denaturation were not correlated to a loss of the secondary structure, as judged by means of circular dichroism. These findings suggest that the compactness and thermal fluctuation of the protein cannot be described by a two-state denaturation model and that there are some molten-globule-like intermediates in the denaturation processes.

Animals↗

Antiischemic effects of nicorandil during coronary angioplasty in humans.

The present study was undertaken on 10 patients with angina undergoing percutaneous transluminal coronary angioplasty. The angioplasty procedure consisted of two successive 30-second balloon inflations at 5 minute intervals. After the first inflation, nicorandil (0.1 mg/kg) was given intravenously over a 2-minute period. The second inflation was then performed 3 minutes after the completion of drug administration. Myocardial ischemia was measured as the magnitude of ST-segment elevation on the intracoronary electrocardiogram (intracoronary ECG) recorded from the guidewire. Nicorandil significantly reduced the magnitude of ST-segment elevation. Nicorandil did not change the heart rate-blood pressure product, nor the oxygen saturation of the blood sampled from the great cardiac vein, nor the velocity of coronary blood flow in those patients with no evidence of collaterals. These results favor the conclusion that nicorandil prolongs the intrinsic ability of cardiac myocyte to withstand oxygen deprivation. This salutary effect is possibly due to a direct cellular mechanism because nicorandil did not modify the peripheral and coronary hemodynamic parameters that govern myocardial oxygen consumption.

Aged↗