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Biomedical subjects

I Morita

Publications and source records attributed to I Morita.

At least 19 recordsLinked to original sources

Daily use of dentifrice with and without xylitol and fluoride: effect on glucose retention in humans in vivo.

The effect of daily use of three different dentifrices on glucose retention after glucose mouth rinsing was tested in this study regarding xylitol and fluoride. Six experimental groups used three different dentifrices produced by two different companies: xylitol- and fluoride-containing dentifrice (XF), non-xylitol- and fluoride-containing dentifrice (F), and non-xylitol- and non-fluoride-containing dentifrice (NonX-NonF). Subjects were divided at random and rinsed their mouths for 15s with 20ml of 0.5M glucose solution. Glucose and lactate retention were determined by collecting samples of saliva from the approximal areas of the maxillary and mandibular anterior teeth and using the enzyme membrane test. Samples were collected 0, 1 and 2 months after the start of regular dentifrice use. There were significant differences in glucose retention in relation to the dentifrice used, month of sampling, site of sampling, and time since start of rinsing. Their contribution ratios were 2.0, 4.4, 11.7 and 7.4%, respectively (P<0.01). There were significant differences observed between the XF and NonX-NonF groups, with the XF group presenting lower glucose retention than the NonX-NonF group. The XF group presented lower glucose retention than the F group. The F group showed lower glucose retention than the NonX-NonF group. There were significant differences in lactate retention in relation to the month and site of sampling, and their contribution ratios were 3.3 and 2.8%, respectively (P<0.01). There were, however, no significant differences in glucose and lactate retention in relation to the dentifrice manufacturer. It was concluded that the XF dentifrice was the most effective, and the F dentifrice was more effective in reducing glucose retention than the NonX-NonF dentifrice.

Adult↗

Expression and role of mannose receptor/terminal high-mannose type oligosaccharide on osteoclast precursors during osteoclast formation.

Osteoclasts are formed from hematopoietic precursors via cell-cell fusion. We have previously reported that mannose residues are expressed on the outer membranes of monocytes during osteoclast differentiation. In the present study, we have attempted to demonstrate the pattern of expression levels of terminal high-mannose type oligosaccharide and to show that the mannose receptor is expressed on osteoclast precursor cells. Osteoclasts were formed using three different systems, namely mouse bone marrow cell culture, co-culture of mouse spleen cells with stromal cells, and RAW264.7 cell cultures. During osteoclast differentiation, the expression of terminal high-mannose type oligosaccharide gradually increased and then peaked at the stage of fusion in all three systems. Expression of the mannose receptor gradually increased during osteoclast differentiation in bone marrow cells and the co-culture system. In contrast, that in RAW264.7 cells had already been detected in the absence of the soluble receptor activator of NF-kappaB ligand and did not change during osteoclast differentiation. To ascertain whether expression of high-mannose type oligosaccharide is involved in tartrate-resistant acid phosphatase (TRAP)-positive multinucleated cell (MNC) formation, glycosidase inhibitors were used on RAW264.7 cell culture. Castanospermine, an inhibitor of glucosidase I, inhibited the TRAP-positive MNCs, and deoxymannojirimycin, an inhibitor of alpha-mannosidase I, increased the TRAP-positive MNC formation. These results indicate that the binding of terminal high-mannose and mannose receptor is important for the process of cellular fusion in osteoclast formation.

1-Deoxynojirimycin↗

Ruptured abdominal aortic aneurysm associated with a psoas abscess.

A case of abdominal aortic aneurysm infected by Salmonella dublin is presented. Computed tomography (CT) revealed an abdominal aortic rupture associated with a psoas abscess. An axillo-femoral bypass was performed. The aneurysm and the psoas abscess were resected.

Aneurysm, Infected↗

Inhibitory effects of eicosapentaenoic acid (EPA) on the hypoxia/reoxygenation-induced tyrosine kinase activation in cultured human umbilical vein endothelial cells.

We have previously reported that the n-3 polyunsaturated fatty acid eicosapentaenoic acid (EPA) inhibited the abnormal gap junctional intercellular communication (GJIC) induced by hypoxia/reoxygenation (H/R) via suppressing tyrosine kinase (TK) activation (Zhang et al., Prostaglandins Leukot Essent Fatty Acids, 1999; 61: 33-40). However, the mechanisms by which EPA-inhibited TK activation remained unidentified. In this study we investigated whether reactive oxygen species (ROS) and growth factor-receptor systems would contribute to the H/R-induced TK activation or not. The results showed that H/R-induced ROS production, which reached the peak after 30 min of reoxygenation. Pretreatment with 10 microM EPA significantly inhibited this ROS production. However, the TK inhibitor genistein (10 microM) failed to inhibit the generation of ROS, although it completely inhibited TK activation. On the other hand, the ROS inhibitor DMSO (0.5% v/v) showed little effect on TK activation while it significantly blocked ROS production. Further EPA and genistein, but not DMSO and superoxide dismutase (SOD, 300 U/ml), prevented cells from GJIC injury induced by H/R. Moreover, EPA protected against VEGF-induced reduction in GJIC and phosphorylation of connexin 43. These data suggest that growth factor, but not ROS, might be involved in the EPA-inhibited TK activation induced by H/R.

Cell Communication↗

Connexin43 suppresses proliferation of osteosarcoma U2OS cells through post-transcriptional regulation of p27.

Many lines of evidence indicate that connexin genes expressing gap junction (GJ) proteins inhibit tumor cell proliferation. However, the precise molecular mechanisms remain unclear. In this study, we show that overexpression of connexin43 (Cx43) suppressed proliferation of human osteosarcoma U2OS cells through inhibition of the cell cycle transition from G1 to S phase. This inhibition was attributed to a significant accumulation of the hypophosphorylated retinoblastoma (Rb) protein, which was causally related to decreases in the kinase activities of cyclin-dependent kinases (CDKs) 2 and 4. Enforced Cx43 expression markedly increased the level of the CDK inhibitor p27. This increase resulted from an increased synthesis and a reduced degradation of the p27 proteins, but not influence of the p27 mRNA. Moreover, we show that the Cx43-modulated GJ function was the main contributor to the elevation in p27 levels, in which cAMP was involved. These data suggest that Cx43 appears to inhibit proliferation of U2OS cells by increasing the levels of p27 proteins via post-transcriptional regulatory mechanisms.

Base Sequence↗

A narrow window for rescuing cells by the inhibition of calcium influx and the importance of influx route in rat cortical neuronal cell death induced by glutamate.

A rescue window for glutamate-insulted cells with regard to Ca(2+) influx was first investigated. The addition of EGTA, an impermeable calcium chelator to the culture within 5 min after the beginning of glutamate stimulation potently suppressed the neuronal cell death examined at 22 h. The effect of EGTA on rescuing cells decreased with the time delay of its addition to the system. MK-801, an antagonist of N-methyl-D-asparate (NMDA) receptor channels also inhibited the neuronal cell death in a similar manner to EGTA, suggesting Ca(2+) influx up to 5 min after the insult determined the fate of cells. But we also demonstrated that the elevated intracellular Ca(2+) did not always induce neurotoxicity. High concentration of potassium chloride plus FPL64176, an agonist of L-type Ca(2+) channels did not induce neuronal cell death, even though their combination elicited equal elevation of intracellular Ca(2+) to that by toxic concentration of glutamate, demonstrating that locally elevated intracellular Ca(2+) around NMDA receptors is important in the induction of neuronal cell death.

Animals↗

Novel mechanism for age-related macular degeneration: an equilibrium shift between the angiogenesis factors VEGF and PEDF.

We investigated gene expression profiles of vascular endothelial growth factor (VEGF) and pigment epithelium-derived factor (PEDF) in differentiated and non-differentiated retinal pigment epithelial (RPE) cells during oxidative stress. Human RPE cells were grown in culture on laminin-coated flasks to obtain differentiated features. Cells cultured on plastic were used as non-differentiated controls. After confluence, hydrogen peroxide (H2O2) was added for 48 h, then, total RNA was extracted and used for RT-PCR and Northern blot analysis. Medium conditioned by RPE was used for ELISA, Western blotting, and in vitro angiogenesis assay. As a result, differentiated RPE cells expressed significantly higher levels of VEGF protein, as compared to their non-differentiated counterparts. The expression pattern remained consistent even after cellular exposure to H2O2. Conversely, while elevated levels of PEDF transcript and protein were seen in differentiated RPE cells, compared to non-differentiated cells, a marked decrease at both PEDF mRNA and protein levels was seen after treatment with H2O2. Moreover, this decrease in PEDF expression was dosage dependent. In in vitro angiogenesis assay, conditioned medium from differentiated human RPE cells after exposure to H2O2 showed a dramatic increase in tubular formation and migratory activity of microvascular endothelial cells. These data suggest that, in physiological conditions, a critical balance between PEDF and VEGF exists, and PEDF may counteract the angiogenic potential of VEGF. Under oxidative stress, PEDF decreases disrupting this balance. This equilibrium shift may be significant in promoting a pathological condition of RPE cells and contributing to choroidal neovascularization in age-related macular degeneration.

Aging↗

Bianthraquinones from Cassia siamea.

The isolation of two bianthraquinones, 1,1',3,8,8'-pentahydroxy-3',6-dimethyl[2,2'-bianthracene]-9,9',10,10'-tetrone and 7-chloro-1,1',6,8,8'-pentahydroxy-3,3'-dimethyl[2,2'-bianthracene]-9,9',10,10'-tetrone, from the root bark of Cassia siamea is reported. The structures were established by analysis of spectroscopic data and 7-chloro-1,1',6,8,8'-pentahydroxy-3,3'-dimethyl[2,2'-bianthracene]-9,9',10,10'-tetrone was determined on the direct comparison with synthetic compound.

Anthraquinones↗

Inhibition of phosphatidylinositol-3 kinase/Akt or mitogen-activated protein kinase signaling sensitizes endothelial cells to TNF-alpha cytotoxicity.

Bovine carotid artery endothelial (BAE) cells are resistant to tumor necrosis factor-alpha (TNF), like most other cells. We examined if mitogen-activated protein (MAP) kinase and phosphatidylinositol-3 (PI3) kinase/Akt pathways are involved in this effect. In BAE cells, TNF activates MAP kinase in a MAP kinase kinase 1 (MEK1) manner and Akt in PI3-kinase-dependent manner. Pretreatment with either the MEK1 inhibitor U0126 or PI3-kinase inhibitor LY294002 sensitized BAE cells to TNF-induced apoptosis. Neither U0126 nor LY294002 pretreatment affected TNF-induced activation of NF-kappaB, suggesting that the MAP kinase or PI3-kinase/Akt-mediated anti-apoptotic effect induced by TNF was not relevant to NF-kappaB activation. Both MAP kinase and PI3-kinase/Akt -mediated signaling could prevent cytochrome c release and mitochondrial transmembrane potential (Deltapsi) decrease. PI3-kinase/Akt signaling attenuated caspase-8 activity, whereas MAP kinase signaling impaired caspase-9 activity. These results suggest that TNF-induced MAP kinase and PI3-kinase/Akt signaling play important roles in protecting BAE cells from TNF cytotoxicity.

Animals↗

Prophylactic intravesical instillation of mitomycin C and cytosine arabinoside for prevention of recurrent bladder tumors following surgery for upper urinary tract tumors: a prospective randomized study.

BACKGROUND: A recurrence of bladder tumors following surgery for transitional cell carcinoma of the upper urinary tract is not rarely observed. A prospective randomized study was conducted to examine the significance of prophylactic intravesical instillation of mitomycin C (MMC) and cytosine arabinoside (Ara-C) to prevent recurrent bladder tumors after surgery for superficial transitional cell carcinoma of the upper urinary tract. METHODS: The patients were randomized into an instillation group, who received postoperative intravesical instillation of MMC (20 mg) and Ara-C (200 mg) 28 times over a period of 2 years, and a non-instillation group. The non-recurrence rate was then compared between the groups. RESULTS: Of the 27 patients registered, 25 patients (13 with instillation and 12 without instillation) were able to be evaluated, with a median follow-up period of 45 months. The non-recurrence rate of bladder tumors in the instillation group was higher than that in the non-instillation group. Although the difference was not statistically significant, the P-value (P = 0.079) demonstrated a strong trend. When any possible bias was allowed for a multivariate analysis, the difference was almost significant (P = 0.0567). No patients withdrew from this study due to any side-effects. CONCLUSION: The postoperative instillation of MMC and Ara-C may be a useful approach for reducing the recurrence of bladder tumors after surgery for upper urinary tract tumors.

Administration, Intravesical↗

Expression of adipogenesis markers in a murine stromal cell line treated with 15-deoxy Delta(12,14)-prostaglandin J2, interleukin-11, 9-cis retinoic acid and vitamin K2.

Recent studies have demonstrated that bone marrow stromal cells can undergo adipogenesis or osteoblastogenesis in vivo, and in vitro, and that peroxisome proliferator-activated receptor gamma (PPAR gamma) plays a central role in the control of adipocyte differentiation. In the present study, we treated a murine stromal cell line (TMS-14) with a cocktail of dexamethasone, insulin and glucose (DIG cocktail), which caused the cells to convert to fat-laden cells with adipocyte-like morphology. We also exposed TMS-14 cells to DIG cocktail followed by 15-deoxy Delta(12,14)-prostaglandin J2 (15d-PGJ2), a ligand of PPAR gamma, interleukin- 11 (IL-11), 9-cis retinoic acid (9-cis RA) and vitamin K2. 15d-PGJ2 enhanced DIG cocktail-induced adipogenesis, whereas IL-11, 9-cis RA and vitamin K2 each inhibited adipogenesis induced by DIG cocktail. The gene expressions of four adipogenesis markers, PPAR gamma 2, adipocyte P2 (aP2), adipocyte determination and differentiation factor 1 (ADD1), and fatty acid synthase (FAS) were enhanced by DIG cocktail and these expressions were more enhanced by 15d-PGJ2, in contrast they were attenuated by 9-cis RA. IL-11 also attenuated the adipogenesis markers except ADD1. Western blotting showed that 15d-PGJ2 enhanced the levels of PPAR gamma, C/EBP alpha and RXR alpha proteins, while IL-11 and 9-cis RA decreased the level of PPAR gamma protein, but not C/EBP alpha protein and vitamin K2 decreased the level of C/EBP alpha protein. We also tested the effect of 15d-PGJ2 on osteoblastogenesis, using TMS-12 cells, another stromal cell clone from the same mouse, which differentiate into osteoblasts spontaneously. 15d-PGJ2 did not affect osteoblastogenesis, as detected by von Kossa staining and Cbfa-1 gene expression. These data indicate that 15d-PGJ2 enhances the expression of both PPAR gamma and C/EBP alpha and as a result it stimulates adipogenesis in murine bone marrow cells.

Adipocytes↗

Pharmacological characterization of cepharanthin in chronic idiopathic thrombocytopenic purpura.

Cepharanthin, a bisbenzylisoquinoline (biscolaurine) alkaloid drug, has been reported to improve the symptoms of intractable or steroid-resistant chronic idiopathic thrombocytopenic purpura (ITP). To clarify the mechanism by which the cepharanthin is beneficial to ITP, we examined the effects of cepharanthin on thrombocytopenia in (NZW x BXSB) F1 (W/B F1) mice and on the formation of colony forming unit of megakaryocyte (CFU-MK) derived from human CD34-positive progenitor cells. The decrease in platelet numbers in W/B F1 was diminished by the administration of 5 mg/kg cepharanthin for 6 weeks as well as by 2 mg/kg prednisolone. Furthermore, the administration of over 0.2 mg/kg cepharanthin enhanced the therapeutic effect of prednisolone. From the data in this animal model, it is suggested that cepharanthin may prolong the platelet lifespan. The treatment of CD34-positive progenitor cells isolated from cord blood with cepharanthin (over 5 x 10(-10)g/ml) caused an increase in the formation of CFU-MK induced by the cocktail of thrombopoietin, interleukin (IL)-6 and IL-3. The addition of 0.1% normal human serum dramatically increased the number of CFU-MK. In contrast, the serum isolated from patients with ITP at the same concentration decreased the number of CFU-MK. However, the simultaneous addition of 5 x 10(-8)g/ml cepharanthin recovered the number of CFU-MK to the level induced by normal serum. These findings indicate that cepharanthin has the potent therapeutic activity not only on the platelet destruction process, but also on the platelet production process of thrombocytopenia in chronic ITP.

Alkaloids↗

Eicosapentaenoic acid protects endothelial cell function injured by hypoxia/reoxygenation.

Eicosapentaenoic acid (EPA) may protect against atherosclerosis by improving lipid metabolism and modulating vascular cell function. Ischemia/ reperfusion injury is one risk factor for atherosclerosis. We investigated if EPA could improve hypoxia/reoxygenation (H/R)-induced endothelial cell dysfunction of gap junctional intercellular communication (GJIC). GJIC in human umbilical vascular endothelial cells (HUVECs) was measured using a photobleaching technique. Results demonstrated that H (24h)/R 2h) induced a GJIC reduction in HUVECs; however, it was inhibited by EPA pretreatment. H/R produced reactive oxygen species, but it was not affected by EPA, and it contributed little to GJIC dysfunction. By contrast, tyrosine kinase activated by H/R was inhibited by EPA pretreatment, and tyrosine kinase inhibitors also abolished H/R-induced GJIC reduction. The protective effects of EPA on the H/R-induced GJIC reduction was also observed in cells treated with tyrosine phosphatase inhibitor. These data indicate the EPA improves H/R-induced endothelial dysfunction through inhibition of tyrosine kinase activation, and it could lead to prevention of progression and/or initiation of atherosclerosis.

Cell Communication↗

Correlation with redox potentials and inhibitory effects on Epstein-Barr virus activation of azaanthraquinones.

The redox potentials have been determined for nine azaanthraquinones in phosphate buffer at pH 7.2 by means of cyclic voltammetry. A definite correlation has been found between the redox potentials and the inhibitory effects of the azaanthraquinones on Epstein-Barr virus early antigen (EBV-EA) activation. It has further been shown that the correlation can be made better by introducing an electronic property, i.e., the atomic charge at O11 as an additional parameter.

Anthraquinones↗

Human uterine myometrial smooth muscle cell proliferation and vascular endothelial growth-factor production in response to platelet-derived growth factor.

It has been recognized that tissue-specific growth factors and angiogenic factors play important roles in the growth of tumors and in the tissue-repair system. In uterine myometrial smooth muscle cells, it has also been reported that the platelet-derived growth factor (PDGF) binds to PDGF receptors and stimulates proliferation. In this paper, we examine whether or not PDGF is able to stimulate production of vascular endothelial growth factor (VEGF) in cultured human myometrial smooth muscle cells. PDGF treatment enhanced immunoreactive VEGF production as well as cell proliferation. Production of VEGF121 and VEGF165 in the cells was detected by reverse transcription-polymerase chain reaction analysis, but the PDGF treatment did not change the ratio of VEGF165 to VEGF121. The effect of PDGF on cell proliferation leveled off at 10 ng/ml, whereas its effect on VEGF production continued to increase linearly at concentrations above 10 ng/ml. Upon treatment of the cells with antibody against VEGF, the cell proliferation increased linearly even at PDGF concentrations above 10 ng/ml. The enhanced [3H]thymidine incorporation by PDGF was abolished by either mitogen-activated protein kinase kinase (MAPKK) inhibitor or protein kinase C (PKC) inhibitor. In contrast, VEGF production was abolished by MAPKK inhibitor, but not by PKC inhibitor. These results indicate that PDGF stimulates both cell proliferation and VEGF production in partly different signal pathways, and thus PDGF might play a role in the physiology and pathology of the myometrium.

Adult↗

Hepatocyte growth factor protects cultured rat cerebellar granule neurons from apoptosis via the phosphatidylinositol-3 kinase/Akt pathway.

Recent studies suggest that hepatocyte growth factor (HGF) functions as a neurotrophic factor in the central nervous system. In this study, we investigated the neuroprotective effect of HGF and its mechanism of action. We used cultured cerebellar granule neurons that underwent apoptosis when the culture medium was changed from that containing serum with 25 mM K(+) to serum-free medium containing 5 mM K(+), and HGF prevented apoptotic cell death. HGF stimulated both mitogen-activated protein (MAP) kinase and phosphatidylinositol-3 (PI3)-kinase activity in cerebellar granule neurons. Two specific inhibitors of PI3-kinase, wortmannin and LY294002, efficiently blocked this neuroprotective effect of HGF. In contrast, PD98059, a selective inhibitor of MAP kinase kinase (MEK), did not affect the anti-apoptotic effect of HGF. The downstream signal of PI3-kinase in this protection was further investigated. HGF-induced phosphorylation of Akt and pretreatment of the cells with wortmannin completely impaired Akt activation. These results suggest that HGF prevents apoptosis in cerebellar granule neurons via the PI3-kinase/Akt pathway.

Animals↗

Simvastatin enhanced sodium nitroprusside-induced apoptosis of smooth muscle cells. An involvement of geranylgeraniol.

A decrease in serum cholesterol is one of the most beneficial effects in anti-atherogenesis. Nitric oxide is also an anti-atherogenic substance, inducing vasodilation and inhibits proliferation of smooth muscle cells (SMC). Therefore, we examined sodium nitroprusside (SNP)-induced apoptosis of vascular SMC with respect to cholesterol metabolism. Cultured vascular SMC from bovine carotid arteries and rat aorta were used. Apoptosis was determined by propidium iodide assay. Treatment of the SMC with SNP(100 micromol/l-1 mmol/l ) for 6 h induced a little nuclear fragmentation. SNP (1 mmol/l ) elicited apoptosis in 4.4+/-2.2% of cells. Pretreatment of SMC with simvastatin (1 microg/ml, 2 days), a hydroxymethylglutaryl Coenzyme A (HMG CoA) reductase inhibitor, synergistically enhanced SNP-induced apoptosis (% apoptosis =15. 9+/-3.3%). Either mevalonate (100 micromol/l) or geranylgeraniol (30 micromol/l) recovered the simvastatin (1 microg/ml)-enhanced SMC apoptosis induced by SNP. Neither squalene (10 mmol/l) nor farnesol (30 micromol/l) had a recovery effect on the simvastatin-enhanced SMC apoptosis induced by SNP. Pretreatment with simvastatin (1 microg/ml) reduced total cholesterol content in SMC. Mevalonate (100 micromol/l) restored a decrease in total cholesterol content. However, incubation with LDL deficient serum did not enhance SNP-induced apoptosis of SMC, although treatment with LDL deficient serum decreased the total cholesterol content in SMC. These data suggested that decrease in HMG CoA reductase metabolites, especially geranylgeraniol might enhance the SNP-induced apoptosis of SMC, and that, apoptosis was not involved in a decrease in cholesterol of SMC.

Animals↗