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Biomedical subjects

Sumio Watanabe

Publications and source records attributed to Sumio Watanabe.

At least 37 records · Page 2Linked to original sources

Epimorphin expression and stellate cell status in mouse liver injury.

Epimorphin, a mesenchymal morphogenic protein expressed by hepatic stellate cells, is considered important to liver morphogenesis in both healthy and pathologic conditions. However, the stellate cell phenotype, quiescent versus activated, that expresses epimorphin is unknown. We studied the relationship between epimorphin expression and stellate cell status in carbon tetrachloride-induced acute and chronic injury to mouse liver and in mouse liver regeneration following 70% partial hepatectomy. Epimorphin-positive cells in sinusoids expressed desmin, indicating that they are stellate cells. Epimorphin-positive cells were more numerous and larger in pericentral than periportal sinusoids in normal liver. In early-phase acute liver injury and liver regeneration, epimorphin expression transiently decreased while alphaSMA-positive stellate cells increased. In the recovery phase of acute and chronic injury as well as the late phase of liver regeneration, epimorphin expression was strikingly enhanced while alphaSMA-positive stellate cells decreased. This expression pattern was seen in both Balb/c and C57BL6 mouse strains irrespective of their differences in response to the hepatotoxin. In conclusion, stellate cells express epimorphin in their quiescent state and in the recovery phase, respectively associated with maintenance and reconstruction of microscopic liver structure.

Journal Article↗

Attenuation of gastric mucosal inflammation induced by aspirin through activation of A2A adenosine receptor in rats.

AIM: To determine whether a specific adenosine A(2A) receptor agonist (ATL-146e) can ameliorate aspirin-induced gastric mucosal lesions in rats, and reduce neutrophil accumulation and production of pro-inflammatory cytokines. METHODS: Gastric lesions were produced by oral gavage of aspirin (200 mg/kg) and HCl (0.15 mol/L, 8.0 mL/kg). 4-{3-[6-Amino-9-(5-ethylcarbamoyl-3,4-dihydroxy-tetrahydro-furan-2-yl)-9H-purin-2-yl]-prop-2-ynyl}-cyclohexanecarboxylic acid methyl ester (ATL-146e, 2.5-5 mug/kg, IP) was injected 30 min before the administration of aspirin. Tissue myeloperoxidase (MPO) concentration in gastric mucosa was measured as an index of neutrophil infiltration. Gastric mucosal concentrations of tumor necrosis factor-alpha (TNF-alpha) and interleukin-1beta (IL-1beta) were determined by ELISA. Also, we examined the effect of ATL-146e on tissue prostaglandin E2 (PGE2) production and gastric secretion. RESULTS: Intragastric administration of aspirin induced multiple hemorrhagic erosions in rat gastric mucosa. The total length of gastric erosions (ulcer index) in control rats was 29.8+/-7.75 mm and was reduced to 3.8+/-1.42 mm after pretreatment with 5.0 g/kg ATL-146e (P<0.01). The gastric contents of MPO and pro-inflammatory cytokines were all increased after the administration of aspirin and reduced to nearly normal levels by ATL-146e. Gastric mucosal PGE2 concentration was not affected by intraperitoneal injection of ATL-146e. CONCLUSION: The specific adenosine A(2A) receptor agonist, ATL-146e, has potent anti-ulcer effects presumably mediated by its anti-inflammatory properties.

Animals↗

Suramin prevents fulminant hepatic failure resulting in reduction of lethality through the suppression of NF-kappaB activity.

AIM: Suramin is a symmetrical polysulfonated naphthylamine derivative of urea. There have been few studies on the effect of suramin on cytokines. We examined the effects of suramin on production of inflammatory cytokines. METHODS: We made an acute liver injury model treated with d-galactosamine (GalN) and lipopolysaccharide (LPS). Plasma AST, ALT, tumor necrosis factor (TNF)-alpha, and interleukin (IL)-6 levels were measured. We compared with survival rate, histological found and NF-kappaB activity between with and without treatment of suramin. In macrophage like cell line, TNF-alpha and IL-6 production, TNF-alpha and IL-6 mRNA expression, and NF-kappaB activity was measured. RESULTS: The lethality of mice administered suramin with GalN/LPS was significantly decreased compared with that in mice without suramin. Changes of hepatic necrosis and apoptosis were slight in suramin-treated mice. Serum AST, ALT, TNF-alpha, IL-6 levels and NF-kappaB activity in the liver were significantly lower in mice administered suramin. In an in vitro model, suramin preincubation inhibited TNF-alpha and IL-6 production, TNF-alpha and IL-6 mRNA expression, and NF-kappaB activity. CONCLUSIONS: Suramin inhibits TNF-alpha and IL-6 production through the suppression of NF-kappaB activity from macrophages and shows therapeutic effects on acute liver damage.

Alanine Transaminase↗

Prevalence of dystonia in Akita Prefecture in Northern Japan.

We investigated the prevalence of dystonia in Akita Prefecture (population was 1,166,967 as of 1 November 2004). The prevalence of primary generalized and focal dystonia is estimated to be 0.68 and 14.4 per 100,000 persons, respectively. Blepharospasm is the most common primary dystonia in this area.

Cross-Sectional Studies↗

Effect of cilostazol, a selective type-III phosphodiesterase inhibitor, on water-immersion stress-induced gastric mucosal injury in rats.

BACKGROUND: Cilostazol, a specific type-III phosphodiesterase inhibitor, is widely used for the treatment of ischemic symptoms of peripheral vascular disease. Recent studies have reported that the mechanism of cilostazol is related to the suppression of pro-inflammatory cytokine production and improvement of local microcirculation disturbances. The pathogenesis of stress-induced gastric mucosal lesions is characterized by the activation of inflammatory cells and the production of inflammatory cytokines. The effects of cilostazol on the development of gastric mucosal lesions have not been reported. In the present study, we examined the effect of a cilostazol on water-immersion stress-induced gastric mucosal lesions. METHODS: Rats were subjected to water-immersion stress with or without pretreatment with a single intraperitoneal injection of the selective type-III phosphodiesterase inhibitor, cilostazol. We measured the gastric mucosal lesion and the concentrations of myeloperoxidase (MPO), interleukin-1beta (IL-1beta), tumor necrosis factor-alpha (TNF-alpha), and cytokine-induced neutrophil chemoattractant-1 (GRO/CINC-1), as an index of neutrophil accumulation and pro-inflammatory cytokine production. RESULTS: Cilostazol ameliorated the gastric mucosal injury induced by water-immersion stress (P<0.001). The gastric contents of MPO, TNF-alpha, IL-1beta, and CRO/CINC-1 were all increased after water-immersion stress and were reduced to almost normal levels by cilostazol. CONCLUSIONS: In this study, we demonstrated that a selective type-III phosphodiesterase inhibitor, cilostazol, inhibited stress-induced gastric inflammation and damage via suppressing the production of pro-inflammatory cytokines. Cilostazol may be useful for preventing gastric mucosal lesions.

3',5'-Cyclic-AMP Phosphodiesterases↗

Sucralfate prevents the delay of wound repair in intestinal epithelial cells by hydrogen peroxide through NF-kappaB pathway.

BACKGROUND: Recent studies have shown that sucralfate (SF) has therapeutic effects on colonic inflammation in ulcerative colitis. The aim of this study was to clarify the function of SF for wound repair in intestinal epithelial cells (IEC). METHODS: (1) Activation of signal proteins [ERK1/2 mitogen-activated protein kinase (MAPK), IkappaB-alpha] in IEC-6 cells after stimulation with 10(-4) M potassium sucrose octasulfate (SOS), which is the functional element of SF, was assessed by Western blot. (2) Induction of transforming growth factor (TGF)-beta1, TGF-alpha, EGF, and cyclooxygenase-2 (COX-2) mRNA after stimulation of IEC-6 cells with SOS was assessed by reverse transcriptase-polymerase chain reaction. (3) IEC-6 cells were wounded and cultured for 24 h with various concentrations of SOS in the absence or presence of 20 microM H(2)O(2). Epithelial migration or proliferation was assessed by counting migrating cells or bromodeoxyuridine (BrdU)-positive cells across the wound border. RESULTS: (1) SOS activated IkappaB-alpha, but it did not activate ERK1/2 MAPK. (2) SOS enhanced the expression of COX-2 mRNA, but it did not change the mRNA expression of other growth factors. (3) SOS did not enhance wound repair in IEC-6 cells, but it decreased the number of dead cells (maximum, 74%) (P < 0.01) in a dose-dependent manner and prevented the diminishment of epithelial migration (maximum, 61%) (P < 0.01) and proliferation (maximum, 37%) (P < 0.05) induced by H(2)O(2). These functions of SOS were suppressed by the NF-kappaB and COX-2 inhibitors. CONCLUSIONS: SOS prevented the delay of wound repair in IEC-6 cells induced by H(2)O(2), probably through induction of COX-2 and an anti-apoptotic mechanism. These effects of SOS might be given through the activation of the NF-kappaB pathway.

Apoptosis↗

Rotavirus double-stranded RNA induces apoptosis and diminishes wound repair in rat intestinal epithelial cells.

BACKGROUND: Recent studies have shown that toll-like receptor 3 (TLR3) recognizes double-stranded RNA (dsRNA). Rotaviruses, having a dsRNA genome, infect intestinal epithelial cells (IEC) and cause acute gastroenteritis in young children. The aim of the present study was to clarify the pathophysiological function of rotavirus dsRNA in IEC. METHODS: Expression of TLR3 mRNA or protein in IEC cell lines (IEC-6, HT-29, Caco-2) was assessed by reverse transcription polymerase chain reaction (RT-PCR), Western blot analysis or immunohistochemistry. Induction of cytokines (TNF-alpha, interferon-beta, interleukin-6) mRNA and activation of signal proteins (ERK1/2 MAPK and IkappaB-alpha) in IEC after stimulation with rotavirus dsRNA were assessed by RT-PCR or Western blot analysis. IEC-6 cells were wounded and cell migration into wound areas after stimulation with rotavirus dsRNA (1-25 microg/mL) was assessed. Induction of apoptosis after stimulation with rotavirus dsRNA was also assessed. RESULTS: Expression of TLR3 mRNA and TLR3 protein was detected in IEC. Expression of TLR3 mRNA in IEC-6 tended to be up-regulated by exposure to IFN-gamma. Induction of cytokine mRNA and activation of the signal proteins were detected after stimulation with rotavirus dsRNA. Apoptosis was induced and epithelial migration into the wound area was dose-dependently diminished (44.1-94.4%, P < 0.01) by exposure to rotavirus dsRNA. Diminishment of wound repair was suppressed by anti-TLR3 antibody or caspase inhibitor. CONCLUSION: Rotavirus dsRNA induces severe apoptosis and diminishes wound repair in IEC through TLR3, which might be involved in the pathogenesis of rotavirus-induced enteritis.

Animals↗

Systemic stress increases serum leptin level.

BACKGROUND AND AIM: Leptin, the product of the obese (ob) gene, is a circulating peptide mainly synthesized by adipocytes. Leptin inhibits food intake and decreases body weight. A recent report has suggested that the gastric mucosa is also the source of leptin, and that the stomach leptin also contributes to the regulation of the serum leptin level. The aim of the present study was to investigate the effect of water-immersion stress on serum, stomach and adipose tissue leptin levels to understand the relationship between stress and eating behavior. METHODS: Male Sprague-Dawley rats were used in this experiment. The leptin level in the serum, gastric mucosa and adipose tissue was measured using ELISA system before and after the initiation of water-immersion stress. RESULTS: The serum leptin level was significantly increased by water-immersion stress. The peak was observed 9 h after the initiation of the stress (P < 0.01). However, the gastric leptin level significantly decreased 6 and 9 h after the stress. The adipose tissue leptin level significantly increased 3 h after the stress. CONCLUSIONS: The results suggest that changes in serum leptin levels could be associated with stimulation of leptin secretion from the gastric mucosa and leptin production in the adipose tissue by systemic stress and that leptin might be regulated by stress-related events.

Adipocytes↗

Tetracycline, metronidazole and amoxicillin-metronidazole combinations in proton pump inhibitor-based triple therapies are equally effective as alternative therapies against Helicobacter pylori infection.

BACKGROUND: A proton pump inhibitor (PPI)-based triple therapy with clarithromycin (CAM) and amoxicillin (AMPC) is now a standard regimen for Helicobacter pylori (HP) eradication in Japan. However, the CAM-resistant rate has increased recently and alternative therapies are sorely needed. Therefore the aim of the present study was to evaluate the effectiveness and safety of the PPI-tetracycline (TC)-metronidazole (MNZ) regimen (the PTM regimen) as an alternative therapy in comparison with the PPI-AMPC-MNZ (PAM) regimen. METHODS: Sixty-four HP-positive patients visiting the HP-eradication clinic in Tokai University Hospital from July 1998 to March 2003 were treated with either PTM or PAM as alternative therapies. The HP eradication was assessed by urea breath test (UBT), HP stool antigen test, or HP culture method more than 2 months after completion of the treatments. The drug resistances against CAM, AMPC, TC, and MNZ were assessed by the agar dilution method. RESULTS: Fifty-six patients (26 PTM and 30 PAM) completed medication and evaluation of the eradication. The eradication rates of PTM were 82.8% (24/29) and 92.3% (24/26), while those of PAM were 74.3% (26/35) and 89.7% (26/29) by intention-to-treat and per-protocol analysis, respectively. The differences between the regimens were not statistically significant. There were no severe adverse effects observed in either of the regimens. The drug-resistance analyses showed 15 CAM- and one MNZ-resistant cases but no TC or AMPC resistance in the available 25 samples. CONCLUSION: The PTM and PAM regimens were equally effective and safe as alternative HP eradication therapies. And PTM would be particularly useful in penicillin allergy cases.

Amoxicillin↗

Zinc L-carnosine protects against mucosal injury in portal hypertensive gastropathy through induction of heat shock protein 72.

BACKGROUND AND AIMS: Increased susceptibility to gastric mucosal injury is observed in portal hypertensive gastropathy (PHG). In this study, the effects of zinc L-carnosine, an anti-ulcer drug, were evaluated on expression of heat shock protein (hsp) 72 and cytoprotection in gastric mucosa in a rat model of PHG. METHODS: Portal hypertensive gastropathy with liver cirrhosis was induced by bile duct ligation for 4 weeks in male Sprague-Dawley rats. Expression of gastric mucosal hsp72 was evaluated by Western blotting at 6 h after intragastric administration of L-carnosine, zinc sulfate, or zinc L-carnosine. Blood was also collected for determination of serum zinc level. Mucosal protective abilities against hydrochloric acid (HCl) (0.6N) followed by pretreatment with L-carnosine, zinc sulfate or zinc L-carnosine were also studied. RESULTS: L-carnosine, zinc sulfate, and zinc L-carnosine induced hsp72 in gastric mucosa of rats with bile duct ligation. Zinc sulfate and zinc L-carnosine suppressed HCl-induced mucosal injury. However, L-carnosine could not suppress HCl-induced mucosal injury. Serum zinc levels were significantly elevated after zinc L-carnosine administration. Furthermore, pretreatment with zinc L-carnosine (30-300 mg/kg) increased the expression of hsp72 in gastric mucosa and prevented HCl-induced mucosal injury in rats with bile duct ligation in a dose-dependent manner. CONCLUSIONS: Zinc derivatives, especially zinc L-carnosine, protected portal hypertensive gastric mucosa with increased hsp72 expression in cirrhotic rats. It is postulated that zinc L-carnosine may be beneficial to the mucosal protection in PHG as a 'chaperone inducer'.

Animals↗

[The research of the pathogen responsible for Pleurocybella porrigens related encephalopathy: investigation of 3-nitropropionic acid hypothesis].

Pleurocybella porrigens related encephalopathy exhibits consciousness disturbance and convulsion in the patients after taking and patients show bilateral basal ganglia lesion resulted in high mortality rate. This encephalopathy is a very similar to the moldy sugarcane encephalopathy epidemic in China in the past. We investigated the relationship between Pleurocybella porrigens related encephalopathy and 3-nitropropionic acid which had caused the moldy sugarcane encephalopathy. We have tried to detect 3-NPA in the various specimens from patients and Pleurocybella porrigens, but failed. Further examinations for elucidating the causation of Pleurocybella porrigens related encephalopathy are needed.

Aged↗

[Hepatocyte-specific Pten deficient mice].

Histological findings of hepatocyte-specific Pten deficient(Pten KO) mice livers were consistent with the criteria of human nonalcoholic steatohepatitis(NASH). Therefore, Pten KO mice are a powerful animal model of NASH. In Pten KO mice livers, steatosis develops based on the increased expression of genes that promote fatty acids synthesis. The increased expression of beta, oxidation-related genes accumulates oxidative stress in Pten KO mice livers resulting in hepatitis based on lipid hyperoxidation of hepatocytes membranes. Onset and exacerbation of hepatitis are also related to endotoxins derived from intestinal bacteria. Oxidative DNA damage, hyperproliferation of hepatocytes induced by the activation of Akt and ERK, and the increasement of malignant potential based on the change of fatty acids composition in the livers contribute to the development of hepatocellular carcinoma in Pten KO mice. Since it is considered that the mechanism to induce hepatic lesions in some NASH patients is the same as that in Pten KO mice, the investigation using Pten KO mice gives us clues to clarify the pathogenesis or develop effective therapy of NASH.

Animals↗

Oligoclonal T cell expansion in blood but not in the thymus from a patient with thymoma-associated pure red cell aplasia.

Despite the well-known association between thymoma and PRCA, the role of thymoma remains uncertain. There is accumulating evidence that clonal T cells are involved in acquired PRCA. We examined T cell receptor repertoires in blood and thymus from a patient with PRCA associated with thymoma and myasthenia gravis. Oligoclonal expansions of Vdelta1- and Vbeta1-expressing T cells were found in peripheral blood, whereas the repertoires of Vdelta1+ and Vbeta1+ T cells in thymoma were not skewed. Oligoclonal expansion of Vdelta1-expressing T cells remained unchanged after thymectomy. Thymus may not be the site of clonal T cell expansion in thymoma-associated PRCA.

Clone Cells↗

Genipin prevents fulminant hepatic failure resulting in reduction of lethality through the suppression of TNF-alpha production.

Genipin is a metabolite derived from the herbal medicine Inchinko-to. Little is known about the mechanism of genipin action on acute liver injury through inflammatory cytokines. We examined the effects of genipin on production of TNF-alpha in vivo and in vitro. Mice were given GalN/LPS with or without genipin treatment. All mice not given genipin died within 12h. But in mice given genipin, 8 of 15 mice survived for 24h after GalN/LPS administration. Histologically, hepatic necrosis and inflammatory cells infiltration were significantly slight in mice given genipin. Serum AST and ALT activity were significantly lower in mice given genipin. Serum and liver homogenate TNF-alpha levels were significantly lower in mice given genipin. However, in IL-6 and IL-1beta, there were no significant differences in mice given and not given genipin. TNF-alpha, NF-kappaB activation and TNF-alpha mRNA expression in a cultured mouse macrophage-like cell line J774.1 were significantly suppressed by genipin administration. In conclusion, the present findings suggest that genipin, a metabolite derived form the herbal medicine Inchinko-to improved acute liver dysfunction by suppressive effect of TNF-alpha production.

Journal Article↗

Hepatocyte-specific Pten-deficient mice as a novel model for nonalcoholic steatohepatitis and hepatocellular carcinoma.

Phosphatase and tensin homolog (PTEN) is a multifunctional phosphatase whose substrate is phosphatidylinositol-3,4,5-triphosphate (PIP3), and it is also a ubiquitously expressed tumor suppressor gene that down-regulates phosphatidylinositol-3-kinases (PI3Ks). Although there are a few reports about PTEN related to hepatocellular carcinoma, the role of PTEN in the liver remains unclear. Therefore, to clarify the role of PTEN in the liver, we generated and analyzed hepatocyte-specific Pten-deficient mice (Pten-deficient mice). The liver of 40-week-old Pten-deficient mice revealed macrovesicular steatosis, ballooning hepatocytes, lobular inflammatory cell infiltration, and perisinusoidal fibrosis that are characteristic of human nonalcoholic steatohepatitis (NASH). By 80 weeks of age, 100% of Pten-deficient livers showed adenomas and 66% had hepatocellular carcinomas. Thus, PTEN is important for the prevention of adipogenic and tumorigenic transformation, and Pten-deficient mice are a novel model for NASH and hepatocellular carcinoma. Our results suggest that the controlled blocking of molecules acting downstream of PI3K might provide significant therapeutic benefit to patients predisposed to NASH and hepatocellular carcinoma.

Journal Article↗