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Biomedical subjects

F Ueda

Publications and source records attributed to F Ueda.

At least 19 recordsLinked to original sources

Olivary degeneration after intracranial haemorrhage or trauma: follow-up MRI.

We studied serial MRI appearances of transneuronal degeneration in the inferior olives, retrospectively analysing follow-up images of five patients, three with head injury and two with brain stem haemorrhage. We performed 13 MRI studies 4 days to 2 years 7 months after the accident. All but one of the patients exhibited bilateral olivary high signal on T2-weighted images. The interval between causal event and appearance of olivary changes was 2-4 months, images 4 days to 1.5 months after the accidents revealing no changes. Olivary enlargement was observed in four patients 2-4 months after ictus.

Adolescent

Irsogladine maleate inhibits angiogenesis in wild-type and plasminogen activator-deficient mice.

BACKGROUND: The activation of the zymogen plasminogen to the serine protease plasmin by urokinase-type (uPA) and tissue-type (tPA) plasminogen activators (PA) is an important event in a variety of physiologic and pathophysiologic processes in mammals. Enhanced PA activity occurs during angiogenesis and has been correlated in vitro and in vivo with increased tumor aggressiveness and is an indicator of poor prognosis in a variety of tumors in humans. Preliminary studies suggest that the antiulcer drug irsogladine maleate (IM) diminishes PA activity in vitro and may inhibit angiogenesis in vivo. To define the precise mechanism of angiogenesis inhibition by IM in vivo, we tested the ability of IM to blunt angiogenesis in a mouse cornea neovascularization model performed in wild-type and PA-knockout mice. METHODS: Three days prior to pellet implantation, groups of C57Bl/6 wild-type, uPA-deficient (upA-/-), and tPA-deficient (tPA-/-) mice received IM (300 mg/kg), IM (500 mg/kg), or vehicle (0.5% carboxymethylcellulose) via oral gavage. After 3 days of treatment, hydron polymer-coated pellets of sucrose aluminum sulfate containing 100 ng of basic fibroblast growth factor (bFGF) were inserted into surgically created pockets in the cornea of each mouse. On postoperative day 6, the neovascularization of each cornea was evaluated by a blinded observer using slit lamp microscopy and photographed. Angiogenesis was quantified by calculating vascular area (mm2) +/- SEM using a modified formula for a half ellipse that incorporates calibrated vessel measurements [Vessel length (mm) x Clock hours x pi x 0.2]. RESULTS: IM treatment (300 and 500 mg/kg/day) resulted in a dose-dependent reduction of angiogenesis in wild-type mice by 21 and 45.3% (P < 0.02, P < 0.001), in tPA-deficient mice by 42.6 and 46% (P < 0.001, P < 0.001), and in uPA-deficient mice by 27.2 and 46% (P < 0.05, p < 0.001), respectively. No quantitative differences in neovascularization were observed in either treatment group between transgenic mouse strains. No toxicity was noted in any group. CONCLUSION: IM inhibits bFGF-induced angiogenesis in wild-type, tPA-knockout, and uPA-knockout mice. The observation that IM significantly diminishes angiogenesis in both PA-deficient mice and wild-type mice suggests that the mechanism of action of IM may be independent of plasminogen activation.

Animals

Inhibition of stress-stimulated colonic propulsion by alpha 2-adrenoceptor antagonists in rats.

Alpha2-adrenoceptor antagonists have been reported to stimulate colonic motor activity, but the effect on colonic motor dysfunction is unclear. We have investigated the effect of alpha 2-adrenoceptor antagonists on wrap-restraint stress-stimulated and normal colonic propulsion in rats. Colonic propulsion was evaluated by the transit of a charcoal marker along the colon. Faecal pellets output was also measured. A 30-min exposure to wrap-restraint stress starting 120 min after infusion of the charcoal marker significantly stimulated colonic transit with a concomitant increase in faecal pellets. Yohimbine and idazoxan, alpha 2-adrenoceptor antagonists, clonidine, an alpha 2-adrenoceptor agonist, and atropine suppressed wrap-restraint stress-stimulated colonic transit and faecal excretion in a dose-dependent manner. Ondansetron and YM060, 5-hydroxytryptamine3 (5-HT3) receptor antagonists, potently inhibited wrap-restraint stress-stimulated colonic transit, but only weakly inhibited faecal excretion. Neither alpha 2-adrenoceptor antagonists nor atropine had any significant effect on normal colonic transit, whereas clonidine and the 5-HT3 receptor antagonists inhibited it. alpha 2-Adrenoceptor antagonists as well as clonidine, atropine and 5-HT3 receptor antagonists inhibit the stress-induced colonic motor dysfunction in rats.

Adrenergic alpha-Agonists

Suppressive effect of irsogladine maleate on diethylnitrosamine-initiated and phenobarbital-promoted hepatocarcinogenesis in male F344 rats.

Modifying effects of irsogladine maleate (IRG) on diethylnitrosamine (DEN)-induced hepatocarcinogenesis were examined in male F344 rats. Six-week-old rats were divided into 8 groups. Groups 1 through 4 were given a single i.p. injection of DEN (200 mg/kg body weight) at the start of the experiment, whereas groups 5 through 8 received a single i.p. injection of saline as the vehicle treatment. Groups 1 and 8 were kept on the basal diet and distilled water throughout the experiment (36 weeks). Groups 2 and 7 were exposed to 500 ppm phenobarbital (PB) in the drinking water, starting one week after the carcinogen or vehicle treatment. Groups 3 and 5 were fed the diet mixed with 125 ppm IRG from one week after DEN or vehicle treatment. Groups 4 and 6 were given 125 ppm IRG-containing diet and drinking water with 500 ppm PB after the carcinogen or vehicle treatment. Liver neoplasms developed in groups 1 (1/15 rats, 7%) and 2 (14/14 rats, 100%). However, no liver tumors were found in rats of groups 3 through 8. Incidence and average number of liver neoplasms in group 4 (0/14 rats, 0%) were less than those in group 2 (P < 0.0001). The number of glutathione S-transferase placental form (GST-P)-positive liver cell foci in group 3 or 4 was significantly smaller than that in the appropriate control (P < 0.01, P < 0.001, respectively). The average and unit areas of these foci in group 4 were also significantly smaller than those in group 2 (P < 0.001, P < 0.05, respectively). These results suggest that IRG could be a chemopreventive agent for rat liver carcinogenesis.

Animals

Role of gap junctions in inhibiting ischemia-reperfusion injury of rat gastric mucosa.

Gap junctional intercellular communication (GJIC) is known to be important in the maintenance of tissue homeostasis. However, the role of GJIC in gastric mucosa has not been well investigated. We tested the hypothesis that maintenance of GJIC protects rat gastric mucosa against ischemia-reperfusion (I/R) stress by using irsogladine, an activator of GJIC, and octanol, an inhibitor of GJIC. Intragastric perfusion with octanol before ischemia resulted in a significant increase in 51Cr-EDTA clearance after reperfusion. Intraduodenal pretreatment with irsogladine attenuated the increase in 51Cr-EDTA clearance produced by octanol in a dose-dependent manner. Epithelial gap junctions reacted with anticonnexin-32 monoclonal antibodies were not changed after I/R stress alone. Intragastric perfusion with octanol caused a significant reduction in immunoreactive connexin-32 spots, which was completely reversed by irsogladine. These results indicate that inhibition of GJIC weakens the barrier function of gastric mucosa and subsequently causes damage of the barrier function in combination with I/R. Facilitation of GJIC and maintenance of gap junctions protect gastric mucosal barrier functions by potentiating cellular integrity.

Animals

High glucose induces alteration of gap junction permeability and phosphorylation of connexin-43 in cultured aortic smooth muscle cells.

Gap junction is thought to have a crucial role in maintaining tissue homeostasis. We examined the effect of a high glucose level on gap junctional intercellular communication (GJIC) activity in cultured vascular smooth muscle cells (VSMCs) using the fluorescent dye transfer method. After a 48-h incubation with 22 mmol/l glucose (high glucose level), GJIC activity of VSMCs was significantly reduced compared with incubation with 5.5 mmol/l glucose (normal glucose level) (P < 0.05). Treatment of the cells with 12-O-tetradecanoylphorbol-13-acetate (TPA; 5 x 10(-8) mol/l), a protein kinase C (PKC) activator, for 1 h also reduced GJIC activity (P < 0.01). In addition, treatment of the cells with calphostin C, a specific PKC inhibitor, for 3 h completely restored the GJIC activity inhibited by the high glucose level. Western blot analysis showed that connexin 43 (Cx43), which is the major functional protein of gap junction, is present in multiphosphorylated forms: a nonphosphorylated form (P0) and phosphorylated forms (P1, P2, and P3). Incubation of VSMCs with a high glucose level significantly increased the density ratio of P3/P0 compared with a normal glucose level (P < 0.05). Similarly, treatment of the cells with TPA significantly increased the P3/P0 ratio compared with controls (P < 0.01). In addition, the increase in the P3/P0 density ratio induced by a high glucose level was restored to the control level by both staurosporine and calphostin C. These results suggest that the high glucose level induced the inhibition of GJIC activity in cultured VSMCs through excessive phosphorylation of Cx43, mediated by PKC activation. This may contribute to the development of the macroangiopathy associated with diabetes.

Animals

Classification of Listeria monocytogenes by PCR-restriction enzyme analysis in the two genes of hlyA and iap.

PCR-restriction enzyme analysis in the two virulence-associated genes was performed. The hlyA gene cording for listeriolysin O and the iap gene cording for an invasion associated factor were amplified with primers SH2 or SI3. The PCR products obtained were cleaved with 32 restriction enzymes, and restriction profiles from 12 strains, 6 each of serotypes 1/2a and 4b, were compared. We obtained two profiles for the hlyA using 4 restriction enzymes and eight profiles for the iap by using AluI, and the results of the profiles did not correlate with the serotypes. The polymorphism in the iap region was of a higher degree than that in the hlyA region, and the PCR-restriction enzyme analysis of the iap gene with primers SI3 and AluI was confirmed as one of the useful epidemiological analysis methods for listerosis outbreaks.

Bacterial Proteins

Effect of YNS-15P, a new alpha-2 adrenoceptor antagonist, on stress-stimulated colonic propulsion in rats.

We studied effects of a novel alpha-2 adrenoceptor antagonist, YNS-15P (N-[(2R,11bS)-9-methoxy-1,3,4,6,7, 11b-hexahydro-2H-benzoquinolizin-2-yl]-N-methylmethanesulfonami de hydrochloride), on colonic propulsion stimulated by wrap-restraint stress (WRS) or bethanechol, on normal colonic propulsion and on diarrhea induced by castor oil in rats. Alpha-2 adrenoceptor antagonists, rauwolscine and RX821002, decreased the increase in the number and weight of fecal pellets induced by WRS. YNS-15P also inhibited WRS-stimulated fecal excretion in a dose-dependent manner. A 5-hydroxytryptamine3 receptor antagonist, granisetron, trimebutine and diazepam, but not a 5-hydroxytryptamine4 receptor antagonist, GR113808, significantly inhibited WRS-stimulated fecal excretion. YNS-15P inhibited WRS-stimulated colonic transit in a dose-dependent manner. However, YNS-15P had no significant effect on normal fecal excretion and colonic transit or on bethanechol-stimulated fecal excretion. YNS-15P also failed to inhibit castor-oil-induced diarrhea. These results indicate that YNS-15P selectively inhibits WRS-stimulated colonic propulsion, and that alpha-2 adrenoceptors may be involved in stress-induced colonic motor dysfunction in fed rats.

Adrenergic alpha-2 Receptor Antagonists

Uptake of 26-Al and 67-Ga into brain and other tissues of normal and hypotransferrinaemic mice.

Aluminium uptake from blood into tissues of control and homozygous hypotransferrinaemic (hpx/hpx) mice, following continuous intravenous infusion of 26Al and 67Ga, has been compared with that of gallium, a proposed tracer for aluminium. 26Al uptake into tissues of control (hpx/+ and +/+) mice occurred in the order (expressed as a space): bone 464.7 ml 100 g-1; renal cortex 102.9 ml 100 g-1; liver 13.0 ml 100 g-1; spleen 8.4 ml 100 g-1 and brain 0.8 ml 100 g-1. 67Ga uptakes were similar in liver, spleen and brain, but smaller in the renal cortex and bone, at one-third and one-fifth of the values for 26Al, respectively. In the hypotransferrinaemic mice, uptake of 67Ga into all tissues was increased, especially in renal cortex (ninefold) and bone (twentyfold) as compared with the controls. Increases in 67Ga uptakes into cerebral hemisphere, cerebellum and brain stem of the hypotransferrinaemic mice were 3.8, 4.2 and 2.8 fold, respectively. 26Al uptake into tissues of the hypotransferrinaemic mice was similar to control values except in bone where it was three times greater. Pre-treatment of control animals with the anti-transferrin receptor antibody, RI7 208, enhanced 67Ga uptake in all tissues, the effect being greatest in renal cortex (tenfold) and bone (ninefold). 67Ga uptakes into cerebral hemisphere, cerebellum and brain stem in the mice pre-treated with RI7 208 were 6.4, 6 and 10 times greater than in untreated mice, respectively. No influence of antibody on 26AI uptake into mouse tissues was observed except in spleen where it was three times greater than in untreated mice. Hence, transport of aluminium and gallium into mouse tissues is not similar under all conditions. Non-transferrin mediated transport of each metal can occur into all tissues, especially in renal cortex and bone, where gallium may be a suitable marker for aluminium.

Aluminum

Effect of Irsogladine on gap junctions in cerulein-induced acute pancreatitis in rats.

The capacity for intercellular communication (IC) via gap junctions is found in normal pancreatic acinar cells. The major role of IC is considered to be the maintenance of tissue homeostasis and the regulation of signal transmissions. Up to now, the participation of IC via gap junctions in acute pancreatitis has not been reported. We investigated the role of IC in cerulein (Cn)-induced acute pancreatitis in rats using irsogladine, an enhancer of IC via gap junction. Acute edematous pancreatitis was induced in rats by two intraperitoneal injections of 40 micrograms/kg Cn. Rats received various doses (25, 50, or 100 mg/kg body weight) of irsogladine orally, 15 and 2 h before the first Cn injection. The normal control group received only vehicle. The severity of pancreatitis was evaluated enzymatically and histologically 5 h after the first Cn injection. In Cn-induced acute pancreatitis, irsogladine significantly lowered the serum amylase level, the pancreatic wet weight, and the pancreatic amylase and DNA contents, in a dose-dependent manner. Particularly, the amylase content improved to the level of the normal controls. Histologically, the severity of pancreatitis was reduced significantly by treatment with irsogladine and no discernible vacuolization was seen in the group with 100 mg/kg irsogladine treatment. By immunofluorostaining pancreata with anti-connexin 32 (Cx32; a gap junction protein) antibody, we found that pancreatic acini were diffusely positive for Cx32 in the control group, but the number of Cx32-positive grains decreased markedly, to 19%, in the pancreatitis group. With 100 mg/kg irsogladine treatment, the number of Cx32 grains recovered to 70% of the normal control value. These findings indicate that IC via gap junction is disturbed in Cn-induced pancreatitis, which may result in the breakdown of tissue homeostasis and the progression of acute pancreatitis.

Acute Disease

Tuberculous tenosynovitis in the elbow joint.

A 74-year-old woman was noted to have a mass lesion near the right elbow joint during medication for pulmonary tuberculosis. After discontinuation of medication, the mass gradually became enlarged with swelling and tenderness of the joint. Radiological evaluation disclosed tenosynovitis with an encapsulated abscess. Microscopic examination and culture of an aspiration biopsy specimen from the abscess showed no microorganisms. However, DNA extracted from the specimen contained mycobacterium tuberculosis DNA, permitting a diagnosis of tuberculous tenosynovitis. Mycobacterium is not always detected in biopsy specimens of tuberculous arthritis and tenosynovitis. In such cases, genetic diagnosis may be of great use.

Abscess

Inhibition of intercellular communication via gap junction in cultured aortic endothelial cells by elevated glucose and phorbol ester.

Gap junctional intercellular communication (GJIC) is important in coordinating the cells in maintaining tissue homeostasis and in regulating signal transmission. We examined the effect of elevated glucose on GJIC activity in cultured bovine aortic endothelial cells. GJIC activity was assessed by quantitating the transfer from cell to cell of directly microinjected fluorescent dye molecules. GJIC was activated in the subconfluent monolayer. In this condition, exposing the cells to elevated glucose (400 mg/dl) for 24 hrs significantly inhibited GJIC activity, as compared with low glucose (100 mg/dl). This inhibition of GJIC activity induced by elevated glucose was mimicked by addition of 12-O-tetradecanoylphorbol-13-acetate and was restored by addition of staurosporin (10(-8)M), a PKC inhibitor. These results suggest that inhibition of GJIC activity induced by elevated glucose probably through activation of PKC may be involved in the vascular endothelial cell dysfunction associated with diabetes.

Alkaloids

Quality of peptic ulcer healing induced by lansoprazole and roxatidine.

This study reports preliminary results of a controlled, multicenter trial on the quality of ulcer healing induced by lansoprazole (LPZ) or roxatidine (R) in gastric ulcer (GU) or duodenal ulcer (DU) patients. Group A received LPZ 30 mg q.d. and group B received R 75 mg b.i.d. All drugs were given for 8 weeks in GU and for 6 weeks in DU. Endoscopy and gastric biopsy were performed to detect Helicobacter pylori before and on completion of treatment. The healing rates of groups A and B were 100 and 69.2%, respectively, in GU and 100 and 70.0%, respectively, in DU. This difference (p < 0.01) was significant between the two groups in GU. There was no significant difference between the two groups in the S2 stage shift rate in GU and DU. The H. pylori clearance rates of groups A and B were 33.3 and 20.0%, respectively, in GU and 62.5 and 33.3%, respectively, in DU. The differences in treatment response (healing rates and S2 shift rates) between the LPZ group and the R group may be related to the differences in suppression of acid secretion and in bactericidal effects on H. pylori.

2-Pyridinylmethylsulfinylbenzimidazoles

[Ameliorating effect of lactitol on experimental hepatic encephalopathy in Eck fistula dogs].

Eck fistula (portacaval shunted) dogs were prepared for use as an experimental model of chronic hepatic encephalopathy. The effect of lactitol on hepatic encephalopathy was investigated by observing the behavior, electroencephalograms (EEGs) and visually evoked potentials (VEPs) of the experimental dogs. Lactitol was administered intragastrically once a day for 12 weeks from the third week after the portacaval-shunt operation and the behavior, EEGs and VEPs of the dogs were observed every two weeks. Dogs not given lactitol became sluggish, then apparently blind, and eventually fell into a coma, over a period of several weeks after the operation. Some dogs died. The EEGs revealed low-voltage slow waves and, at a later stage, displayed flattening in some dogs. The VEPs displayed prolonged latency of both the positive and the negative component as well as an increased amplitude. Lactitol at 1 or 3 g/kg/day suppressed the behavioral symptoms and the changes in the EEGs and the VEPs. These results suggest that lactitol may be useful for the treatment of various nervous symptoms in patients with hepatic encephalopathy accompanied by hyperammonemia.

Animals

Mechanism for lowering blood ammonia levels by lactitol.

Lactitol has been reported to decrease the blood ammonia concentration in various experimental hyperammonemia models such as portacaval shunted rats. The mechanism responsible for this lowering of blood ammonia levels was investigated in rats. When lactitol was given orally twice a day for 7 days at doses of 3 and 10 g/kg/day and at half that daily dose on day 8, it significantly decreased the ammonium concentration of the portal blood by 27.3-43.2%, cecal ammonia contents by 49.2-57.6% and the pH of the cecal contents from 6.52 to 5.92-5.54, 4 hr after the final administration. Lactitol also inhibited increases in the portal ammonia concentration induced by the intracecal administration of ammonium acetate (300 mg/kg) 4 hr after the final administration. When lactitol was given orally at bolus doses of 1 and 3 g/kg simultaneously with a charcoal meal, lactitol significantly facilitated small intestinal transit by 12-13%. At a bolus dose of 3 g/kg, given 1 hr before the administration of a charcoal meal into the proximal colon, lactitol significantly facilitated colonic transit by 29.5%. These effects of lactitol were similar to those of lactulose. These findings suggest that lactitol decreases blood ammonia concentration by inhibiting both the production and the absorption of ammonia through reducing intestinal pH and shortening the residence time of intestinal contents in the intestinal tract.

Acetates

Irsogladine inhibits ionomycin-induced decrease in intercellular communication in cultured rabbit gastric epithelial cells.

Effects of irsogladine on ionomycin-induced decrease in intercellular communication and increase in intracellular concentration of Ca2+ ([Ca2+]i) were investigated in cultured rabbit gastric epithelial cells. Ionomycin (10(-7)-10(-6) M) transiently and concentration-dependently inhibited intercellular communication concomitantly with the elevation of [Ca2+]i in the presence and absence of extracellular Ca2+. Irsogladine (10(-5) M), which has been shown to facilitate intercellular communication, suppressed the ionomycin-induced elevation of [Ca2+]i and decrease in intercellular communication. The suppression of the ionomycin effects by irsogladine was independent of extracellular Ca2+. TMB-8 [8-(diethylamino)octyl-3,4,5-trimethoxy-benzoate hydrochloride] (10(-6) M) also suppressed the ionomycin-induced elevation of [Ca2+]i and decrease in intercellular communication. These results indicate that the ionomycin-induced decrease in intercellular communication may be due to Ca2+ mobilization from intracellular stores. Inhibitory effects of irsogladine and TMB-8 on the ionomycin-induced decrease in intercellular communication may be produced by suppressing Ca2+ mobilization.

Animals

Irsogladine activates gap-junctional intercellular communication through M1 muscarinic acetylcholine receptor.

Irsogladine, an agent that protects gastric mucosa against various ulcerogenic stimuli through increasing cyclic AMP in surface mucous cells, has been reported to dose-dependently (10(-7) to 10(-5) M) facilitate gap-junctional intercellular communication (GJIC) in gastric epithelial cells. The beta adrenergic agonist, isoproterenol, stimulates GJIC in resting cells and inhibits GJIC in cells activated by 3-isobutyl-1-methylxanthine. In this study, we investigated whether irsogladine acts on GJIC in a manner similar to that shown by isoproterenol. Irsogladine, which bound to M1 muscarinic acetylcholine receptors (mAChR), did not inhibit, but failed to further facilitate the 3-isobutyl-1-methylxanthine-enhanced GJIC, measured by Lucifer yellow transfer. The enhancement of GJIC by irsogladine was inhibited by the M1 mAChR antagonist, pirenzepine. A selective M1 mAChR agonist, McN-A-343, enhanced GJIC. Isoproterenol (10(-8) to 10(-6) M), which alone did not affect GJIC, inhibited the GJIC enhanced by 10(-5) M irsogladine. Conversely, 10(-10) to 10(-6) M irsogladine, which alone did not affect GJIC, inhibited the GJIC enhanced by 10(-5) M isoproterenol. McN-A-343 also converted the action of 10(-5) M isoproterenol from facilitation to inhibition of GJIC. These results indicate that GJIC is heterologously down-regulated by cross-talk between M1 mAChR and beta adrenergic receptors. In addition, the effects of irsogladine and isoproterenol at low concentrations suggest the involvement of another mechanism for down-regulating GJIC.

(4-(m-Chlorophenylcarbamoyloxy)-2-butynyl)trimethy

Contrasting uptakes of 59Fe into spleen, liver, kidney and some other soft tissues in normal and hypotransferrinaemic mice. Influence of an antibody against the transferrin receptor.

Uptake of iron-59 from blood into various soft tissues of anaesthetized mice was investigated by continuous intravenous infusion of the radiotracer during 2 hr. The 59Fe was given either as ferrous chloride with ascorbate or as 59Fe-transferrin. Infusions were made into adult mice with and without pretreatment with a monoclonal antibody against transferrin receptors, and into hypotransferrinaemic mice and appropriate controls. In normal mice, 59Fe uptake into spleen was much higher than into other tissues and was 94-96% inhibited by the antibody. Inhibitions due to the antibody were less complete in liver and renal cortex, and there was evidence of some non-transferrin-mediated transport during infusion of 59Fe/ascorbate. In the hypotransferrinaemic mice, tissue uptakes of 59Fe during infusion of 59Fe/ascorbate were enormous, being two to three orders of magnitude greater than in the normal controls. The rank order for size of uptake was liver > renal cortex > pancreas > spleen > other tissues. All tissues examined have a considerable potential capacity for uptake of non-transferrin-bound iron, this being greatest in liver and renal cortex.

Animals