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Biomedical subjects

Junichi Suzuki

Publications and source records attributed to Junichi Suzuki.

9 recordsLinked to original sources

The pharmacodynamic effect of omeprazole 10 mg and 20 mg once daily in patients with nonerosive reflux disease in Japan.

BACKGROUND: To evaluate the pharmacodynamic effect, efficacy, and safety of omeprazole 10 mg and 20 mg once daily in patients with nonerosive reflux disease (NERD) in Japan. METHODS: A total of 37 patients were randomized to omeprazole 10 mg or omeprazole 20 mg once daily for 4 weeks. Eligible patients had a history of moderate-to-severe heartburn for 2 days or more per week during the last 1 month or longer prior to the study screening, grade M or grade N on Hoshihara's modification of the Los Angeles classification (i.e., no sign of mucosal break on esophagogastroduodenoscopy), and heartburn episodes for 2 days or more per week during the last week of the observation period while taking antacids. Ambulatory 24-h intraesophageal pH was monitored on the day before treatment and on the last day of treatment. The occurrence of a heartburn episode was recorded during pH monitoring. The primary endpoint was the change in the percentage of time with intraesophageal pH < 4 during the 24-h period before and after omeprazole treatment. RESULTS: Both omeprazole 10 mg and omeprazole 20 mg once daily reduced the percentage of time with intraesophageal pH < 4. The percentage reduction in time with intraesophageal pH < 4 after treatment with omeprazole was associated with a reduced number of heartburn episodes. Patients with grade M or grade N esophagus had similar pH profiles and NERD characteristics (e.g., pH holding time, symptom index) and comparable responses to omeprazole. No serious, drug-related adverse events were reported. CONCLUSIONS: Omeprazole 10 mg or 20 mg reduces the percentage of time with intraesophageal pH < 4, is efficacious, and is well tolerated in patients with NERD in Japan, regardless of the patient's endoscopic classification.

Adult↗

L-arginine supplementation causes additional effects on exercise-induced angiogenesis and VEGF expression in the heart and hind-leg muscles of middle-aged rats.

The effects of dietary L-arginine supplementation on exercise-induced angiogenesis and VEGF expression were examined in male middle-aged (12 months old) Wistar rats. Exercise training lasted for six weeks at 20 m/min on a 0% gradient for 10-60 min/day. Rats in the L-arginine-treated groups drank water containing 2.5% L-arginine. According to histochemical identification of the capillary profile, in the soleus muscle the capillary-to-fiber (C:F) ratio showed a significantly greater value in the L-arginine-treated training group than in both the sedentary control and training groups. Training with L-arginine significantly increased the C:F ratio in the subendocardium of the left ventricle, whereas training alone did not. In the plantaris muscle, training with or without L-arginine significantly increased the capillary density, but it did not affect the C:F ratio. A Western blot analysis showed that training with L-arginine significantly increased VEGF protein expression by 2.9-fold in the soleus muscle and by 1.7-fold in the left ventricle, but the increase with training alone was insignificant. The tissue endothelial nitric oxide synthase protein levels were significantly increased in both the soleus (by 1.3-fold) and the left ventricle (by 1.4-fold) only after training with L-arginine supplementation. In the plantaris muscle, these protein levels did not change after either training or L-arginine treatment. The present results suggest that in middle-aged rats, L-arginine administration caused additional effects on exercise-induced angiogenesis by presumably promoting VEGF expression in the hind-leg muscle as well as in the left ventricle.

Aging↗

Characterization of multimetric variants of ubiquitin carboxyl-terminal hydrolase L1 in water by small-angle neutron scattering.

Here, we illustrated that the morphological structures of ubiquitin carboxyl-terminal hydrolase L1 (UCH-L1) variants and Parkinson's disease (PD) exhibit good pathological correlation by a small-angle neutron scattering (SANS). UCH-L1 is a neuro-specific multiple functional enzyme, deubiquitinating, ubiquityl ligase, and also involved in stabilization of mono-ubiquitin. To examine the relationship between multiple functions of UCH-L1 and the configuration of its variants [wild-type, I93M (linked to familial Parkinson's disease), and S18Y (linked to reduced risk of Parkinson's disease)], in this report, we proposed that these were all self-assembled dimers by an application of a rotating ellipsoidal model; the configurations of these dimers were quite different. The wild-type was a rotating ellipsoidal. The globular form of the monomeric component deformed by the I93M mutation. Conversely, the S18Y polymorphism promoted the globularity. Thus, the multiple functional balance is closely linked to the intermolecular interactions between the UCH-L1 monomer and the final dimeric configuration.

Circular Dichroism↗

Microvascular angioadaptation after endurance training with L-arginine supplementation in rat heart and hindleg muscles.

This study was designed to examine whether dietary L-arginine supplementation modulates exercise-induced angiogenesis and vascular endothelial growth factor (VEGF) expression in female Wistar rats. Exercise training (running) lasted for 6 weeks at 25 m min-1 on a 20% gradient for 10-60 min day-1. Rats in the L-arginine-treated groups drank water containing 4% L-arginine. Histochemical identification of capillary profiles showed that training with L-arginine significantly increased the capillary/fibre (C/F) ratio in the subendocardium of the left ventricle, whereas training alone did not. Because of a significantly higher fibre cross-sectional area, a concomitant, but not significant, decrease in capillary density was also observed. In the hindleg muscles, training with L-arginine significantly increased the C:F ratio, although the degree of change was the same as that observed after training alone. Western blot analysis showed that training with L-arginine significantly increased VEGF protein expression by 1.7-fold in the left ventricle, while the increase with training alone was insignificant. In the soleus muscle, although VEGF protein expression was elevated insignificantly after training (2.8-fold), training with L-arginine significantly increased the protein levels (3.8-fold). Tissue endothelial nitric oxide synthase protein levels did not changed after either training or L-arginine treatment. The present results suggest that L-arginine supplementation causes additional effects on exercise-induced angiogenesis in the rat heart by promoting VEGF expression.

Animals↗

Expression of nonmuscle myosin heavy chain B (SMemb) in rat allogeneic kidney transplantation.

BACKGROUND/AIM: Investigators have reported that the nonmuscle myosin heavy chain B (SMemb) expression is enhanced in various types of glomerular diseases which develop into nephrosclerosis. In renal transplantation, transplant glomerulitis is often recognized during acute rejection. Therefore, we hypothesized that SMemb plays important roles in acute kidney rejection. To evaluate the role of SMemb in the development of kidney rejection, we examined its expression in rat kidney transplantation models. METHODS: We used Lewis rats as recipients and Wistar rats as donors. Group I: controls; group II: isograft model; group III: allograft model; group IV: as group III +10 mg/kg/day of ciclosporin A (CsA), and group V: as group III + CsA administration for 5 days postoperatively. Histopathological and SMemb immunohistochemical studies were completed. RESULTS: Clear enhancement of SMemb expression was found on day 3 in group III. In groups I, II, IV, and V, SMemb was faintly expressed in the glomerular cells. However, after termination of CsA treatment, the SMemb expression increased. The expression of SMemb was higher in the allograft model than in either isograft or CsA-treated models. CONCLUSIONS: Immunohistological investigations show that the SMemb expression was significant from an early stage at which histopathological reactions were hardly identifiable. This, therefore, could be useful for an earlier diagnosis of acute rejection.

Acute Disease↗

Microvascular remodelling after endurance training with Co2+ treatment in the rat diaphragm and hind-leg muscles.

This study was designed to examine the changes in capillary geometry, especially the distribution of arteriolar and venular capillaries, in the skeletal muscles of female Wistar rats after endurance training with and without chronic CoCl(2) administration. Four groups of rats were used: non-treated sedentary, non-treated training, Co(2+)-treated sedentary, and Co(2+)-treated training. Exercise training by running lasted for 5 weeks at 25 m/min on a 20% gradient, 10-60 min/d, 5 d/week. The Co(2+)-treated rats drank water containing 0.01% CoCl(2) for 5 weeks. Morphological findings were obtained from the soleus (SOL), deep (PLd) and superficial (PLs) portions of plantaris, and diaphragm (DIA) muscles. Co(2+) administration significantly increased the blood hemoglobin concentration by approximately 25% with and without training. Only in DIA, the Co(2+) treatment alone significantly increased total capillary density and the capillary-to-fiber ratio (C : F) (p<0.05). Both training groups with and without Co(2+) administration showed a significant increase in the C : F in SOL and PLd (p<0.05). In PLd, the increase was significantly greater in the Co(2+)-treated training group than in the non-Co(2+)-treated training group (p<0.05). Training significantly increased the proportion of arteriolar capillaries while it decreased that of venular capillaries in both SOL and PLd (p<0.05). These changes were also observed in PLd after training with Co(2+). The densities of VEGF-positive and TGF-beta1-positive capillaries remained unchanged in all muscle portions examined after either Co(2+) administration or exercise training. These results suggest that chronic Co(2+) administration causes adaptive changes in the oxygen transport system in respiratory muscle and facilitates exercise-induced angiogenesis in hind-leg muscles.

Animals↗

Effect of serial extraction alone on crowding: relationship between closure of residual extraction space and changes in dentition.

Mandibular dentitions from 33 subjects who had undergone serial extraction without appliances were analyzed at three stages: before extraction of deciduous canines (T1), after extraction of first premolars (T2), and at the end of the observation (T3). It was suggest that the mesial movement or tipping of the second premolars was associated with most of the space closure from T2 to T3, although the distal movement or tipping of canines might also contribute space closure.

Analysis of Variance↗