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Biomedical subjects

Yuji Naito

Publications and source records attributed to Yuji Naito.

At least 55 records · Page 3Linked to original sources

A new device for ensuring the correct length of artificial chordae in mitral valvuloplasty.

Mitral valvuloplasty using Gore-Tex as artificial chordae, especially for patients with anterior leaflet prolapse, is often associated with difficulties in determining the length of artificial chordae as well as in preventing knot slipping. We describe a simple technique of using a new device that enables surgeons to easily determine the accurate length of the artificial chordae and to tie the slippery knot without sliding and damaging it.

Cardiac Surgical Procedures↗

Midterm clinical result of tissue-engineered vascular autografts seeded with autologous bone marrow cells.

OBJECTIVE: Prosthetic and bioprosthetic materials currently in use lack growth potential and therefore must be repeatedly replaced in pediatric patients as they grow. Tissue engineering is a new discipline that offers the potential for creating replacement structures from autologous cells and biodegradable polymer scaffolds. In May 2000, we initiated clinical application of tissue-engineered vascular grafts seeded with cultured cells. However, cell culturing is time-consuming, and xenoserum must be used. To overcome these disadvantages, we began to use bone marrow cells, readily available on the day of surgery, as a cell source. The aim of the study was to assess the safety and feasibility of this technique for creating vascular tissue under low-pressure systems such as pulmonary artery or venous pressure. METHODS: Since September 2001, tissue-engineered grafts seeded with autologous bone marrow cells have been implanted in 42 patients. The patients or their parents were fully informed and had given consent to the procedure. A 5-mL/kg specimen of bone marrow was aspirated with the patient under general anesthesia before the skin incision. The polymer tube serving as a scaffold for the cells was composed of a copolymer of l -lactide and -caprolactone (50:50). This copolymer is degraded by hydrolysis. The matrix is more than 80% porous, and the diameter of each pore is 20 to 100 microm. Polyglycolic acid woven fabric with a thickness of 0.5 mm was used for reinforcement. Twenty-three tissue-engineered conduits (grafts for extracardiac total cavopulmonary connection) and 19 tissue-engineered patches were used for the repair of congenital heart defects. The patients' ages ranged from 1 to 24 years (median 5.5 years). All patients underwent a catheterization study, computed tomographic scan, or both, for evaluation after the operation. The patients received anticoagulation therapy for 3 to 6 months after surgery. RESULTS: Mean follow-up after surgery was 490 +/- 276 days (1.3-31.6 months, median 16.7 months). There were no complications such as thrombosis, stenosis, or obstruction of the tissue-engineered autografts. One late death at 3 months after total cavopulmonary connection was noted in patient with hypoplastic left heart syndrome; this was unrelated to the tissue-engineered graft function. There was no evidence of aneurysm formation or calcification on cineangiography or computed tomography. All tube grafts were patent, and the diameter of the tube graft increased with time (110% +/- 7 % of the implanted size). CONCLUSION: Biodegradable conduits or patches seeded with autologous bone marrow cells showed normal function (good patency to a maximum follow-up of 32 months). As living tissues, these vascular structures may have the potential for growth, repair, and remodeling. The tissue-engineering approach may provide an important alternative to the use of prosthetic materials in the field of pediatric cardiovascular surgery. Longer follow-up is necessary to confirm the durability of this approach.

Adolescent↗

Cytokine-induced neutrophil accumulation in the pathogenesis of acute reflux esophagitis in rats.

Although recent reports indicate an increasing incidence of patients with reflux esophagitis, its pathomechanism remains unclear. Cytokines and neutrophils, the latter of which produce reactive oxygen species (ROS), have been implicated in the formation of gastrointestinal diseases. This study investigated the roles of neutrophils, ROS, and cytokines in the pathogenesis of experimental reflux esophagitis. Esophagitis was induced in male Wistar rats by ligation at both the limiting ridge of the stomach and lower portion of the duodenum. The esophagus was then removed, and the lesion index, wet weight, thiobarbituric acid-reactive substances (an index of lipid peroxidation), myeloperoxidase activity (an index of neutrophil accumulation), tumor necrosis factor-alpha (TNF-alpha), and cytokine-induced neutrophil chemoattractant (CINC)-1 in the esophageal mucosa were estimated, and a histological study (hematoxylin-and-eosin staining) was performed. The mRNA expression of TNF-alpha and CINC-1 was analyzed. Anti-neutrophil serum (ANS) was injected intraperitoneally prior to the induction of esophagitis, and inflammatory markers were estimated as described above. The values of all markers increased, and the histological study revealed neutrophil infiltration and edema in mucosa and submucosa at both 12 and 18 h after induction. However, the mRNA expression of both cytokines was observed earlier at 3 and 6 h after induction. ANS inhibited the increases in all inflammatory markers. These results indicate that ROS and lipid peroxidation mainly derived from neutrophils, which are stimulated and mobilized by TNF-alpha and CINC-1, are implicated in the pathogenesis of esophageal inflammation induced by the reflux of gastroduodenal contents.

Animals↗

Impact of papillary muscles approximation on the adequacy of mitral coaptation in functional mitral regurgitation due to dilated cardiomyopathy.

PURPOSE: We report early outcome of our modified papillary muscles approximation (PMA) as an adjunct to mitral annuloplasty (MAP) by analyzing the mitral coaptation zone echocardiographically and clinical outcome in three different procedures. METHODS: Mitral valve coaptation depth (MVCD) and tenting area were measured in patients with ischemic (n=8) or non-ischemic (n=22) dilated cardiomyopathy (ICM or non-ICM) undergoing either of following: Group I: isolated left ventricular volume reduction (LVVR) (n=11), Group II: PMA plus LVVR (n=14), Group III: isolated PMA (n=5). Clinical outcome including cardiac function were also investigated. RESULTS: Thirty-day mortality was 6.7%. Postoperative data in overall survivors showed significant improvement of ejection fraction (EF) (from 19+/-7 to 32+/-9%), left ventricular end-diastolic volume index (LVEDVI) (from 189+/-74 to 132+/-41 mL/m2), and left ventricular diastolic dimension (LVDd) (from 73+/-8 to 65+/-6 mm) (p<0.001). The overall preoperative MVCD (mm) and tenting area (cm2) was 10.4+/-2.8 and 2.4+/-0.6, respectively, which were both significantly reduced to 5.6+/-2.5 and 0.8+/-2.4 postoperatively (p<0.001). In comparison of the degree (%change) of improvement, Group II and III showed favorable effects on tethering force, compared with Group I. CONCLUSION: Our modified PMA is a relatively safe method to have the potential for improving tethering of the mitral valve and clinical outcome in evaluating mitral coaptation zone.

Cardiomyopathy, Dilated↗

A novel water-soluble vitamin E derivative protects against aspirin-induced gastric mucosal injury in rats.

Oxygen radical-mediated lipid peroxidation and neutrophil activation may be involved in the development of gastric mucosal injury induced by non-steroidal anti-inflammatory drugs (NSAIDs). Vitamin E is one of the lipid-soluble antioxidants and is generally considered to protect against lipid peroxidation of the cell membrane and to scavenge singlet oxygen and superoxide anion radicals. Our object was to investigate the antioxidative effects of water-soluble vitamin E derivative, 2-(alpha-D-glucopyranosyl)methyl-2,5,7,8-tetra-methylchroman-6-ol (TMG), on aspirin-induced gastric mucosal injury in rats. Gastric injury was induced by intragastric administration of aspirin and 0.15 N HCl in male Sprague-Dawley rats. TMG dissolved in physiological saline was injected intraperitoneally 0.5 h before the aspirin administration. The intragastric administration of acidified aspirin induced hyperemia and hemorragic erosions in rat stomach. The increase in total area of gastric erosions was reduced by pretreatment with TMG in a dose-dependent manner. The increases of thiobarbituric acid-reactive substances (TBA-RS) and myeloperoxidase (MPO) activity 3 h after aspirin administration were significantly inhibited by pretreatment with TMG. The gastric concentration of cytokine-induced neutrophil chemoattractants-1 (CINC-1) increased after aspirin administration, and the increase was also inhibited by pretreatment with TMG. These results suggest that TMG is effective for the treatment of aspirin-induced gastric injury. This anti-inflammatory effect of TMG seems to be related to impairment of lipid peroxidation, neutrophil function and cytokine production in gastric mucosa.

Animals↗

[Staged surgical palliations for hypoplastic left heart syndrome with poor preoperative conditions].

A 2.8 kg-female newborn diagnosed as hypoplastic left heart syndrome was transferred to our hospital after resuscitation against systemic circulatory failure due to closure of the ductus arteriosus. Her systemic circulation was stabilized after alprostadil (lipo-PGE1) and inotorpic agent infusion along with mechanical ventilation support. On admission, signs of a pulmonary high-flow and low systemic perfusion were evident. Impaired coagulation aspect was gradually noted. Because a surgical palliation with cardiopulmonary bypass was considered to be at high-risk, a bilateral pulmonary artery banding was indicated. Through a median sternotomy, the right and left pulmonary arteries were individually banded. The patient was continued on the same ventilation strategy. Cardiac, hepatic and renal dysfunctions were improved over next few days and the patient weaned from ventilatory support. She underwent combined Norwood stage I and II repair at 4 months of age with weight of 4.8 kg. Postoperative course has been uneventful and the patient is now followed up in preparation for Fontan operation.

Cardiac Surgical Procedures↗

Lansoprazole ameliorates intestinal mucosal damage induced by ischemia-reperfusion in rats.

AIM: To investigate the protective effect of lansoprazole on ischemia and reperfusion (I/R)-induced rat intestinal mucosal injury in vivo. METHODS: Intestinal damage was induced by clamping both the superior mesenteric artery and the celiac trunk for 30 min followed by reperfusion in male Sprague-Dawley rats. Lansoprazole was given to rats intraperitoneally 1 h before vascular clamping. RESULTS: Both the intraluminal hemoglobin and protein levels, as indices of mucosal damage, significantly increased in I/R-groups comparison with those of sham-operation groups. These increases in intraluminal hemoglobin and protein levels were significantly inhibited by the treatment with lansoprazole at a dose of 1 mg/kg. Small intestine exposed to I/R resulted in mucosal inflammation that was characterized by significant increases in thiobarbituric acid-reactive substances (TBARS), tissue-associated myeloperoxidase activity (MPO), and mucosal content of rat cytokine-induced neutrophil chemoattractant-1 (CINC-1). These increases in TBARS, MPO activities and CINC-1 content in the intestinal mucosa after I/R were all inhibited by pretreatment with lansoprazole at a dose of 1 mg/kg. Furthermore, the CINC-1 mRNA expression was increased during intestinal I/R, and this increase in mRNA expression was inhibited by treatment with lansoprazole. CONCLUSION: Lansoprazole inhibits lipid peroxidation and reduces development of intestinal mucosal inflammation induced by I/R in rats, suggesting that lansoprazole may have a therapeutic potential for I/R injury.

2-Pyridinylmethylsulfinylbenzimidazoles↗

Oxidative stress and delayed-onset muscle damage after exercise.

Reactive oxygen species (ROS) produced during exercise may be involved in delayed-onset muscle damage related to inflammation. To investigate this hypothesis, we studied whether oxidative stress increases nuclear translocation of nuclear factor-kappaB and chemokine expression in skeletal muscle using myotube L6 cells. We also assessed whether prolonged acute exercise could increase these parameters in rats. In L6 cells, H(2)O(2) induced nuclear translocation of p65 and increased the expression of cytokine-induced neutrophil chemoattractant-1 (CINC-1) and monocyte chemoattractant protein-1 (MCP-1), whereas preincubation with alpha-tocopherol limited the increase in these proteins. Sprague Dawley rats were divided into the following groups: rested control, exercised, rested with a high alpha-tocopherol diet, and exercised with a high alpha-tocopherol diet. After 3 weeks of acclimation, both exercise groups ran on a treadmill at 25 m/min for 60 min. Exercise increased nuclear p65, CINC-1, and MCP-1 in gastrocnemius muscle cells, but these changes were ameliorated by the high alpha-tocopherol diet. Increases in myeloperoxidase and thiobarbituric acid-reactive substrates were ameliorated by a high alpha-tocopherol diet, as were the histological changes. Neutrophil activity was not altered by either exercise or a high alpha-tocopherol diet. These results indicate that delayed-onset muscle damage induced by prolonged exercise is partly related to inflammation via phagocyte infiltration caused by ROS and that alpha-tocopherol (an antioxidant) can attenuate such inflammatory changes.

Active Transport, Cell Nucleus↗

Anoxia/reoxygenation down-regulates the expression of E-cadherin in human colon cancer cell lines.

The E-cadherin-mediated cell-cell adhesiveness is a critical factor for carcinoma cell invasion and metastasis. Anoxia/reoxygenation is known to occur in cancer tissues. In this study, we investigated whether anoxia/reoxygenation induces the down-regulation of E-cadherin expression in the human colon cancer cell lines HT-29, and SW1116. Colon cancer cells were exposed to anoxia (2 h) followed by reoxygenation (4-46 h). The subsequent expression of E-cadherin on the cell surface was examined by immunocytochemistry and enzyme-linked immunosorbent assays, the total amount of E-cadherin protein was examined by Western blotting, and the E-cadherin mRNA level was examined by a real-time polymerase chain reaction assay. The expression of E-cadherin on the cell surface and the total amount of E-cadherin protein were transiently reduced after anoxia/reoxygenation. On the other hand, the E-cadherin mRNA level was not decreased during reoxygenation. Pretreatment with actinomycin D or reagents that interfere with the activation of NF-kappaB significantly attenuated the down-regulation of E-cadherin, which implicated a role for the de novo protein synthesis. These results indicate that anoxia/reoxygenation induces a transient reduction of E-cadherin expression in human colon cancer cells through NF-kappaB dependent transcriptional pathway.

Cadherins↗

Tumor necrosis factor-alpha-induced cytokine-induced neutrophil chemoattractant-1 (CINC-1) production by rat gastric epithelial cells: role of reactive oxygen species and nuclear factor-kappaB.

Rat cytokine-induced neutrophil chemoattractant-1 (CINC-1), a counterpart of the human growth-regulated oncogene product (GRO), has been suggested to participate in neutrophil recruitment in an experimental model of gastritis in rat. However, the mechanism(s) involved in regulation of CINC-1 production by the gastric mucosa remains unclear. The aim of this study was to investigate the mechanism(s) of CINC-1 production by rat gastric mucosa in vitro. All experiments were performed using rat normal gastric mucosal cell line (RGM-1). RGM-1s were stimulated with tumor necrosis factor (TNF)-alpha, and CINC-1 mRNA levels (reverse transcription-polymerase chain reaction) and protein secretion (enzyme-linked immunosorbent assay) were assessed. The production of reactive oxygen species (ROS) and nuclear factor (NF)-kappaB activation (translocation to the nuclei) in response to TNF-alpha stimulation was evaluated using fluorescence microscopy in the presence or absence of the inhibitors of mitochondrial electron flow and NF-kappaB activation. Stimulation of RGM-1 cells with TNF-alpha resulted in an increase in intracellular oxidative stress, NF-kappaB translocation to the nuclei, and up-regulation of CINC-1 mRNA and protein, which was prevented by interfering with mitochondria-dependent ROS production and NF-kappaB activation. Taken together, these findings indicate that CINC-1, a counterpart of the human GRO, production by rat gastric epithelial cells in response to TNF-alpha stimulation is an oxidant stress-mediated and NF-kappaB-dependent event.

Animals↗

Inhibitory effect of pioglitazone on expression of adhesion molecules on neutrophils and endothelial cells.

The interaction between leukocytes and the vascular endothelial cells (EC) via cellular adhesion molecules plays an important role in various inflammatory and immune diseases. It has been suggested that peroxisome proliferator-activated receptor-gamma (PPAR-gamma, a member of the nuclear receptor superfamily of transcription factors) might be involved in the control of inflammation and in modulating the expression of various cytokines. The aim of this investigation was to evaluate the anti-inflammatory properties of PPAR-gamma activators, as well as the inhibitory effect of PPAR-gamma on the expression of adhesion molecules on leukocytes and vascular endothelial cells. Pioglitazone, a synthetic PPAR-gamma activator, suppressed the increase of CD11b/CD18 expression on FMLP-activated leukocytes, as detected by immunofluorescence flow cytometry. However, the FMLP-induced elevation of cytosolic Ca2+ in leukocytes was not suppressed by pioglitazone. Pioglitazone inhibited the expression of VCAM-1 protein and mRNA on activated human umbilical vein endothelial cells (HUVEC) after IL-1beta stimulation, as detected by ELISA and real-time PCR. However, it showed little effect on the expression of ICAM-1 and E-selectin. The present study revealed that pioglitazone can influence monocyte-EC binding by inhibiting VCAM-1 expression on activated EC and neutrophil-EC binding by inhibiting upregulation of CD11b/CD18 on activated neutrophils. Accordingly, pioglitazone may be useful for treating inflammatory diseases.

Antigens, CD↗

Prevention of diabetic nephropathy by treatment with astaxanthin in diabetic db/db mice.

Oxidative stress is implicated as an important mechanism by which diabetes causes nephropathy. Astaxanthin, which is found as a common pigment in algae, fish, and birds, is a carotenoid with significant potential for antioxidative activity. In this study, we examined whether chronic administration of astaxanthin could prevent the progression of diabetic nephropathy induced by oxidative stress in mice. We used female db/db mice, a rodent model of type 2 diabetes, and their non-diabetic db/m littermates. The mice were divided into three groups as follows: non-diabetic db/m, diabetic db/db, and diabetic db/db treated with astaxanthin. Blood glucose level, body weight, urinary albumin, and urinary 8-hydroxydeoxyguanosine (8-OHdG) were measured during the experiments. Histological and 8-OHdG immunohistochemical studies were performed for 12 weeks from the beginning of treatment. After 12 weeks of treatment, the astaxanthin-treated group showed a lower level of blood glucose compared with the non-treated db/db group; however, both groups had a significantly high level compared with the db/m mice. The relative mesangial area calculated by the mesangial area/total glomerular area ratio was significantly ameliorated in the astaxanthin-treated group compared with the non-treated db/db group. The increases in urinary albumin and 8-OHdG at 12 weeks of treatment were significantly inhibited by chronic treatment with astaxanthin. The 8-OHdG immunoreactive cells in glomeruli of non-treated db/db mice were more numerous than in the astaxanthin-treated db/db mice. In this study, treatment with astaxanthin ameliorated the progression and acceleration of diabetic nephropathy in the rodent model of type 2 diabetes. The results suggested that the antioxidative activity of astaxanthin reduced the oxidative stress on the kidneys and prevented renal cell damage. In conclusion, administration of astaxanthin might be a novel approach for the prevention of diabetes nephropathy.

8-Hydroxy-2'-Deoxyguanosine↗

Successful CABG in a patient with paroxysmal nocturnal hemoglobinuria.

Paroxysmal nocturnal hemoglobinuria (PNH) is an uncommon acquired disorder of blood cells characterized by intravascular hemolysis due to an inordinate sensitivity to complement-mediated membrane damage. This report documents coronary artery revascularization in a patient with PNH, which has not been described in the literature so far. We used the on-pump procedure in the present patient and successfully performed revascularization by taking prophylactic measures against hemolysis.

Adrenal Cortex Hormones↗

Protective effects of preischemic treatment with pioglitazone, a peroxisome proliferator-activated receptor-gamma ligand, on lung ischemia-reperfusion injury in rats.

OBJECTIVES: Lung injury induced by ischemia-reperfusion is the main cause of early graft failure after lung transplantation, which may result from oxygen-free radicals, inflammatory cytokine production, and polymorphonuclear leukocyte accumulation into the interstitium, resulting in severe lung edema. Peroxisome proliferator-activated receptor-gamma (PPAR-gamma) belongs to the nuclear receptor superfamily and has an anti-inflammatory effect by preventing the activation of transcription factors such as nuclear factor-kappaB (NF-kappaB). NF-kappaB regulates the expression of many genes of early response products in the development of acute inflammation. We examined the effects of pioglitazone, a synthetic ligand of PPAR-gamma, against lung ischemia-reperfusion injury in rats. METHODS: The left lungs of male Wistar rats were rendered ischemic for 90 min and then reperfused for 2 h. Treated animals received pioglitazone (10 mg/kg) 2 h before induction of ischemia. Lung injury was quantified in terms of lung microvascular permeability (Evans blue dye extravasation), tissue lipid peroxidation (thiobarbituric acid reactive substances), and tissue polymorphonuclear leukocyte accumulation (myeloperoxidase activity). The tissue concentrations of tumor necrosis factor-alpha (TNF-alpha) and cytokine-induced neutrophil chemoattractant-1 (CINC-1) were also measured. Statistical analyses were performed by one-way analysis of variance, followed by Sheffe's multiple comparison test. RESULTS: The lung vascular permeability in pioglitazone-treated animals was reduced by 55% of the increase of Evans blue dye extravasation relative to control animals (P=0.003). The protective effects of pioglitazone treatment were correlated with the reduction by 79% of the increase of thiobarbituric acid reactive substances (P=0.045) and the reduction by 58% of myeloperoxidase activity increase (P<0.001). The production of TNF-alpha was reduced by 63% of the increase (P<0.001) and the reduction of CINC-1 was 45% (P<0.001). Pioglitazone did not affect the lung in the sham animals. CONCLUSIONS: Pioglitazone treatment before ischemia attenuated lung ischemia-reperfusion injury in rats. The mechanism of these protective effects involves inhibition of the production of proinflammatory cytokines, polymorphonuclear leukocyte accumulation, and tissue lipid peroxidation, resulting in reduced lung edema.

Animals↗