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Shinji Satoh

Publications and source records attributed to Shinji Satoh.

At least 19 recordsLinked to original sources

Ca2+ stimulates COX-2 expression through calcium-sensing receptor in fibroblasts.

Fibroblasts isolated from jaw cysts expressed calcium-sensing receptor (CasR). In the fibroblasts elevated extracellular Ca(2+) ([Ca(2+)](o)) increased fluo-3 fluorescence intensity, and the production of inositol(1,4,5)trisphosphate and active protein kinase C. Phospholipase C inhibitor U-73122 attenuated the Ca(2+)-induced increase in fluo-3 fluorescence intensity. Elevated [Ca(2+)](o) enhanced the expression of cyclooxygenase-2 (COX-2) mRNA and protein, and the secretion of prostaglandin E(2) in the fibroblasts. CasR activator neomycin also increased the expression of COX-2 mRNA, and U-73122 attenuated the Ca(2+)-induced expression of COX-2 mRNA. Elevated [Ca(2+)](o)-induced phosphorylation of extracellular signal-regulated protein kinase-1/2 (ERK1/2), p38 mitogen-activated protein kinase (MAPK), and c-Jun N-terminal kinase (JNK), and U-73122 inhibited the Ca(2+)-induced phosphorylation. The inhibitors for each kinase, PD98059, SB203580, and SP600125, attenuated the Ca(2+)-induced expression of COX-2 mRNA. These results suggest that in jaw cyst fibroblasts elevated extracellular Ca(2+) may enhance COX-2 expression via the activation of ERK1/2, p38 MAPK, and JNK through CasR.

Anthracenes↗

Transient receptor potential (TRP) protein 7 acts as a G protein-activated Ca2+ channel mediating angiotensin II-induced myocardial apoptosis.

Transient receptor potential (TRP) proteins have been identified as cation channels that are activated by agonist-receptor coupling and mediate various cellular functions. TRPC7, a homologue of TRP channels, has been shown to act as a Ca2+ channel activated by G protein-coupled stimulation and to be abundantly expressed in the heart with an as-yet-unknown function. We studied the role of TRPC7 in G protein-activated signaling in HEK293 cells and cultured cardiomyocytes in vitro transfected with FLAG-tagged TRPC7 cDNA and in Dahl salt-sensitive rats with heart failure in vivo. TRPC7-transfected HEK293 cells showed an augmentation of carbachol-induced intracellular Ca2+ transient, which was attenuated under a Ca2+-free condition or in the presence of SK&F96365 (a Ca2+-permeable channel blocker). Upon stimulation with angiotensin II (Ang II), cultured neonatal rat cardiomyocytes transfected with TRPC7 exhibited a significant increase in apoptosis detected by TUNEL staining, accompanied with a decrease in the expression of atrial natriuretic factor and destruction of actin fibers, as compared with non-transfected cardiomyocytes. Ang II-induced apoptosis was inhibited by CV-11974 (Candesartan; Ang II type 1 [AT1] receptor blocker), SK&F96365, and FK506 (calcineurin inhibitor). In Dahl salt-sensitive rats, apoptosis and TRPC7 expression were increased in the failing myocardium, and a long-term treatment with temocapril, an angiotensin-converting enzyme inhibitor, suppressed both. Our findings suggest that TRPC7 could act as a Ca2+ channel activated by AT1 receptors, leading to myocardial apoptosis possibly via a calcineurin-dependent pathway. TRPC7 might be a key initiator linking AT1-activation to myocardial apoptosis, and thereby contributing to the process of heart failure.

Angiotensin II↗

How great is willingness to pay for recovery from sequelae after severe traumatic brain injury in Japan?

OBJECTIVE: To evaluate the burden on families with a family member suffering traumatic brain injury sequelae in Japan. DESIGN: Cross-sectional study. METHODS: Family members' burden from the sequelae of traumatic brain injury was estimated by use of willingness-to-pay models and the contingent valuation method. A national survey among 1707 members of the Japan Traumatic Brain Injury Association was conducted by postal questionnaire with open-ended questions. A total of 509 (29.8%) of the family members responded (405 men and 104 women). Mean age of patients with traumatic brain injury was 33.4 (SD 14.3) years and of responding family members 53.3 (SD 14.5) years. RESULTS: Willingness-to-pay for the family member's recovery from sequelae of traumatic brain injury (8,694,502 Japanese yen; 79,134 US dollars/year) was similar to that reported for a family member's survival from incurable terminal disease (8,342,953 Japanese yen; 75,934 US dollars/year). CONCLUSION: The data indicate that family members perceive the burden of a family member with traumatic brain injury sequelae as similar to what would have been caused by an incurable terminal disease.

Adult↗

Peroxisome proliferator-activated receptor-gamma ligands attenuate brain natriuretic peptide production and affect remodeling in cardiac fibroblasts in reoxygenation after hypoxia.

Cardiac fibroblasts (CFs) participate in cardiac remodeling after hypoxic cardiac damage, and remodeling is thought to be mediated by CF synthesis of brain natriuretic peptide (BNP). It is unknown whether the peroxisome proliferator-activated receptors (PPARs), which mediate cellular signaling for growth and migration, affect BNP synthesis and whether PPARs participate in regulation of extracellular matrix protein (ECM) expression for remodeling. We examined the production of BNP in cultured neonatal ventricular CFs and its signaling system on collagen synthesis and on activation of matrix metalloproteinases (MMPs) in reoxygenation after hypoxia. BNP mRNA was detected in CFs, and a specific BNP protein, BNP1-32, was secreted into the media. Abundance of collagen I and III was increased in the media at reoxygenation. mRNA and protein levels for MMP-2 and the tissue inhibitor of metalloproteinase (TIMP)-1 were enhanced in CFs at reoxygenation. These observations also were noted in CFs after incubation with angiotensin II (10 microM) for 24 h. Pretreatment with pioglitaozone (0.1-10 microM) attenuated BNP mRNA and protein abundance of collagen III, MMP-2, and TIMP-1 in CFs at reoxygenation. The secreted BNP was also decreased by pioglitaozone in the media. Furthermore, PPAR activators inhibited reoxygenation-induced activation of nuclear factor (NF)-kappaB. These results demonstrate that PPAR activators inhibit BNP synthesis in CFs and imply that PPAR activators may regulate ECM remodeling partially through the NF-kappaB-mediated pathway.

Angiotensin II↗

Mutational analysis of TP53 and p21 in familial and sporadic ovarian cancer in Japan.

OBJECTIVE: To investigate whether somatic mutations in cell cycle checkpoint genes, TP53 and p21, are involved in the development of ovarian cancer with or without BRCA1 germline mutation. METHODS: We analyzed somatic genetic alterations of TP53 and p21 in 46 ovarian cancer patients with BRCA1 germline mutations and 93 sporadic patients, using direct sequencing for the entire coding sequences in TP53 and p21. RESULTS: TP53 somatic mutations were detected in 25 of the 46 BRCA1 cases and 40 of the 93 sporadic cases (54.3% vs. 43.0%). In contrast, p21 somatic mutations were detected in 1 of the 46 BRCA1 cases and 2 of the 93 sporadic cases (2.2% vs. 2.2%). TP53 mutations in sporadic cases more frequently occurred in exons 6-11 than those in cases with germline BRCA1 mutations (84.4% vs. 56.3%: P = 0.013). The proportion of sporadic cases with TP53 mutations in non-serous tumors (e.g. endometrioid, clear cell, or mucinous) was significantly lower than that in serous tumors (18.5% vs. 53.0%: P = 0.0038). However, there was no significant difference between the proportion of BRCA1 cases with TP53 mutation in non-serous and in serous tumors (37.5% vs. 57.9%). CONCLUSIONS: Our results suggest that somatic mutation of TP53 plays less of a role in the carcinogenesis of sporadic non-serous tumors than in that of sporadic serous tumors or BRCA1-related tumors. Furthermore, p21 somatic mutation appears to be less involved in the development of ovarian cancer than TP53 somatic mutation.

Adult↗

Increased productivity of tumor necrosis factor-alpha in helper T cells in patients with systolic heart failure.

BACKGROUND AND AIMS: Whereas increased circulating proinflammatory cytokines, such as tumor necrosis factor-alpha (TNF-alpha), play an important role in heart failure, where and how TNF-alpha production is upregulated remains largely unknown. We studied the productivity of TNF-alpha in peripheral lymphocytes and underlying mechanisms in patients with heart failure. METHODS: Symptomatic NYHA II-IV patients with chronic heart failure with systolic dysfunction (n=39, aged 74+/-11, ejection fraction [EF]<==50%) were compared with asymptomatic NYHA I patients (n=18, aged 72+/-10, EF>50%) and normal subjects (n=15, aged 67+/-11). Lymphocyte subsets (CD3, CD4, and CD8) and intracellular production of TNF-alpha in peripheral leukocytes were quantified by immunofluorescent flow cytometry, and relationships between these parameters and circulating proinflammatory cytokines were analyzed. RESULTS: Subpopulation of TNF-alpha-producing CD4 was larger in NYHA II-IV patients (23.7% [18.0-28.6]) than in normal subjects (17.1% [6.5-19.5], p<0.05) and was correlated with plasma TNF-alpha levels (r=0.26, p<0.05), EF (r=-0.26, p<0.05), CD4/CD8 ratios (r=0.42, p<0.001), and subpopulation of TNF-alpha-producing monocytes (r=0.47, p<0.0001). Plasma levels of soluble CD14 and interleukin-12 (IL-12) were significantly higher in NYHA II-IV patients than in normal subjects (1971 ng/mL [1740-2375] vs. 1607 ng/mL [1530-1930], p<0.01; and 121 pg/mL [62-230] vs. 62 pg/mL [54-99], p<0.05, respectively), and plasma IL-12 levels were correlated with plasma TNF-alpha levels (r=0.41, p<0.001). CONCLUSIONS: Increased productivity of TNF-alpha in helper T cells, associated with their dominance over cytotoxic T cells, may partially contribute to an increase in circulating TNF-alpha levels in heart failure.

Aged↗

Attritional rupture of the flexor digitorum profundus tendon to the index finger caused by accessory carpal bone in the carpal tunnel: a case report.

We describe a case of attritional rupture of a flexor digitorum profundus tendon to the right index finger in a 73-year-old man by an accessory carpal bone located on the palmar side of the capitate and triquetrum. The radial edge of the accessory carpal bone appeared to be the cause of the rupture. Excision of the accessory carpal bone, bridge tendon graft using the palmaris longus tendon, and early controlled mobilization after surgery led to a successful outcome.

Aged↗

Recognition of affect in facial expression using the Noh Mask Test: comparison of individuals with schizophrenia and normal controls.

The purpose of the present study was to compare facial expression recognition in individuals with schizophrenia and normal controls using the Noh Mask Test. Fifteen men with schizophrenia and 15 normal controls were presented with a photograph of a Noh mask rotated either upward or downward from the neutral front-facing position, and an emotion label, and were requested to judge whether the expression of the mask was congruent with the indicated emotion. Using multidimensional scaling, the facial expression of the Noh mask recognized by the patients and the healthy controls was analyzed in 3-D: (i) Rejection-Attention; (ii) Pleasant-Unpleasant; and (iii) Awakening-Relaxation. Individuals with schizophrenia had difficulty recognizing that others had intentions of harming them. The Noh Mask Test was found to be useful in discriminating between individuals with schizophrenia and controls in the recognition of facial expression (discriminant ratio: 99.9%).

Adult↗

Efficacy of milnacipran on poststroke depression on inpatient rehabilitation.

Post-stroke depression (PSD) has a negative impact on rehabilitation following stroke. No satisfactory antidepressant treatment for PSD has yet been developed. The present study examined the effect of milnacipran, a serotonin and norepinephrine reuptake inhibitor, on PSD patients. Eleven PSD patients taking milnacipran in a rehabilitation hospital were compared to age-matched, sex-matched, and severity of depression at admission-matched PSD patients hospitalized during 2001 who did not take any antidepressant as historical control. Severity of depression was measured using self-rating depression scale for depression (SDS) assessed at admission and discharge after 3 months inpatient rehabilitation. Activities of daily living (ADL) and quality of life (QOL) were measured, respectively, by the functional independence measure (FIM) and a self-completed questionnaire for QOL (QUIK) as outcomes of rehabilitation. For the SDS score, the group taking milnacipran showed significant improvement compared to the control group in our study. FIM was improved in both groups. In the end QUIK did not change significantly in either group. We found no major side-effects of milnacipran among the patients. These results suggest that milnacipran is a safe and effective treatment for PSD for inpatients undergoing rehabilitation.

Activities of Daily Living↗

[Highly concentrated vascular endothelial growth factor in Crow-Fukase syndrome with high output heart failure: a case report].

Crow-Fukase syndrome is a disease of plasma cell dyscrasia. Congestive heart failure is the biggest complication affecting the prognosis. A 57-year-old male was admitted with edema and low grade fever. Globe and stocking type polyneuropathy, increased levels of adrenocorticotropic hormone and thyroid-stimulating hormone, serum M-protein component of the immunoglobulin A-lambda type, skin polypoid lesion, and organomegaly including cardiomegaly were observed. The diagnosis was Crow-Fukase syndrome based on these clinical features. High output heart failure and pulmonary hypertension were determined with a cardiac catheter. Diuretics and angiotensin converting enzyme inhibitor were effective to control his overhydration. The level of serum vascular endothelial growth factor was markedly increased and might be responsible for the manifestation of this syndrome with cardiac involvement.

Adrenocorticotropic Hormone↗

Systemic lupus erythematosus associated with recurrent lupus enteritis and peritonitis.

We describe the case of a 41-year-old woman with systemic lupus erythematosus (SLE) who suffered from repeated reversible lupus enteritis characterized by marked edematous thickening of the small intestine. Ultrasonography (US) and computed tomography (CT) manifested as an 'accordion-like appearance' and a 'target-like appearance', respectively. Resolution of gastrointestinal tract wall thickening was observed on follow-up US performed a week after the increase in predinosolone (PSL). We conclude that careful evaluation of sonographic and radiographic findings helps to establish the diagnosis of lupus enteritis.

Adult↗

Local delivery of soluble TNF-alpha receptor 1 gene reduces infarct size following ischemia/reperfusion injury in rats.

Apoptosis in the myocardium is linked to ischemia/reperfusion injury, and TNF-alpha induces apoptosis in cardiomyocytes. A significant amount of TNF-alpha is detected after ischemia and reperfusion. Soluble TNF-alpha receptor 1 (sTNFR1) is an extracellular domain of TNF-alpha receptor 1 and is an antagonist to TNF-alpha. In the present study, we examined the effects of sTNFR1 on infarct size in acute myocardial infarction (AMI) following ischemia/reperfusion. Male Wistar rats were subjected to left coronary artery (LCA) ligation. After 30 min of LCA occlusion, the temporary ligature on the LCA was released and blood flow was restored. Immediately after reperfusion, a total of 200 microg of sTNFR1 or LacZ plasmid was injected into three different sites of the left ventricular wall. At 6 h, 1 and 2 days after reperfusion, the TNF-alpha bioactivity in the myocardium was significantly higher in rats receiving LacZ plasmid than in sham-operated rats, whereas sTNFR1 plasmid significantly suppressed the increase in the TNF-alpha bioactivity. The sTNFR1 plasmid significantly reduced DNA fragmentation and caspase activity compared to the LacZ plasmid. Finally, the sTNFR1 expression-plasmid treatment significantly reduced the area of myocardial infarction at 2 days after ischemia/reperfusion compared to LacZ plasmid. In conclusion, the TNF-alpha bioactivity in the heart increased from the early stage of ischemia/reperfusion, and this increase was thought to contribute in part to the increased area of myocardial infarction. Suppression of TNF-alpha bioactivity with the sTNFR1 plasmid reduced the infarct size in AMI following ischemia and reperfusion.

Animals↗

Chronic inhibition of Rho kinase blunts the process of left ventricular hypertrophy leading to cardiac contractile dysfunction in hypertension-induced heart failure.

The Gq-RhoA-Rho kinase pathway, activated by neurohormonal factors such as angiotensin II (Ang II), has been proposed to be one of the important signaling pathways involved in the progression of left ventricular (LV) hypertrophy to heart failure. We tested the hypothesis that chronic inhibition of Rho kinase prevents this process. Heart failure was induced in Dahl salt-sensitive (DS) rats fed an 8% NaCl diet from 8 until 17 weeks of age. Y-27632 (5 mg/kg per day), a selective Rho kinase inhibitor, was applied orally to DS rats starting at 10 weeks of age for 7 weeks (DS/Y+). DS rats without Y-27632 (DS/Y-) and Dahl salt-resistant (DR) rats fed the 8% NaCl diet were regarded as non-therapeutic and normotensive controls, respectively. At 17 weeks of age, there was no significant difference in the blood pressure of DS/Y- and DS/Y+ rats. DS/Y- rats exhibited: (1) increases in LV mass, cross-sectional area (CSA) of cardiomyocytes, and interstitial fibrosis; (2) contractile dysfunction, i.e. decreases in LV ejection fraction and % fractional shortening, and prolongation of time to peak tension as well as to 50% relaxation in the twitch contraction of isolated papillary muscle; and (3) increases in the protein expression of Galphaq and Rho kinase in the myocardial membrane fraction. In DS/Y+ rats, the degree of myocardial hypertrophy was significantly inhibited in association with improved contractile function, without a decrease in the degree of interstitial fibrosis. Our results suggest the possibility that the Gq-Rho kinase pathway plays an important role in the process of hypertension-induced LV hypertrophy leading to contractile dysfunction.

Amides↗

Beneficial effects of angiotensin-converting enzyme inhibition on sarcoplasmic reticulum function in the failing heart of the Dahl rat.

Inhibition of angiotensin-converting enzyme (ACE) retards the process of myocardial remodeling and contractile dysfunction that leads to heart failure. However, the intracellular mechanisms by which ACE inhibition preserves myocardial contractility are largely unclear. Using a model of heart failure induced by hypertension in Dahl salt-sensitive (DS) rats, the mechanisms by which ACE inhibitors (ACEI) exert a beneficial effect on myocardial contractility were studied. Dahl salt-resistant (DR) rats, DS rats not given temocapril (DS/T-), and DS rats treated with temocapril (10 mg/kg per day from 10 to 17 weeks of age, DS/T+) were fed an 8% NaCl diet from 8 to 17 weeks of age (n=8, each group). Echocardiography, hemodynamic measurement, histology, contraction of isolated skinned papillary muscle, and Western blot analysis were carried out. At an elevated final blood pressure similar to that of the DS/T- rats, DS/T+ rats exhibited (1) a decrease in left ventricular (LV) mass associated with decreases in both cardiomyocyte size and interstitial fibrosis; (2) improvement of both systolic and diastolic LV function; and (3) an increase in caffeine contraction after constant Ca(2+)-loading with 8-bromo-cAMP into the sarcoplasmic reticulum (SR) associated with an increase in Ser16-phosphorylated phospholamban, as compared with the DS/T- rats. In addition to inhibition of myocardial remodeling, a restoration of the Ca(2+)-handling ability of the SR by normalized phosphorylated phospholamban may contribute to the improved LV contractile function achieved by chronic treatment with an ACEI.

Angiotensin-Converting Enzyme Inhibitors↗

[Kleptomania].

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Disruptive, Impulse Control, and Conduct Disorders↗

Effects of calmodulin and okadaic acid on myofibrillar Ca2+ sensitivity in cardiac myocytes.

Whereas it has been established that the phosphorylation of 20 kD regulatory myosin light chain (MLC20) is a key regulator of contraction in smooth muscle, troponin complex has been thought to be that of myofibrillar Ca2+ sensitivity in cardiac muscle. To elucidate the role of the phosphorylation of cardiac regulatory myosin light chain (MLC2) in the regulation of cardiac muscle contraction, we observed effects of calmodulin and okadaic acid, a protein phosphatase inhibitor, on myofibrillar Ca2+ sensitivity as estimated by pCa50 values obtained from pCa-tension relationships using beta-escin-skinned cardiomyocytes from Wistar rat hearts, in relation to changes in the phosphorylation of myofibrillar regulatory proteins. Whereas myofibrillar Ca2+ sensitivity tended to be progressively decreased by repeated Ca2+-activation in the absence of calmodulin (pCa50; from 5.91 to 5.86, n = 5), calmodulin (2.5 microM) significantly increased myofibrillar Ca2+ sensitivity (pCa50; from 5.92 to 6.03, n = 5, p < 0.05). Okadaic acid over 3 microM enhanced Ca2+-activated force, which was inhibited by 50 microM trifluoperazine, a calmodulin antagonist. Okadaic acid (3 microM) significantly increased myofibrillar Ca2+ sensitivity (pCa50; from 5.96 to 6.11, n = 6, p < 0.05). Whereas the phosphorylation level of troponin I was not changed by 3 microM okadaic acid, that of MLC2 was significantly increased by the same dose of okadaic acid (from 12 to 31%, n = 4, p < 0.05). These results suggest that MLC2 phosphorylation plays a partial role in the regulation of myofibrillar Ca2+ sensitivity in cardiac muscle.

Animals↗