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Biomedical subjects

Hiroaki Satoh

Publications and source records attributed to Hiroaki Satoh.

At least 19 recordsLinked to original sources

Clinical evaluation of proton radiotherapy for non-small-cell lung cancer.

PURPOSE: To evaluate the clinical results of proton radiotherapy for patients with non-small-cell lung cancer (NSCLC). MATERIALS AND METHODS: Between 1983 and 2000, 51 NSCLC patients were treated with proton beams at the University of Tsukuba. There were 28 patients in Stage I, 9 in Stage II, 8 in Stage III, 1 in Stage IV, and 5 with recurrent disease. Thirty-three patients had squamous cell carcinoma, 17 had adenocarcinoma, and 1 had large-cell carcinoma. Median fraction and total doses given were 3.0 Gy (range 2.0-6.0 Gy), and 76.0 Gy (range 49.0-93.0 Gy), respectively. RESULTS: The 5-year overall survival rate was 29% for all patients, 70% for 9 Stage IA patients, and 16% for 19 Stage IB patients, respectively (IA vs. IB: p < 0.05). The 5-year in-field local control rate was higher in patients with Stage IA (89%) when compared with those with Stage IB (39%). Forty-seven patients (92%) experienced acute lung toxicity of Grade 1 or less; 3 had Grade 2, 1 had Grade 3, and none experienced Grade 4 or higher. Patients in the present series showed very little late toxicity. CONCLUSIONS: Proton therapy is a very safe and effective treatment for patients with NSCLC, especially for those with early stages. The relative merit of proton therapy in comparison with stereotactic photon radiotherapy or three-dimensional conformal photon radiotherapy remains to be defined through future clinical trials.

Adenocarcinoma↗

Human plasma platelet-activating factor acetylhydrolase binds to all the murine lipoproteins, conferring protection against oxidative stress.

OBJECTIVE: Plasma platelet-activating factor (PAF) acetylhydrolase (AH) is an enzyme bound with lipoproteins that degrades not only PAF but also PAF-like oxidized phospholipids that are proposed to promote atherosclerosis. In this study, we investigated the distribution of PAF-AH protein among lipoprotein classes by using adenovirus-mediated gene transfer in mice, and we examined its effects on lipoprotein oxidation and foam cell formation of macrophages. METHODS AND RESULTS: Adenovirus-mediated overexpression of PAF-AH in mice resulted in a 76- to 140-fold increase in plasma PAF-AH activity. Contrary to the previous report, overexpressed human PAF-AH protein was bound to very low density lipoprotein, intermediate density lipoprotein, low density lipoprotein, and high density lipoprotein (HDL). All the lipoproteins with overexpressed human PAF-AH revealed more resistance against oxidative stress, which was associated with lower levels in autoantibody against oxidized low density lipoprotein in the plasma. In addition, HDL with human PAF-AH inhibited foam cell formation and facilitated cholesterol efflux in macrophages. CONCLUSIONS: These results suggest that human plasma PAF-AH exerts an antiatherogenic effect by binding to all the lipoproteins and thereby protecting them from oxidation, producing less proatherogenic lipoproteins and preserving HDL functions.

1-Alkyl-2-acetylglycerophosphocholine Esterase↗

Cdc42 is a Rho GTPase family member that can mediate insulin signaling to glucose transport in 3T3-L1 adipocytes.

We investigated the role of cdc42, a Rho GTPase family member, in insulin-induced glucose transport in 3T3-L1 adipocytes. Microinjection of anti-cdc42 antibody or cdc42 siRNA led to decreased insulin-induced and constitutively active G(q) (CA-G(q); Q209L)-induced GLUT4 translocation. Adenovirus-mediated expression of constitutively active cdc42 (CA-cdc42; V12) stimulated 2-deoxyglucose uptake to 56% of the maximal insulin response, and this was blocked by treatment with the phosphatidylinositol 3-kinase (PI3-kinase) inhibitor, wortmannin, or LY294002. Both insulin and CA-G(q) expression caused an increase in cdc42 activity, showing that cdc42 is activated by insulin and is downstream of G alpha(q/11) in this activation pathway. Immunoprecipitation experiments showed that insulin enhanced a direct association of cdc42 and p85, and both insulin treatment and CA-cdc42 expression stimulated PI3-kinase activity in immunoprecipitates with anti-cdc42 antibody. Furthermore, the effects of insulin, CA-G(q), and CA-cdc42 on GLUT4 translocation or 2-deoxyglucose uptake were inhibited by microinjection of anti-protein kinase C lambda (PKC lambda) antibody or overexpression of a kinase-deficient PKC lambda construct. In summary, activated cdc42 can mediate 1) insulin-stimulated GLUT4 translocation and 2) glucose transport in a PI3-kinase-dependent manner. 3) Insulin treatment and constitutively active G(q) expression can enhance the cdc42 activity state as well as the association of cdc42 with activated PI3-kinase. 4) PKC lambda inhibition blocks CA-cdc42, CA-G(q), and insulin-stimulated GLUT4 translocation. Taken together, these data indicate that cdc42 can mediate insulin signaling to GLUT4 translocation and lies downstream of G alpha(q/11) and upstream of PI3-kinase and PKC lambda in this stimulatory pathway.

3T3 Cells↗

Isoform-dependent cholesterol efflux from macrophages by apolipoprotein E is modulated by cell surface proteoglycans.

OBJECTIVE: Apolipoprotein E (apoE) mediates cellular cholesterol efflux and plays a crucial role in the inhibition of atherogenesis. We investigated whether there is an isoform-specific difference in its function for cholesterol efflux from cholesterol-loaded RAW264.7 cells, a murine macrophage cell line that lacks endogenous apoE expression. METHODS AND RESULTS: When human apoE was expressed in RAW264.7 cells, apoE2 reduced cellular total cholesterol (TC) and esterified cholesterol (EC) levels significantly, whereas apoE3 and apoE4 had no effect. However, treatment of cells with 4-methylumbelliferyl-7-beta-D-xyloside (beta-DX) resulted in all 3 isoforms' reducing cellular TC and EC contents significantly. We also investigated the effect of exogenously derived apoE on cholesterol efflux by utilizing the medium harvested from HeLa cells expressing apoE. ApoE2 and E3 reduced both cellular TC and EC contents significantly, whereas apoE4 did not. However, treatment of the cells with beta-DX resulted in all 3 exogenously derived apoE isoforms' reducing TC and EC contents significantly. The binding ability of apoE to heparan sulfate proteoglycans examined by heparinase I treatment revealed less binding ability of apoE2 compared with that of apoE3 or apoE4. CONCLUSIONS: The present study clarified the differential cellular cholesterol-modulating effect of apoE isoforms in macrophages, which would be due to the difference in their binding to proteoglycans.

Adenoviridae↗

Antiproliferative property of sphingosine 1-phosphate in rat hepatocytes involves activation of Rho via Edg-5.

BACKGROUND & AIMS: Sphingosine 1-phosphate (S1P), a ligand for G protein-coupled endothelial differentiation gene-1 (Edg-1), Edg-3, Edg-5, Edg-6, and Edg-8, elicits a variety of responses by cells. Prominent among these is cell proliferation. S1P is abundantly stored in platelets and released upon their activation, suggesting that S1P plays a pathophysiologic role in vivo. Because the major part of injected S1P was distributed into the liver in mice, we wondered whether the liver would be one of its targets. The effects of S1P on hepatocytes, the major constituent cells in the liver, were examined. METHODS & RESULTS: Northern blot analysis revealed the expression of Edg-1 and Edg-5 messenger RNA (mRNA) in cultured rat hepatocytes, in which S1P decreased DNA synthesis induced by hepatocyte growth factor (HGF) or epidermal growth factor (EGF) without affecting total protein synthesis. This inhibitory effect was attenuated by inactivation of small GTPase Rho with C3 exotoxin but not by inactivation of G(i) with pertussis toxin. Moreover, in the presence of JTE-013, a newly developed and specific binding antagonist for Edg-5, the inhibitory effect was also cancelled. Finally, the administration of S1P after 70% partial hepatectomy in rats reduced the peak of DNA synthesis in hepatocytes with increased Rho activity. Furthermore, Edg-5 but not Edg-1 mRNA expression was enhanced in hepatocytes 24-72 hours after partial hepatectomy, which coincides with decreasing hepatocyte proliferation. CONCLUSIONS: S1P has an antiproliferative property in rat hepatocytes by activating Rho via Edg-5. Our results raise the possibility that S1P is a negative regulator in liver regeneration.

ADP Ribose Transferases↗

Insulin-induced GLUT4 translocation involves protein kinase C-lambda-mediated functional coupling between Rab4 and the motor protein kinesin.

Insulin stimulates glucose transport by promoting translocation of GLUT4 proteins from the perinuclear compartment to the cell surface. It has been previously suggested that the microtubule-associated motor protein kinesin, which transports cargo toward the plus end of microtubules, plays a role in translocating GLUT4 vesicles to the cell surface. In this study, we investigated the role of Rab4, a small GTPase-binding protein, and the motor protein KIF3 (kinesin II in mice) in insulin-induced GLUT4 exocytosis in 3T3-L1 adipocytes. Photoaffinity labeling of Rab4 with [gamma-(32)P]GTP-azidoanilide showed that insulin stimulated Rab4 GTP loading and that this insulin effect was inhibited by pretreatment with the phosphatidylinositol 3-kinase (PI3-kinase) inhibitor LY294002 or expression of dominant-negative protein kinase C-lambda (PKC-lambda). Consistent with previous reports, expression of dominant-negative Rab4 (N121I) decreased insulin-induced GLUT4 translocation by 45%. Microinjection of an anti-KIF3 antibody into 3T3-L1 adipocytes decreased insulin-induced GLUT4 exocytosis by 65% but had no effect on endocytosis. Coimmunoprecipitation experiments showed that Rab4, but not Rab5, physically associated with KIF3, and this was confirmed by showing in vitro association using glutathione S-transferase-Rab4. A microtubule capture assay demonstrated that insulin stimulation increased the activity for the binding of KIF3 to microtubules and that this activation was inhibited by pretreatment with the PI3-kinase inhibitor LY294002 or expression of dominant-negative PKC-lambda. Taken together, these data indicate that (i) insulin signaling stimulates Rab4 activity, the association of Rab4 with kinesin, and the interaction of KIF3 with microtubules and (ii) this process is mediated by insulin-induced PI3-kinase-dependent PKC-lambda activation and participates in GLUT4 exocytosis in 3T3-L1 adipocytes.

3T3 Cells↗

Plasma orexin-A levels and body composition in COPD.

STUDY OBJECTIVE: To study the role of orexins in regulating body composition in patients with COPD. DESIGN: Prospective study. PATIENTS AND MEASUREMENTS: We measured the plasma concentration of orexin-A in 20 patients with COPD and compared the results to those obtained from 10 age-matched control subjects. Patients with COPD were classified into two groups based on their body mass index (BMI): a normal weight (NW) group (BMI > 20) and an underweight (UW) group (BMI < 20). RESULTS: The plasma orexin-A level was significantly lower in patients with COPD than in control subjects. In patients with COPD, the level was significantly lower in the UW group than in the NW group. Plasma orexin-A levels significantly correlated with BMI and fat mass values, but there was no significant relationship between plasma orexin-A levels and the fat-free mass of patients with COPD. CONCLUSION: These results suggest that orexin-A levels are altered with weight loss and changes in body composition in patients with COPD.

Body Composition↗

Cytokeratin 19 fragment in patients with nonmalignant respiratory diseases.

STUDY OBJECTIVE: Cytokeratin 19 fragment (CYFRA) is a specific tumor marker in patients with lung cancer; however, it has been reported that serum CYFRA levels are elevated in some patients with nonmalignant respiratory diseases such as interstitial pulmonary fibrosis (IPF) and collagen disease-associated pulmonary fibrosis (CDPF). To investigate the serum CYFRA levels in nonmalignant respiratory diseases in detail, we studied 413 patients with respiratory diseases. DESIGN: Retrospective study. SETTING: University hospital. PATIENTS: Four hundred thirteen patients with nonmalignant respiratory diseases and lung cancer. MEASUREMENTS AND RESULTS: Serum CYFRA levels were measured with a commercially available enzyme immunoassay kit. Immunohistochemical study was performed using monoclonal antibody Ks 19.1 (Rosch Diagnosica; Bern, Switzerland) on surgically resected or autopsied lung specimens. Gel electrophoresis and immunoblotting was performed with serum samples. In 149 patients with nonmalignant diseases except IPF and CDPF, the ratio of patients with > 3.5 ng/mL of serum CYFRA was 13.4%. In 13 of 30 patients (43.3%) with IPF and CDPF, the serum CYFRA levels were abnormally elevated. The 95th percentile serum CYFRA level of the patients with nonmalignant respiratory diseases was 6.2 ng/mL, and none of them had CYFRA levels > 20.3 ng/mL. Survival in patients with IPF and CDPF with elevated serum CYFRA levels were significantly lower than in those with normal range (p = 0.0335). Western blotting using serum from nonmalignant lung diseases and patients with lung cancer showed no apparent difference between them. An immunohistochemical study indicated CYFRA was selectively expressed in the pulmonary epithelial cells that covered the remodeling alveolar septi in nonmalignant respiratory disease. CONCLUSION: Serum CYFRA was elevated in some nonmalignant respiratory diseases, especially in IPF and CDPF. The value of serum CYFRA would reflect the severity of lung injury in nonmalignant respiratory diseases and might be related to the prognosis in patients with IPF and CDPF.

Adult↗

Liver metastasis at the time of initial diagnosis of lung cancer.

In order to evaluate clinicopathological features associated with liver metastases from lung cancer, we reviewed our experience of lung cancer patients seen in our division. Of the 1073 lung cancer patients diagnosed between October 1976 and May 2002, 62 (5.8%) patients had liver metastasis. The incidence of liver metastasis was 17.5% in small-cell lung cancer (SCLC) patients, whereas the incidence in non-small-cell lung cancer patients was 3.8%. Of the 62 patients, 17 had sole liver metastasis, and the remaining 45 had synchronous spread to the liver and one or more other organs. Six of 12 squamous cell carcinoma patients and 10 of 28 SCLC patients had sole liver metastasis. However, 19 of 20 adenocarcinoma patients showed liver metastasis with one or more other organs. In morphological liver metastasis, 26 of the 28 SCLC patients had multiple nodules, whereas 16 of the 34 non-small-cell lung cancer patients had a solitary liver nodule (p = 0.0006). Liver is a possible site of extrathoracic spread of disease for some patients with lung cancer, especially with SCLC. When the histological types are squamous cell carcinoma or SCLC, it would also be considered likely that an isolated liver mass represents a metastasis even though there is no metastatic disease elsewhere.

Adenocarcinoma↗

Chemotherapy in a patient with prior history of idiopathic thrombocytopenic purpura.

We described a 67 years old small-cell lung cancer patient with a prior history of idiopathic thrombocytopenic purpura (ITP) who was treated with successful chemotherapy. It is probably safe to administer chemotherapeutic agents for some cancer patients with prior history of ITP, but it is important to prevent or minimize the toxicities of these chemotherapeutic agents.

Aged↗

Localization of Na+-HCO-3 cotransporter (NBC-1) variants in rat and human pancreas.

Mutations in Na(+)-HCO(3)(-) cotransporter (NBC-1) cause proximal renal tubular acidosis (pRTA) associated with ocular abnormalities. One pRTA patient had increased serum amylase, suggesting possible evidence of pancreatitis. To further delineate a link between NBC-1 inactivation and pancreatic dysfunction, immunohistochemical analysis was performed on rat and human pancreas using antibodies against kidney-type (kNBC-1) and pancreatic-type (pNBC-1) transporters. In rat pancreas, the anti-pNBC-1 antibody labeled acinar cells and both apical and basolateral membranes of medium and large duct cells. In human pancreas, on the other hand, the anti-pNBC-1 antibody did not label acinar cells, although it did label the basolateral membranes of the entire duct system. The labeling by anti-kNBC-1 antibody was detected in only a limited number of rat pancreatic duct cells. To examine the effects of pRTA-related mutations, R342S and R554H, on pNBC-1 function, we performed functional analysis and found that both mutants had reduced transport activities compared with the wild-type pNBC-1. These results indicate that pNBC-1 is the predominant variant that mediates basolateral HCO(3)(-) uptake into duct cells in both rat and human pancreas. The loss of pNBC-1 function is predicted to have significant impact on overall ductal HCO(3)(-) secretion, which could potentially lead to pancreatic dysfunction.

Animals↗