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Functional expression of a proliferation-related ligand in hepatocellular carcinoma and its implications for neovascularization 被引量:13
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作者 hiroshi okano Katsuya Shiraki +10 位作者 Yutaka Yamanaka Hidekazu Inoue Tomoyuki Kawakita Yukiko Saitou Yumi Yamaguchi Naoyuki Enokimura Keiichi Ito Norihiko Yamamoto Kazushi Sugimoto Kazumoto Murata Takeshi Nakano 《World Journal of Gastroenterology》 SCIE CAS CSCD 2005年第30期4650-4654,共5页
AIM: To detect the expression of a proliferation-related ligand on human hepatocellular carcinoma (HCC) cell lines (SK-Hepl, HLE and HepG2) and in culture medium. METHODS: APRIL expression was analyzed by Wester... AIM: To detect the expression of a proliferation-related ligand on human hepatocellular carcinoma (HCC) cell lines (SK-Hepl, HLE and HepG2) and in culture medium. METHODS: APRIL expression was analyzed by Western blotting in HCC cell lines. Effects of APRIL to cell count and angiogenesis were analyzed, too. RESULTS: Recombinant human APRIL (rhAPRIL) increased cell viability of HepG2 cells and, in HUVEC, rhAPRIL provided slight tolerance to cell death from serum starvation. Soluble APRIL (sAPRIL) from HLE cells increased after serum starvation, but did not change in SK-Hepl or HepG2 cells. These cells showed down-regulation of VEGF after incubation with anti-APRIL antibody. Furthermore, culture medium from the HCC cells treated with anti-APRIL antibody treatment inhibited tube formation of HUVECs. CONCLUSION: Functional expression of APRIL might contribute to neovascularization via an upregulation of VEGF in HCC. 展开更多
关键词 A proliferation-inducing ligand HCC VEGF Cell proliferation NEOVASCULARIZATION
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Electrochemical and Photoelectrochemical Properties of Nano-Islands of Zinc and Niobium Oxides Deposited on Aluminum Thin Film by RF Magnetron Reactive Sputtering
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作者 Go Sajiki Yasuhiko Benino +1 位作者 Tokuro Nanba hiroshi okano 《Materials Sciences and Applications》 2015年第4期292-309,共18页
Zinc oxide (ZnO) and niobium oxide (NbOx) with a nano-island structure were deposited by a sputtering method on Al-coated glass substrates. Cells with a (ZnO or NbOx)/Al/glass|KNO3aq.|Al/ glass structure were assemble... Zinc oxide (ZnO) and niobium oxide (NbOx) with a nano-island structure were deposited by a sputtering method on Al-coated glass substrates. Cells with a (ZnO or NbOx)/Al/glass|KNO3aq.|Al/ glass structure were assembled, and electrochemical and photoelectrochemical properties were evaluated. The ZnO and NbOx electrodes had higher electrode potentials than the counter Al/glass electrode, and electron flows from the counter electrode to the ZnO and NbOx electrodes through the external circuit were commonly confirmed. In the ZnO-based cell, only faint photocurrent generation was seen, where Zn and Al elution from the ZnO electrode was found. In the NbOxbased cell, however, stable generation of electricity was successfully achieved, and electrode corrosion was not recognized even in microscopic observations. A photoelectrochemical conversion model was proposed based on potential-pH diagrams. In the case of nano-island structures formed at shorter NbOx deposition time, it was concluded that the photoelectrochemical reactions, which were proceeded in the immediate vicinity of the boundary among nano-islands, substrate, and electrolyte solution, were predominant for the photoelectrochemical conversion, and in the case of film structures with longer deposition time, the predominant reactions took place at the film surface. 展开更多
关键词 Nano-Island Electrochemistry PHOTOELECTROCHEMISTRY NIOBIUM and ZINC Oxide Corrosion
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Performance tests of newly developed adsorption/plasma combined system for decomposition of volatile organic compounds under continuous flow condition 被引量:3
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作者 Koji Inoue hiroshi okano +2 位作者 Yukihiko Yamagata Katsunori Muraoka Yasutake Teraoka 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2011年第1期139-144,共6页
The adsorption/plasma decomposition with the combination of adsorption honeycomb-sheets and a plasma element is a new technology for small-sized apparatuses to decompose volatile organic compounds (VOCs) at concentr... The adsorption/plasma decomposition with the combination of adsorption honeycomb-sheets and a plasma element is a new technology for small-sized apparatuses to decompose volatile organic compounds (VOCs) at concentrations lower than about 100 ppm. The feasibility of the prototype adsorption/plasma decomposition apparatus was evaluated with the simulated exhausts containing one VOC component and with real exhausts from a painting booth and an adhesion factory. The apparatus decomposed VOCs effectively at the painting booth exhaust but not always satisfactorily at the adhesion factory exhaust. The performance test results with real exhausts were discussed with respect to the concentration and discharge pattern of the exhausts and the basic properties of the system such as cooperation of adsorption and plasma reaction and the concentration dependence of the performance. 展开更多
关键词 volatile organic compounds ADSORPTION hydrophobic zeolite HONEYCOMB PLASMA
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Manipulation of Micro Solid Particles and Induced Flows in Water by Laser Irradiation
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作者 Masahiro OTA hiroshi okano Makoto YOSHIDA 《Journal of Thermal Science》 SCIE EI CAS CSCD 2007年第2期176-180,共5页
Q-switch for pulsing laser beam and Galvano scanner for rapid scanning laser beam were adapted to manipulate micro solid particles in a water droplet. The trapping of fine particles at micron-sized diameters by a YAG ... Q-switch for pulsing laser beam and Galvano scanner for rapid scanning laser beam were adapted to manipulate micro solid particles in a water droplet. The trapping of fine particles at micron-sized diameters by a YAG laser system, induced flows, and the induced motion of the particles by laser beam irradiations are discussed. Particle rotations are observed by using anisotropic micro objects, and moreover the rotational rate with clockwise direction is 22 r/min. The fragments of a cover glass were mixed in a water droplet, and their size and shape are uneven. The rotation of that non-spheres without scanning by the Galvano scanner is also observed in water. 展开更多
关键词 Laser trapping non-sphere particle optical radiation pressure laser scanning laser drive rotation
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