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91.
Wen‐Wen Huang Yu‐Jen Chiu Ming‐Jen Fan Hsu‐Feng Lu Hsiu‐Feng Yeh Kun‐Hong Li Po‐Yuan Chen Jing‐Gung Chung Jai‐ Sing Yang 《Molecular nutrition & food research》2010,54(11):1585-1595
Kaempferol is a natural flavonoid. Previous studies have reported that kaempferol has anti‐proliferation activities and induces apoptosis in many cancer cell lines. However, there are no reports on human osteosarcoma. In this study, we investigate the anti‐cancer effects and molecular mechanisms of kaempferol in human osteosarcoma cells. Our results demonstrate that kaempferol significantly reduces cell viabilities of U‐2 OS, HOB and 143B cells, especially U‐2 OS cells in a dose‐dependent manner, but exerts low cytotoxicity on human fetal osteoblast progenitor hFOB cells. Comet assay, DAPI staining and DNA gel electrophoresis confirm the effects of DNA damage and apoptosis in U‐2 OS cells. Flow cytometry detects the increase of cytoplasmic Ca2+ levels and the decrease of mitochondria membrane potential. Western blotting and fluorogenic enzymatic assay show that kaempferol treatment influences the time‐dependent expression of proteins involved in the endoplasmic reticulum stress pathway and mitochondrial signaling pathway. In addition, pretreating cells with caspase inhibitors, BAPTA or calpeptin before exposure to kaempferol increases cell viabilities. The anti‐cancer effects of kaempferol in vivo are evaluated in BALB/cnu/nu mice inoculated with U‐2 OS cells, and the results indicate inhibition of tumor growth. In conclusion, kaempferol inhibits human osteosarcoma cells in vivo and in vitro. 相似文献
92.
Li Cui Li-ping Xu Fang-Chang Tsai Ping Zhu Tao Jiang Jen-taut Yeh 《Journal of Polymer Research》2011,18(6):1301-1313
Oxygen scavenging plastic can react with oxygen that was trapped in the packaging materials or permeated into the packages,
and then, extend the shelf life of food contained in packages. Sodium ascorbate (SA) and modified iron (MFe) compounds were
chosen as the main components of oxygen scavengers to prepare the oxygen scavenging LDPE plastics. However, the widely used
hydrophobic LDPE packaging material will slow down the oxygen depletion rate of these oxygen scavenger compounds. So glucose
was used to modify the hydrophobic property of LDPE to improve the oxygen depletion properties of LDPE oxygen scavenging plastic.
The oxygen depletion efficiency of L95[SAx(MFe)y]5 series samples improved initially as the weight ratios of SA/MFe increase, and reached the best as the weight ratios of SA/MFe
approach 7/3. After modifying LDPE with glucoses, the oxygen depletion efficiency of each ML95[SAx(MFe)y]5 specimen improved even better than that of the corresponding L95[SAx(MFe)y]5 specimen with the same loading of oxygen scavenger compound, wherein the oxygen depletion efficiency of ML95[SAx(MFe)y]5 series specimens reached the best as the weight ratios of SA/MFe approach 1/9. In consistent with the oxygen depletion properties
found in the previous section, the peroxide values of modeled food samples tested in the airtight flask with L95[SAx(MFe)y]5 and ML95[SAx(MFe)y]5 series samples reduce consistently as their oxygen depletion properties improve. In order to understand the interesting oxygen
depletion properties of L95[SAx(MFe)y]5 and ML95[SAx(MFe)y]5 series samples, Fourier transform infrared spectroscopy, scanning electron microscope and energy dispersive X-rays analysis
of these samples were performed. 相似文献
93.
Some maize endosperm mutants have branched-chain starch components with long exterior chains which make the blue-value procedure for estimating amylose content questionable. Gel filtration was used to estimate starch composition of normal, high-amylose, waxy and other maize endosperm mutants. Loosely-branched polymers appeared responsible for the apparent amylose content. In some mutants high and intermediate loosely branched polysaccharides were found in addition to amylose. The sweet corn background of some endosperm genotypes influenced the types of polymers produced compared to the dent backgrounds used by previous researchers. 相似文献
94.
Yuh-Ching Gau Tsung-Jang Yeh Chin-Mu Hsu Samuel Yien Hsiao Hui-Hua Hsiao 《International journal of molecular sciences》2022,23(6)
Multiple myeloma is a hematologic malignancy of plasma cells that causes bone-destructive lesions and associated skeletal-related events (SREs). The pathogenesis of myeloma-related bone disease (MBD) is the imbalance of the bone-remodeling process, which results from osteoclast activation, osteoblast suppression, and the immunosuppressed bone marrow microenvironment. Many important signaling cascades, including the RANKL/RANK/OPG axis, Notch signaling, the Wnt/β-Catenin signaling pathways, and signaling molecules, such as DKK-1, sclerostin, osteopontin, activin A, chemokines, and interleukins are involved and play critical roles in MBD. Currently, bisphosphonate and denosumab are the gold standard for MBD prevention and treatment. As the molecular mechanisms of MBD become increasingly well understood, novel agents are being thoroughly explored in both preclinical and clinical settings. Herein, we will provide an updated overview of the pathogenesis of MBD, summarize the clinical management and guidelines, and discuss novel bone-modifying therapies for further management of MBD. 相似文献
95.
Wireless Networks - The continuing rise of the amount of mobile traffic is daunting, but the deploying of indoor small cells provides exciting opportunities to boost network capacity, extend cell... 相似文献
96.
Wen-Kuan Yeh Shuo-Mao Chen Yean-Kuen Fang 《Electron Devices, IEEE Transactions on》2004,51(5):817-819
This brief investigates the substrate noise coupling using S-parameters measurement. Radio frequency domain analysis shows that the noise isolation is strongly dependent on layout geometry, including the parameters such as p-n junction, physical separation distance, guard ring (GR), and deep n-well (DNW). We found that the noise coupling can be efficiently diminished by incorporating GR and DNW structures. 相似文献
97.
Yu-Liang Chen Shih-Wei Lee Jien-Wei Yeh Chih-Fu Yang Shui-Shu Hung 《Metallurgical and Materials Transactions A》2005,36(9):2441-2447
Reciprocating extrusion combined with simple powder compaction was used to produce electrical contact SnO2/Ag composites from Ag and SnO2 powders with improved properties. The SnO2 particles were uniformly dispersed in the Ag matrix after 20 passes of extrusion. The hardness of the composites increased
with extrusion passes and leveled off after ten passes, whereas the electrical conductivity decreased slowly after five passes.
The variation of the coefficient of thermal expansion with temperature revealed that SnO2/Ag interface strength increased with extrusion passes and was greatest after 20 passes. The SnO2/Ag composites with 20 passes showed the best electrical contact properties in which there was no mass loss through mass transfer
from cathode to anode during the make-break erosion test at both low and high current conditions. On the other hand, SnO2/Ag composites with one pass and commercial SnO2-In2O3/Ag specimens had an apparent mass loss under the same condition. Electrical contact composites produced by the present method
are promising in electrical contact applications in consideration of cost and performance. 相似文献
98.
A unique feature of p21 that distinguishes it from the other cyclin-dependent kinase (CDK) inhibitors is its ability to associate with the proliferating cell nuclear antigen (PCNA), an auxiliary factor for DNA polymerases delta and epsilon. While it is now well established that inhibition of cyclin/CDK complexes by p21 can result in G1 cell cycle arrest, the consequences of p21/PCNA interaction on cell cycle progression have not yet been determined. Here, we show, using a tetracycline-regulated system, that expression of wild-type p21 in p53-deficient DLD1 human colon cancer cells inhibits DNA synthesis and causes G1 and G2 cell cycle arrest. Similar effects are observed in cells expressing p21CDK-, a mutant impaired in the interaction with CDKs, but not in cells expressing p21PCNA-, a mutant deficient for the interaction with PCNA. Analysis of cells treated with a p21-derived PCNA-binding peptide provides additional evidence that the growth inhibitory effects of p21 and p21CDK result from their ability to bind to PCNA. Our results suggest that p21 might inhibit cell cycle progression by two independent mechanisms, inhibition of cyclin/CDK complexes, and inhibition of PCNA function resulting in both G1 and G2 arrest. 相似文献
99.
L.M. Wang Ching-Yu ChangShau-Tin Yeh Shinn Wei ChenZi An Peng Shun Chang BairD.S. Lee F.C. LiaoY.K. Kuo 《Ceramics International》2012,38(2):1167-1174
The synthesis and transport properties of n-type thermoelectric oxide (ZnO)mIn2O3 (ZmIO) ceramics prepared by conventional solid-state reaction method have been reported. It is found that the transport properties of ZmIO ceramics are very sensitive to the post-annealing temperature as well as the zinc content m. The resistivity of Z5IO annealed at 1400 °C decreases by more than 2 orders of magnitude in comparison with that of Z5IO annealed at 1200 °C, while the resistivities of Z6IO compounds annealed at 1250 and 1350 °C are more than 3 orders of magnitude larger than that of Z6IO annealed at 1300 °C. All the ZmIO compounds annealed at 1300 °C show electron-type conduction with a lowest resistivity at m = 6. It is suggested that the oxygen defects or vacancies in the InO2 layers play a major role on the carrier scattering mechanism, and the observed temperature-dependent resistivity for Z5IO and Z6IO compounds can be satisfactorily described by the variable-range hopping conduction. Furthermore, it is found that the values of Seebeck coefficient for ZmIO are also very sensitive to the zinc content m. The dimensionless figure of merit of 0.0045 at 300 K for m = 6 has been obtained. 相似文献
100.
Synthesis of Fe3O4 Nanowire Arrays Via Precipitation in Templates and Microwave Hydrothermal Process
Hong-Wen Wang Hsiu-Chu Lin Yun-Chieh Yeh 《International Journal of Applied Ceramic Technology》2010,7(Z1):E33-E38
Template growth of Fe3O4 nanowire arrays via precipitation and subsequent microwave hydrothermal process was investigated. Anodic aluminum oxide and polycarbonate templates were immersed in a ferrous chloride and ferric chloride mixture and the precipitation of Fe3O4 took placed by adjusting the solution to pH>9. A microwave hydrothermal process was subsequently performed at 150°C for 30 min in order to further enhance the crystallinity of the Fe3O4 nanowires. The length of the nanowires is about 5–20 μm and the diameter is about 220 nm, with perfect surface finishing. The nanowires were polycrystalline cubic spinel structures and composed of nanometer-sized particles, as characterized by X-ray diffraction, field emission scanning electron microscopy, and transmission electron microscopy. Magnetic properties in parallel and perpendicular direction were measured using a vibrating sample magnetometer, where the magnetization in the perpendicular direction of the nanowires is higher than that of the parallel direction. Microwave hydrothermal treatment improved the crystallinity and morphology of Fe3O4 nanowires and resulted in a much better magnetization than that without microwave hydrothermal treatment. 相似文献