Search Results - "MIYOSHI, EIJI"

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  1. 1

    High Dye-Loaded and Thin-Shell Fluorescent Polymeric Nanoparticles for Enhanced FRET Imaging of Protein-Specific Sialylation on the Cell Surface by Zhao, Tingbi, Masuda, Tsukuru, Miyoshi, Eiji, Takai, Madoka

    Published in Analytical chemistry (Washington) (06-10-2020)
    “…Nanoparticle-based probes have great potential for imaging specific biomolecules in signal distinguishing and amplification via Förster resonance energy…”
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    Functional roles of N‐glycans in cell signaling and cell adhesion in cancer by Zhao, Yan‐Yang, Takahashi, Motoko, Gu, Jian‐Guo, Miyoshi, Eiji, Matsumoto, Akio, Kitazume, Shinobu, Taniguchi, Naoyuki

    Published in Cancer science (01-07-2008)
    “…Glycosylation is one of the most common post‐translational modification reactions and nearly half of all known proteins in eukaryotes are glycosylated. In…”
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    Application of glycoscience to the early detection of pancreatic cancer by Miyoshi, Eiji, Kamada, Yoshihiro

    Published in Cancer science (01-10-2016)
    “…The prognosis of pancreatic cancer is extremely poor compared to other cancers. One of the reasons for this is the difficulty of early diagnosis. Surveillance…”
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    Functional glycomics: Application to medical science and hepatology by Miyoshi, Eiji, Kamada, Yoshihiro, Suzuki, Tadashi

    Published in Hepatology research (01-02-2020)
    “…Glycomics refers to the comprehensive analysis of glycans. Recent progress in glycotechnology enables the determination of a variety of biological functions of…”
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  5. 5

    Sweet modification and regulation of death receptor signalling pathway by Moriwaki, Kenta, Chan, Francis K M, Miyoshi, Eiji

    Published in Journal of biochemistry (Tokyo) (01-06-2021)
    “…Abstract Death receptors, members of the tumour necrosis factor receptor (TNFR) superfamily, are characterized by the presence of a death domain in the…”
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    Establishment of a novel 70K Mac-2 binding protein antibody through screening of fucosylation-related antibodies by Masuda, Mika, Asuka, Tatsuya, Terao, Naoko, Nishino, Shinsuke, Ikeda, Shun, Takamatsu, Shinji, Kondo, Jumpei, Miyoshi, Eiji

    Published in Journal of biochemistry (Tokyo) (01-06-2023)
    “…Mac-2 binding protein (Mac-2bp) is a serum glycoprotein that contains seven N-glycans, and Mac-2bp serum levels are increased in patients with several types of…”
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    Biological Function of Fucosylation in Cancer Biology by Miyoshi, Eiji, Moriwaki, Kenta, Nakagawa, Tsutomu

    Published in Journal of biochemistry (Tokyo) (01-06-2008)
    “…Fucosylation is one of the most common modifications involving oligosaccharides on glycoproteins or glycolipids. Fucosylation comprises the attachment of a…”
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    Serum core‐type fucosylated prostate‐specific antigen index for the detection of high‐risk prostate cancer by Fujita, Kazutoshi, Hatano, Koji, Tomiyama, Eisuke, Hayashi, Yujiro, Matsushita, Makoto, Tsuchiya, Mutsumi, Yoshikawa, Tomoyasu, Date, Mutsuhiro, Miyoshi, Eiji, Nonomura, Norio

    Published in International journal of cancer (15-06-2021)
    “…It is known that core‐type fucosylation is higher in prostate cancer cells than in other cancer cell types and is associated with high‐risk prostate cancer…”
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    The Rab11-binding protein RELCH/KIAA1468 controls intracellular cholesterol distribution by Sobajima, Tomoaki, Yoshimura, Shin-Ichiro, Maeda, Tomomi, Miyata, Haruhiko, Miyoshi, Eiji, Harada, Akihiro

    Published in The Journal of cell biology (07-05-2018)
    “…Cholesterol, which is endocytosed to the late endosome (LE)/lysosome, is delivered to other organelles through vesicular and nonvesicular transport mechanisms…”
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    Fucosylation in Urological Cancers by Fujita, Kazutoshi, Hatano, Koji, Hashimoto, Mamoru, Tomiyama, Eisuke, Miyoshi, Eiji, Nonomura, Norio, Uemura, Hirotsugu

    “…Fucosylation is an oligosaccharide modification that plays an important role in immune response and malignancy, and specific fucosyltransferases (FUTs)…”
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    Impact of fatty pancreas and lifestyle on the development of subclinical chronic pancreatitis in healthy people undergoing a medical checkup by Fujii, Makoto, Ohno, Yuko, Yamada, Makoto, Kamada, Yoshihiro, Miyoshi, Eiji

    “…Although fat accumulation in human organs is associated with a variety of diseases, there is little evidence about the effect of a fatty pancreas on the…”
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    Development of new colloid osmotic pressure measurement method using ultrafiltration membrane during cardiopulmonary bypass by Matsumoto, Takeshi, Yoshida, Kiyoshi, Shinohara, Tomotaka, Miyoshi, Eiji, Ueno, Takayoshi

    Published in The Journal of extra-corporeal technology (01-12-2023)
    “…Clinical practice of measuring colloid osmotic pressure (COP) was abandoned after correcting hypoosmolarity did not improve overall patient outcomes. However,…”
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    Core Fucosylation Is Required for the Secretion of and the Enzymatic Activity of SOD3 in Nonsmall-Cell Lung Cancer Cells by Ohkawa, Yuki, Kitano, Masato, Maeda, Kento, Nakano, Miyako, Kanto, Noriko, Kizuka, Yasuhiko, Seike, Masahiro, Azuma, Arata, Yamaguchi, Yoshiki, Ookawara, Tomomi, Miyoshi, Eiji, Taniguchi, Naoyuki

    Published in Antioxidants & redox signaling (01-06-2023)
    “…The anticancer function of superoxide dismutases (SODs) is still controversial. SOD3 is an extracellular superoxide dismutase and contains a single -glycan…”
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    Fucosylation and gastrointestinal cancer by Moriwaki, Kenta, Miyoshi, Eiji

    Published in World journal of hepatology (27-04-2010)
    “…Fucose (6-deoxy-L-galactose) is a monosaccharide that is found on glycoproteins and glycolipids in verteb rates, invertebrates, plants, and bacteria…”
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    The scaffold-dependent function of RIPK1 in dendritic cells promotes injury-induced colitis by Moriwaki, Kenta, Park, Christa, Koyama, Kazuha, Balaji, Sakthi, Kita, Kohei, Yagi, Ryoko, Komazawa-Sakon, Sachiko, Semba, Manami, Asuka, Tatsuya, Nakano, Hiroyasu, Kamada, Yoshihiro, Miyoshi, Eiji, Chan, Francis K. M.

    Published in Mucosal immunology (01-01-2022)
    “…Receptor interacting protein kinase 1 (RIPK1) is a cytosolic multidomain protein that controls cell life and death. While RIPK1 promotes cell death through its…”
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