Search Results - "SATO, FUMINORI"

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    Syntheses of Base-Labile Pseudo-Complementary SNA and l‑aTNA Phosphoramidite Monomers by Sato, Fuminori, Kamiya, Yukiko, Asanuma, Hiroyuki

    Published in Journal of organic chemistry (20-01-2023)
    “…We previously synthesized phosphoramidite monomers bearing Boc-protected 2,6-diaminopurine (D) and 2-methyl-4-methoxybenzyl-protected 2-thiouracil (sU) as…”
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    Journal Article
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    Phase I clinical trial of cell division associated 1 (CDCA1) peptide vaccination for castration resistant prostate cancer by Obara, Wataru, Sato, Fuminori, Takeda, Kazuyoshi, Kato, Renpei, Kato, Yoichiro, Kanehira, Mitsugu, Takata, Ryo, Mimata, Hiromitsu, Sugai, Tamotsu, Nakamura, Yusuke, Fujioka, Tomoaki

    Published in Cancer science (01-07-2017)
    “…Cell division associated 1 (CDCA1) was screened as an oncogene that is overexpressed on several cancers, including prostate cancer. A highly immunogenic…”
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    PDH‐mediated metabolic flow is critical for skeletal muscle stem cell differentiation and myotube formation during regeneration in mice by Hori, Shimpei, Hiramuki, Yosuke, Nishimura, Daigo, Sato, Fuminori, Sehara-Fujisawa, Atsuko

    Published in The FASEB journal (01-07-2019)
    “…ABSTRACT Skeletal muscle satellite cells (SMSCs), the major stem cells responsible for the regeneration of skeletal muscle, are normally cell cycle arrested…”
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    Transient and lineage-restricted requirement of Ebf3 for sternum ossification by Kuriki, Mao, Sato, Fuminori, Arai, Hiroyuki N, Sogabe, Maina, Kaneko, Mari, Kiyonari, Hiroshi, Kawakami, Koichi, Yoshimoto, Yuki, Shukunami, Chisa, Sehara-Fujisawa, Atsuko

    Published in Development (Cambridge) (01-05-2020)
    “…Osteoblasts arise from bone-surrounding connective tissue containing tenocytes and fibroblasts. Lineages of these cell populations and mechanisms of their…”
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    Anteroposterior molecular registries in ectoderm of the echinus rudiment by Adachi, Shinya, Niimi, Iyo, Sakai, Yui, Sato, Fuminori, Minokawa, Takuya, Urata, Makoto, Sehara‐Fujisawa, Atsuko, Kobayashi, Isao, Yamaguchi, Masaaki

    Published in Developmental dynamics (01-12-2018)
    “…Background: Echinoderms and hemichordates are sister taxa that both have larvae with tripartite coeloms. Hemichordates inherit the coelom plan and ectoderm…”
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    Downregulation of WDR20 due to loss of 14q is involved in the malignant transformation of clear cell renal cell carcinoma by Takahashi, Mika, Tsukamoto, Yoshiyuki, Kai, Tomoki, Tokunaga, Akinori, Nakada, Chisato, Hijiya, Naoki, Uchida, Tomohisa, Daa, Tsutomu, Nomura, Takeo, Sato, Fuminori, Mimata, Hiromitsu, Matsuura, Keiko, Moriyama, Masatsugu

    Published in Cancer science (01-04-2016)
    “…Previously, we reported that genomic loss of 14q occurs more frequently in high‐grade than in low‐grade clear cell renal cell carcinomas (ccRCCs), and has a…”
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    Downregulation of SAV1 plays a role in pathogenesis of high-grade clear cell renal cell carcinoma by Matsuura, Keiko, Nakada, Chisato, Mashio, Mizuho, Narimatsu, Takahiro, Yoshimoto, Taichiro, Tanigawa, Masato, Tsukamoto, Yoshiyuki, Hijiya, Naoki, Takeuchi, Ichiro, Nomura, Takeo, Sato, Fuminori, Mimata, Hiromitsu, Seto, Masao, Moriyama, Masatsugu

    Published in BMC cancer (20-12-2011)
    “…Clinical outcome of patients with high-grade ccRCC (clear cell renal cell carcinoma) remains still poor despite recent advances in treatment strategies…”
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    Tumor necrosis factor‐alpha inhibits differentiation of myogenic cells in human urethral rhabdosphincter by Shinohara, Mayuka, Sumino, Yasuhiro, Sato, Fuminori, Kiyono, Tohru, Hashimoto, Naohiro, Mimata, Hiromitsu

    Published in International journal of urology (01-06-2017)
    “…Objectives To examine the inhibitory effects of tumor necrosis factor‐α on myogenic differentiation of human urethral rhabdosphincter cells. Methods A…”
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    Neuregulin 1 Type II-ErbB Signaling Promotes Cell Divisions Generating Neurons from Neural Progenitor Cells in the Developing Zebrafish Brain by Sato, Tomomi, Sato, Fuminori, Kamezaki, Aosa, Sakaguchi, Kazuya, Tanigome, Ryoma, Kawakami, Koichi, Sehara-Fujisawa, Atsuko

    Published in PloS one (22-05-2015)
    “…Post-mitotic neurons are generated from neural progenitor cells (NPCs) at the expense of their proliferation. Molecular and cellular mechanisms that regulate…”
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    Efficacy of Touch Imprint Cytology in Intraoperative Diagnosis of Invasive Mucinous Adenocarcinoma of the Lung: A Case Report and Literature Review by Kato, Toshihiko, Higuchi, Yumiko, Oshima, Mei, Endo, Fuki, Sato, Fuminori, Sugihara, Shiro, Yamamoto, Manabu, Imai, Yasuo

    Published in Clinics and practice (01-01-2024)
    “…A preoperative diagnosis of the peripheral small lung nodule is often difficult, and an intraoperative frozen section diagnosis (FSD) is performed to guide…”
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    Dual targeting of heat shock proteins 90 and 70 promotes cell death and enhances the anticancer effect of chemotherapeutic agents in bladder cancer by MA, LIANG, SATO, FUMINORI, SATO, RYUTA, MATSUBARA, TAKANORI, HIRAI, KENICHI, YAMASAKI, MUTSUSHI, SHIN, TOSHITAKA, SHIMADA, TATSUO, NOMURA, TAKEO, MORI, KENICHI, SUMINO, YASUHIRO, MIMATA, HIROMITSU

    Published in Oncology reports (01-06-2014)
    “…Heat shock proteins (HSPs), which are molecular chaperones that stabilize numerous vital proteins, may be attractive targets for cancer therapy. The aim of the…”
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    Secretome analysis to elucidate metalloprotease‐dependent ectodomain shedding of glycoproteins during neuronal differentiation by Tsumagari, Kazuya, Shirakabe, Kyoko, Ogura, Mayu, Sato, Fuminori, Ishihama, Yasushi, Sehara‐Fujisawa, Atsuko

    “…Many membrane proteins are subjected to limited proteolyses at their juxtamembrane regions, processes referred to as ectodomain shedding. Shedding ectodomains…”
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    Metalloprotease-Dependent Attenuation of BMP Signaling Restricts Cardiac Neural Crest Cell Fate by Arai, Hiroyuki N., Sato, Fuminori, Yamamoto, Takuya, Woltjen, Knut, Kiyonari, Hiroshi, Yoshimoto, Yuki, Shukunami, Chisa, Akiyama, Haruhiko, Kist, Ralf, Sehara-Fujisawa, Atsuko

    Published in Cell reports (Cambridge) (15-10-2019)
    “…In higher vertebrates, cephalic neural crest cells (NCCs) form craniofacial skeleton by differentiating into chondrocytes and osteoblasts. A subpopulation of…”
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