Rchr
J-GLOBAL ID:201501002891164598
Update date: Nov. 05, 2024
Yukiko Kuroda
クロダ ユキコ | Yukiko Kuroda
Affiliation and department:
Job title:
Senior Assistant Professor (Non-tenured)/Assistant Professor (Non-tenured)
Research field (4):
Anatomy
, Clinical pharmacy
, Physiology
, Morphology, anatomy
Research keywords (4):
bone
, cellular interaction
, Mineralization
, Morphology
Research theme for competitive and other funds (11):
- 2023 - 2026 Inner ear pharmacokinetics and development of drug delivery systems targeting the inner ear barrier mechanism
- 2024 - 2025 左右対称性の骨格が形成される細胞機構の理解に向けて
- 2022 - 2025 感覚器における骨組織の役割~聴覚器に特化した骨形態・骨代謝制御機構の解明
- 2021 - 2025 Understanding the cellular basis of left-right symmetry in the skeleton
- 2019 - 2022 Analysis of hypermineralizing osteoblasts, a new osteoblast subtype, that produce high BMD bone
- 2017 - 2021 Osteogenic capillaries - new aspect of endochondral ossification
- 2016 - 2019 Identification of the glycoproteins-induced bone formation mechanisms at bone resorption lacunae
- 2013 - 2016 Identification of bone formation mechanisms at resorption lacunae
- 2011 - 2012 The investigation and identification of key molecules in the calciumoscillation-independent osteoclastogenesis
- 2009 - 2010 The identification of a novel mechanism of osteoclast differentiation that is calcium oscillation-independent osteoclastogenesis
- 2007 - 2008 The clarification of the regulatory mechanism of calcium dynamics during osteoclastogenesis
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Papers (43):
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Katsuhiro Kawaai, Yumiko Oishi, Yukiko Kuroda, Ryota Tamura, Masahiro Toda, Koichi Matsuo. Chordoma cells possess bone-dissolving activity at the bone invasion front. Cellular Oncology. 2024
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Yukiko Kuroda, Masaki Yoda, Katsuhiro Kawaai, Motoharu Tatenuma, Toshihide Mizoguchi, Shinichirou Ito, Masataka Kasahara, Yanlin Wu, Hidekazu Takano, Atsushi Momose, et al. Developing long bones respond to surrounding tissues by trans-pairing of periosteal osteoclasts and endocortical osteoblasts. Development (Cambridge, England). 2024
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Katsuhiro Kawaai, Yukiko Kuroda, Koichi Matsuo. Calcified Cartilage-Guided Identification of Osteogenic Molecules and Geometries. ACS Biomaterials Science & Engineering. 2024. 10. 5. 2983-2994
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Kenji Tanaka, Shuma Ohara, Tadaaki Matsuzaka, Aira Matsugaki, Takuya Ishimoto, Ryosuke Ozasa, Yukiko Kuroda, Koichi Matsuo, Takayoshi Nakano. Quantitative Threshold Determination of Auditory Brainstem Responses in Mouse Models. International Journal of Molecular Sciences. 2023. 24. 14
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Yoshikazu Kuboi, Yukiko Kuroda, Masayoshi Ohkuro, Sotaro Motoi, Yoshiya Tomimori, Hisataka Yasuda, Nobuyuki Yasuda, Toshio Imai, Koichi Matsuo. The Fractalkine-CX3CR1 Axis Regulates Non-inflammatory Osteoclastogenesis by Enhancing Precursor Cell Survival. JBMR Plus. 2022
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MISC (6):
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HKuroda Yukiko, HR. 破骨細胞と骨芽細胞の相互作用:破骨細胞による骨芽細胞の活性化メカニズム. THE BONE. 2016. 30. 2. 17-20
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尾間由佳子, 黒田有希子, 西森克彦, 原田昌彦. 脳特異的に発現するアクチン関連タンパク質による遺伝子発現制御の解析. 生化学. 2002. 74. 8. 907
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黒田有希子, 尾間由佳子, 西森克彦, 原田昌彦. 脳・神経細胞で特異的に発現するアクチン関連タンパク質ArpNαの細胞核への局在と機能解析. 日本農芸化学会大会講演要旨集. 2002. 2002. 154
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黒田有希子, 尾間由佳子, 西森克彦, 原田昌彦. 脊椎動物の核に局在するアクチン関連タンパク質アイソフォームArpNα,βの機能解析. 生化学. 2001. 73. 8. 1036
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尾間由佳子, 黒田有希子, 原田昌彦. 脳・神経に特異的なヒトのアクチン関連タンパク質hArpNαと相互作用するタンパク質の解析. 日本農芸化学会誌. 2001. 75. 329
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Books (2):
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マイクロCT像とLight sheet蛍光顕微鏡像の融合による骨形成性毛細血管の3D可視化
2016
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破骨細胞と骨芽細胞の相互作用:破骨細胞による骨芽細胞の活性化メカニズム
2016
Lectures and oral presentations (34):
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Nano-CT analysis of left-right (a)symmetry of intracortical canals
(The 42nd Annual meeting of the japanese society for bone and mineral research 2024)
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Regulation of the degree or sites of mineralization by auditory osteoblasts and trans-pairing
(The 42nd Annual meeting of the japanese society for bone and mineral research 2024)
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Trans-pairing of osteoclasts and osteoblasts facing each other across cortical bone shapes developing bone while maintaining cortical thickness
(The 42nd Annual meeting of the japanese society for bone and mineral research 2024)
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Development of the biomimetic osteogenic surface based on the characteristic of calcified cartilage.
(2023)
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第 41 回日本骨代謝学会学術集会 会期 2023 年 7 月 27 日(木)~29 日(土) 会場 都市センターホテル(東京) 演題名(和文)全角 200 文字以内 皮質骨を挟んで向かい合った骨芽細胞と破骨細胞の「トランスペアリング」により長 管骨は周囲の臓器形態 に適合する “Trans-pairing” of osteoclasts and osteoblasts facing each other across cortical bone shapes developing long bone to conform to the surrounding tissue morphology
(2023)
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Education (3):
- 2003 - 2007 The University of Tokyo 医学部 医学系研究科脳神経医学専攻
- 2000 - 2002 Tohoku University 農学部 農学研究科応用生命科学専攻
- 1996 - 2000 Tohoku University 農学部 応用生物化学科
Professional career (1):
Work history (7):
- 2023/10 - 現在 Keio University School of Medicine Center for Integrated Medical Research
- 2023/04 - 2023/09 National Hospital Organization, Tokyo Medical Center Laboratory of auditory disorders, National Institute of Sensory Organs Researcher
- 2022/04 - 2023/03 Keio University School of Medicine Collaborative Research Resources (Laboratory of Cell and Tissue Biology) Project Assistant Professor
- 2014/04 - 2022/03 Keio University School of Medicine Collaborative Research Resources (Laboratory of Cell and Tissue Biology) 助教
- 2011/04 - 2014/03 Keio University School of Medicine Collaborative Research Resources (Laboratory of Cell and Tissue Biology) 特任助教
- 2008/04 - 2011/03 独立行政法人理化学研究所 脳科学総合センター 発生神経生物研究チーム 基礎科学特別研究員
- 2007/04 - 2008/03 独立行政法人理化学研究所 脳科学総合センター 発生神経生物研究チーム 研究員
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Committee career (1):
- 2022/04 - 現在 The Japanese Society for Bone and Mineral Research Young Investigator Committee
Awards (1):
- 2007/07 - L'ORÉAL-UNESCO For Women in Science Japan Fellowships
Association Membership(s) (3):
Japanease Society for Bone Morphometry
, 日本骨代謝学会
, American Society for Bone and Mineral Research
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