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J-GLOBAL ID:201801020019724351   Update date: Jan. 28, 2025

YANAGISAWA Hiromi

ヤナギサワ ヒロミ | YANAGISAWA Hiromi
Affiliation and department:
Job title: Professor
Homepage URL  (1): https://www.saggymousehkytsukuba.com
Research field  (4): Pathobiochemistry ,  Cardiovascular surgery ,  Medical biochemistry ,  Cardiology
Research keywords  (21): Elastin ,  matricellular proteins ,  fibulins ,  glycans ,  Genetic engineering ,  disease mouse model ,  aging ,  cerebrovascular system ,  tissue stem cell ,  Raman Imaging ,  biomechanics ,  elastic fibers ,  vascular remodeling ,  mechanobiology ,  vascular biology ,  heritable thoracic aortic disease (HTAD) ,  vascular injury and vascular remodeling ,  aortic aneurysm ,  extracellular matrix ,  extracellular microenvironment ,  Aortic Dissection
Research theme for competitive and other funds  (29):
  • 2023 - 2027 Elucidation of the mechanism of thoracic aortic disease based on extracellular matrix and development of novel therapeutic strategy
  • 2021 - 2025 Elucidation of the pathogenesis of aortic dissection caused by the alteration in microfibrils
  • 2024 - 2025 メカノセンシング機構の破綻による大動脈疾患の病態解明とバイオマーカー診断法の開発
  • 2023 - 2024 新規大動脈解離マウスモデルを用いたマルファン症候群等類縁疾患の大動脈解離発症機序の解明
  • 2020 - 2024 上皮幹細胞コンパートメントを規定する分子機構と生物学的意義の解明
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Papers (120):
  • Hossain, ASM Sakhawa, Clarin, Maria Thea, Rane, Dela Cruz, Kimura, Kenichi, Biggin, George, Taga, Yuki, Uto, Koichiro, et al. Fibrillin-1 G234D mutation in the hybrid1 domain causes tight skin associated with dysregulated elastogenesis and increased collagen cross-linking in mice. MATRIX BIOLOGY. 2024. 135. 24-38
  • Dubacher, Nicolo, Sugiyama, Kaori, Smith, Jeffrey D, Nussbaumer, Vanessa, Csonka, Máté, Ferenczi, Szilamér, Kovács, Krisztina J, Caspar, Sylvan M, Lamberti, Lisa, et al. Novel Insights into the Aortic Mechanical Properties of Mice Modeling Hereditary Aortic Diseases. THROMBOSIS AND HAEMOSTASIS. 2024. Epub
  • Kimura, Kenichi, Motoyama, Eri, Kanki, Sachiko, Asano, Keiichi, Sheikh, Md Al Amin, Clarin, Maria Thea, Rane, Dela Cruz, Raja, Erna, et al. A novel genetic mouse model of fatal aortic dissection reveals massive inflammatory cell infiltration in the thoracic aorta. Biorxiv. 2024
  • Torimoto, Keiichi, Elliott, Katherine, Nakayama, Yuki, Yanagisawa, Hiromi, Eguchi, Satoru. Cardiac and perivascular myofibroblasts, matrifibrocytes, and immune fibrocytes in hypertension; commonalities and differences with myocardial infarction and other cardiovascular diseases. Cardiovascular research. 2024
  • Violette, Deleeuw, Carlson, Eric, Renard, Marjolijn, Zientek, Keith D, Wilmarth, Phillip A, Reddy, Ashok P, Manalo, Elise C, Tufa, Sara F, Keene, Douglas R, Olbinado, Margie, et al. Unraveling the Role of TGFβ Signaling in Thoracic Aortic Aneurysm and Dissection Using Fbn1 Mutant Mouse Models. MATRIX BIOLOGY. 2023. 123. 17-33
more...
MISC (12):
  • 柳沢裕美, 中邨智之. 血管におけるマトリクスエイジング. バイオマテリアルー生体材料ー. 2020. 38. 3. 172-177
  • 船戸 紀子, Srivastava Deepak, Yanagisawa Hiromi. 転写因子Tbx1はヒト口蓋裂の疾患遺伝子の発現調節により口蓋の発生に関与する. Journal of Oral Biosciences Supplement. 2018. 2018. 407-407
  • Tomoko Okuyama, Jun Shirakawa, Hiromi Yanagisawa, Yasuo Terauchi. Identification of Matricellular Protein Fibulin-5 as a Target Molecule of Glucokinase-Mediated Calcineurin/NFAT Signaling in Pancreatic Islets. DIABETES. 2017. 66. A584-A584
  • Tomoko Okuyama, Jun Shirakawa, Hiromi Yanagisawa, Yasuo Terauchi. Fibulin5 Deficiency Improved Insulin Resistance and Hepatic Steatosis Induced by High-Fat Feeding. DIABETES. 2015. 64. A492-A493
  • Jacopo Ferruzzi, Matthew Bersi, Stuart Campbell, Hiromi Yanagisawa, Jay D. Humphrey. Characterization of central artery stiffness, hemodynamics, and left ventricular function in a mouse model of accelerated aging. ANGIOGENESIS. 2014. 17. 1. 276-276
more...
Books (5):
  • Biomechanics of the Aorta: Modelling for Patient Care
    Elsevier 2024
  • 血管・リンパ管の機能制御と疾患メカニズム
    化学同人 2022 ISBN:9784759817355
  • 心臓
    日本医学出版 2022
  • 医学のあゆみ
    2019
  • Advances in Stem Cells and their Niches
    2019
Lectures and oral presentations  (134):
  • Anti-inflammatory Nanoparticles as Potential Treatment for Aortic Dissection
    (つくば医工連携フォーラム2025)
  • 遺伝性胸部大動脈疾患におけるメカノトランスダクション異常
    (CVMW 2024)
  • Phenotypic changes of endothelial cells in the pathogenesis of aortic dissection.
    (CVMW 2024)
  • 骨髄ニッチにおけるミクロフィブリルを介した造血制御機構の解明
    (第8回エラスチン・関連分子研究会)
  • フィブリリン1遺伝子変異による大動脈解離病態に関わる血管内皮細胞の機能解析
    (第8回エラスチン・関連分子研究会)
more...
Education (2):
  • 1988 - 1993 Graduate School of University of Tsukuba
  • 1980 - 1986 University of Tsukuba School of Medicine
Professional career (1):
  • Ph.D. (University of Tsukuba)
Work history (10):
  • 2024/04 - 現在 筑波大学TARAセンター センター長・教授
  • 2015/09 - 現在 University of Tsukuba TARA Center Professor
  • 2020/04 - 2022/03 筑波大学学長補佐
  • 2014/09 - 2015/08 University of Tsukuba TARA Center Professor
  • 2011/09 - 2015/08 University of Texas Southwestern Medical Center at Dallas Department of Molecular Biology Associate Professor (Tenured)
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Committee career (19):
  • 2024/04 - 現在 日本結合組織学会 理事長
  • 2022/01 - 現在 International Society for Matrix Biology Council member
  • 2022/01 - 現在 Matrix Biology and Matrix Biology Plus Editor
  • 2021/12 - 現在 Vascular Pharmacology Editorial Board Member
  • 2021/09 - 現在 Frontiers in Cardiovascular Medicine Associate Editor (Atherosclerosis and Vascular Medicine)
Show all
Awards (5):
  • 2016 - Mizutani Foundation for Glycoscience
  • 2015 - 上原記念生命科学財団研究助成
  • 2015 - 内藤記念科学財団研究助成
  • 2012 - American Heart Association Established Investigator Award (AHA)
  • 2008 - American Society for Matrix Biology Junior Investigator Award (ASMB)
Association Membership(s) (16):
European Society of Cardiology ,  International Society for Matrix Biology ,  THE JAPANESE SOCIETY FOR CARDIOVASCULAR SURGERY ,  The Japanese Biochemical Society ,  The Molecular Biology Society of Japan ,  日本循環器学会 ,  Japan Elastin Meeting ,  Jananese Society for Matirx Biology and Medicine ,  日本血管生物医学会 ,  日本心血管内分泌代謝学会 ,  North American Vascular Biology Organization ,  American Heart Association (AHA), 2017- FAHA ,  American Society for Matrix Biology ,  Japanese Society for Matrix Biology and Medicine ,  JAPAN PEDIATRIC SOCIETY ,  老化促進モデルマウス(SAM)学会
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