Rchr
J-GLOBAL ID:201801017575396494
Update date: Sep. 28, 2024
Junichi Kawabe
カワベ ジュンイチ | Junichi Kawabe
Affiliation and department:
Job title:
Professor
Research field (1):
Cardiology
Research keywords (5):
regeneration
, atherosclerosis
, stem cells
, pericyte
, Angiogenesis
Research theme for competitive and other funds (13):
- 2022 - 2025 Detection of true MSC and its role in tissue regeneration
- 2018 - 2022 Mechanisms of sarcopenia-induced cardiac function alteration and functional improvement via skeletal muscle regeneration in the ischemic heart.
- 2018 - 2021 Microvessel system for the analysis of stem cell maintenance in tissue
- 2017 - 2020 Vascular niche for maintenance of capillary stem cells
- 2017 - 2020 Ninj1-mediated vascular maturation and development of therapeutic strategy for atherosclerosis
- 2015 - 2017 To clarify the role of Ninjurin 1 in vascular maturation.
- 2013 - 2016 Role of Capillary Stem Cells in Tissue Regeneration
- 2011 - 2013 APE1/ref1 gene provides anti-oxidative fate to Sca-1 positive cardiac progenitor cells and promotes cardiac repair via macrophage transition in ischemic environment
- 2010 - 2012 Role of neural regenerative factors on vasa vasorum angiogenesis and remodeling of injured vasculature.
- 2010 - 2012 Role of prostanoids in the bone marrow derived endothelial cells
- 2008 - 2010 The study of cancer treatment by regulating bone marrow-derived endothelial progenitor cells.
- 2006 - 2008 Role of prostanoids in vascular remodeling(Effects of prostanoids on bone marrow cells)
- 2005 - 2007 VascularStiffnessに及ぼすmechanicalstressの役割
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Papers (85):
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Hirofumi Sakuma, Keisuke Maruyama, Tatsuya Aonuma, Yuya Kobayashi, Taiki Hayasaka, Kohei Kano, Satoshi Kawaguchi, Kei-Ichi Nakajima, Jun-Ichi Kawabe, Naoyuki Hasebe, et al. Inducible deletion of microRNA activity in kidney mesenchymal cells exacerbates renal fibrosis. Scientific reports. 2024. 14. 1. 10963-10963
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Takamitsu Tatsukawa, Kohei Kano, Kei-Ichi Nakajima, Takashi Yazawa, Ryoji Eguchi, Maki Kabara, Kiwamu Horiuchi, Taiki Hayasaka, Risa Matsuo, Naoyuki Hasebe, et al. NG2-positive pericytes regulate homeostatic maintenance of slow-type skeletal muscle with rapid myonuclear turnover. Stem cell research & therapy. 2023. 14. 1. 205-205
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Risa Matsuo, Mari Kishibe, Kiwamu Horiuchi, Kohei Kano, Takamitsu Tatsukawa, Taiki Hayasaka, Maki Kabara, Shin Iinuma, Ryoji Eguchi, Satomi Igawa, et al. Ninjurin1 Deletion in NG2-Positive Pericytes Prevents Microvessel Maturation and Delays Wound Healing. JID innovations : skin science from molecules to population health. 2022. 2. 6. 100141-100141
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Kazuo Yamasaki, Takashi Daiho, Satoshi Yasuda, Stefania Danko, Jun-ichi Kawabe, Hiroshi Suzuki. Electrostatic interactions between single arginine and phospholipids modulate physiological properties of sarcoplasmic reticulum Ca2+-ATPase. Scientific Reports. 2022. 12. 1
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Ryoji Eguchi, Jun-ichi Kawabe, Ichiro Wakabayashi. VEGF-Independent Angiogenic Factors: Beyond VEGF/VEGFR2 Signaling. Journal of Vascular Research. 2022. 59. 2. 1-12
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MISC (74):
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竜川貴光, 竜川貴光, 鹿野耕平, 鹿野耕平, 鹿野耕平, 堀内至, 堀内至, 松尾梨沙, 中島恵一, 矢澤隆志, et al. NG2陽性周細胞は筋幹細胞として遅筋線維の維持に寄与している. 日本血管生物医学会学術集会プログラム・抄録集. 2022. 30th (CD-ROM)
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Harumasa Yokota, Akito Shimouchi, Chiemi Matsumoto, Maki Kabara, Jun-ichi Kawabe, Taiji Nagaoka, Akitoshi Yoshida. Mesenchymal stem cell-like pericytes inhibit pathological retinal neovascularization in ischemic retinopathy. INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE. 2016. 57. 12
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結城 幸一, 柏木 仁, 今道 力敬, 中川 直樹, 藤野 貴行, 川辺 淳一, 牛首 文隆. 心脈管作動物質プロスタノイドの生体における役割 循環器疾患の病態形成におけるプロスタノイドの役割. 血管. 2016. 39. 1. 26-26
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Tatsuya Aonuma, Naofumi Takehara, Keisuke Maruyama, Maki Kabara, Motoki Matsuki, Atsushi Yamauchi, Junichi Kawabe, Naoyuki Hasebe. Apurinic/apyrimidinic Endonuclease/redox Factor-1 Gene Enhances Anti-apoptotic Function of Cardiac Progenitor Cells via TAK1-Activation and Promotes Cardiac Regeneration in Myocardial Infarction. CIRCULATION. 2015. 132
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Motoki Matsuki, Jun-ichi Kawabe, Tatsuya Aonuma, Maki Kabara, Atsushi Yamauchi, Kohei Shimamura, Akiho Minoshima, Naofumi Takehara, Yukihiro Saito, Naoyuki Hasebe. Ninjurin1, a Novel Regulatory Factor of Pericytes to Interact With Endothelial Cells, Mediates the Circulation Recovery in the Hind Limb Ischemia. CIRCULATION. 2014. 130
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Professional career (1):
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