29 件中 1 - 20 件目
英語 :Tatsukawa T, Kano K, Nakajima KI, Yazawa T, Eguchi R, Kabara M, Horiuchi K, Hayasaka T, Matsuo R, Hasebe N, Azuma N, Kawabe JI. , NG2-positive pericytes regulate homeostatic maintenance of slow-type skeletal muscle with rapid myonuclear turnover. , Stem Cell Research & Therapy , 2023
英語 :Matsuo R, Kishibe M, Horiuchi K, Kano K, Tatsukawa T, Hayasaka T, Kabara M, Iinuma S, Eguchi R, Igawa S, Hasebe N, Ishida-Yamamoto A, Kawabe JI. , Ninjurin1 Deletion in NG2-Positive Pericytes Prevents Microvessel Maturation and Delays Wound Healing , JID Innovations , 2022
英語 :Horiuchi K, Kano K, Minoshima A, Hayasaka T, Yamauchi A, Tatsukawa T, Matsuo R, Yoshida Y, Tomita Y, Kabara M, Nakagawa N, Takehara N, Hasebe N, Kawabe JI , Pericyte-specific deletion of ninjurin-1 induces fragile vasa vasorum formation and enhances intimal hyperplasia of injured vasculature , American Journal of Physiology-Heart and Circulatory Physiology , 2021
英語 :Kano K, Horiuchi K, Yoshida Y, Hayasaka T, Kabara M, Tomita Y, Tatsukawa T, Matsuo R, Sawada J, Nakagawa N, Takehara N, Hasebe N, Kawabe JI , EphA7+ perivascular cells as myogenic and angiogenic precursors improving skeletal muscle regeneration in a muscular dystrophic mouse model , Stem cell research , 2020
英語 :Yoshida Y, Kabara M, Kano K, Horiuchi K, Hayasaka T, Tomita Y, Takehara N, Minoshima A, Aonuma T, Maruyama K, Nakagawa N, Azuma N, Hasebe N, Kawabe JI. , Capillary-resident EphA7(+) pericytes are multipotent cells with anti-ischemic effects through capillary formation. , Stem Cells Transl Med. , 2020
英語 :Maruyama K, Nakagawa N, Suzuki A, Kabara M, Matsuki M, Shindo M, Iwasaki S, Ogawa Y, Hasebe N. , Novel Detection of CALR-Mutated Cells in Myeloproliferative Neoplasm-Related Glomerulopathy With Interstitial Extramedullary Hematopoiesis: A Case Report. , Am J Kidney Dis. , 2019
英語 :Tomita Y, Horiuchi K, Kano K, Tatsukawa T, Matsuo R, Hayasaka T, Yoshida Y, Kabara M, Yasuda S, Nakajima K, Nakagawa N, Takehara N, Okizaki A, Hasebe N, Kawabe JI. , Ninjurin 1 mediates peripheral nerve regeneration through Schwann cell maturation of NG2-positive cells. , Biochem Biophys Res Commun. , 2019
英語 :Tomita Y, Horiuchi K, Kano K, Tatsukawa T, Matsuo R, Hayasaka T, Yoshida Y, Kabara M, Yasuda S, Nakajima K, Nakagawa N, Takehara N, Okizaki A, Hasebe N, Kawabe JI. , Ninjurin 1 mediates peripheral nerve regeneration through Schwann cell maturation of NG2-positive cells , Biochemical and biophysical research communications. , 2019
英語 :Minoshima A, Kabara M, Matsuki M, Yoshida Y, Kano K, Tomita Y, Hayasaka T, Horiuchi K, Saito Y, Aonuma T, Nishimura M, Maruyama K, Nakagawa N, Sawada J, Takehara N, Hasebe N, Kawabe JI. , Pericyte-Specific Ninjurin1 Deletion Attenuates Vessel Maturation and Blood Flow Recovery in Hind Limb Ischemia. , Arterioscler Thromb Vasc Biol. , 2018
英語 :Maruyama K, Nakagawa N, Suzuki A, Kabara M, Matsuki M, Shindo M, Ogawa Y, Hasebe N. , Pazopanib-induced Endothelial Injury with Podocyte Changes. , Internal Medicine , 2018
英語 :Eujin Lee, Haruko Takahashi, Joris Pauty, Masayoshi Kobayashi, Keisuke Kato, Maki Kabara, Jun-ichi Kawabe, Yukiko T. Matsunaga , A 3D in vitro pericyte-supported microvessel model: visualisation and quantitative characterisation of multistep angiogenesis , Journal of Materials Chemistry B , 2018
英語 :Tatsuya Aonuma, Naofumi Takehara, Keisuke Maruyama, Maki Kabara, Motoki Matsuki, Atsushi Yamauchi, Jun-ichi Kawabe, Naoyuki Hasebe , Apoptosis-Resistant Cardiac Progenitor Cells Modified With Apurinic/Apyrimidinic Endonuclease/Redox Factor 1 Gene Overexpression Regulate Cardiac Repair After Myocardial Infarction. , Stem Cells Translational Medicine, 5 (8) (1067 - 1078) , 2016
英語 :Maruyama Keisuke, Nakagawa Naoki, Kabara Maki, Chinda Junko, Fujino Takayuki, Hasebe Naoyuki , Hemocholecyst complicated in a hemodialysis patient with microscopic polyangiitis. , Mod Rheumatol (1 - 4) , 2015
英語 :Matsuki Motoki, Kabara Maki, Saito Yukihiro, Shimamura Kohei, Minoshima Akiho, Nishimura Masato, Aonuma Tatsuya, Takehara Naofumi, Hasebe Naoyuki, Kawabe Jun-Ichi , Ninjurin1 Is a Novel Factor to Regulate Angiogenesis Through the Function of Pericytes. , Circ J , 2015
英語 :Maruyama Keisuke, Chinda Junko, Kabara Maki, Nakagawa Naoki, Fujino Takayuki, Takeuchi Toshiharu, Hasebe Naoyuki , Successful percutaneous transluminal angioplasty for the treatment of renovascular hypertension with an atrophic kidney. , Heart Vessels, 30 (2) (274 - 279) , 2015
英語 :Maruyama Keisuke, Chinda Junko, Kuroshima Tatsuki, Kabara Maki, Nakagawa Naoki, Fujino Takayuki, Yamamoto Yasushi, Ohsaki Yoshinobu, Ogawa Yayoi, Hasebe Naoyuki , Minimal change nephrotic syndrome associated with gefitinib and a successful switch to erlotinib. , Intern Med, 54 (7) (823 - 826) , 2015
英語 :Ota Hisanobu, Takehara Naofumi, Aonuma Tatsuya, Kabara Maki, Matsuki Motoki, Yamauchi Atsushi, Takeuchi Toshiharu, Kawabe Jun-Ichi, Hasebe Naoyuki , Association between Microalbuminuria Predicting In-Stent Restenosis after Myocardial Infarction and Cellular Senescence of Endothelial Progenitor Cells. , PLoS One, 10 (4) (e0123733) , 2015
英語 :Kabara Maki, Kawabe Jun-ichi, Matsuki Motoki, Hira Yoshiki, Minoshima Akiho, Shimamura Kohei, Yamauchi Atsushi, Aonuma Tatsuya, Nishimura Masato, Saito Yukihiro, Takehara Naofumi, Hasebe Naoyuki , Immortalized multipotent pericytes derived from the vasa vasorum in the injured vasculature. A cellular tool for studies of vascular remodeling and regeneration. , Lab Invest, 94 (12) (1340 - 1354) , 2014
英語 :Asanome Akira, Kawabe Jun-ichi, Matsuki Motoki, Kabara Maki, Hira Yoshiki, Bochimoto Hiroki, Yamauchi Atsushi, Aonuma Tatsuya, Takehara Naofumi, Watanabe Tsuyoshi, Hasebe Naoyuki , Nerve growth factor stimulates regeneration of perivascular nerve, and induces the maturation of microvessels around the injured artery. , Biochem Biophys Res Commun, 443 (1) (150 - 155) , 2014
英語 :Yamauchi Atsushi, Kawabe Jun-ichi, Kabara Maki, Matsuki Motoki, Asanome Akira, Aonuma Tatsuya, Ohta Hisanobu, Takehara Naofumi, Kitagawa Taku, Hasebe Naoyuki , Apurinic/apyrimidinic endonucelase 1 maintains adhesion of endothelial progenitor cells and reduces neointima formation. , Am J Physiol Heart Circ Physiol, 305 (8) (H1158 - H1167) , 2013
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