Eiichiro Nishi
Shiga University of Medical Science
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Publication
Featured researches published by Eiichiro Nishi.
Cell | 2018
Yukitaka Ito; Sou Nakamura; Naoshi Sugimoto; Tomohiro Shigemori; Yoshikazu Kato; Mikiko Ohno; Shinya Sakuma; Keitaro Ito; Hiroki Kumon; Hidenori Hirose; Haruki Okamoto; Masayuki Nogawa; Mio Iwasaki; Shunsuke Kihara; Kosuke Fujio; Takuya Matsumoto; Natsumi Higashi; Kazuya Hashimoto; Akira Sawaguchi; Ken-ichi Harimoto; Masato Nakagawa; Takuya Yamamoto; Makoto Handa; Naohide Watanabe; Eiichiro Nishi; Fumihito Arai; Satoshi Nishimura; Koji Eto
The exxa0vivo generation of platelets from human-induced pluripotent cells (hiPSCs) is expected to compensate donor-dependent transfusion systems. However, manufacturing the clinically required number of platelets remains unachieved due to the low platelet release from hiPSC-derived megakaryocytes (hiPSC-MKs). Here, we report turbulence as a physical regulator in thrombopoiesis inxa0vivo and its application to turbulence-controllable bioreactors. The identification of turbulent energy as a determinant parameter allowed scale-up to 8xa0L for the generation of 100 billion-order platelets from hiPSC-MKs, which satisfies clinical requirements. Turbulent flow promoted the release from megakaryocytes of IGFBP2, MIF, and Nardilysin to facilitate platelet shedding. hiPSC-platelets showed properties of bona fide human platelets, including circulation and hemostasis capacities upon transfusion in two animal models. This study provides a concept in which a coordinated physico-chemical mechanism promotes platelet biogenesis and an innovative strategy for exxa0vivo platelet manufacturing.
Gut | 2018
Kozo Ikuta; Akihisa Fukuda; Satoshi Ogawa; Kenji Masuo; Norihiro Goto; Yukiko Hiramatsu; Motoyuki Tsuda; Yoshito Kimura; Yoshihide Matsumoto; Yuto Kimura; Takahisa Maruno; Keitaro Kanda; Kiyoto Nishi; Kyoichi Takaori; Shinji Uemoto; Shigeo Takaishi; Tsutomu Chiba; Eiichiro Nishi; Hiroshi Seno
Objective Nardilysin (NRDC), a zinc peptidase, exhibits multiple localisation-dependent functions including as an enhancer of ectodomain shedding in the extracellular space and a transcriptional coregulator in the nucleus. In this study, we investigated its functional role in exocrine pancreatic development, homeostasis and the formation of pancreatic ductal adenocarcinoma (PDA). Design We analysed Ptf1a-Cre; Nrdcflox/flox mice to investigate the impact of Nrdc deletion. Pancreatic acinar cells were isolated from Nrdcflox/flox mice and infected with adenovirus expressing Cre recombinase to examine the impact of Nrdc inactivation. Global gene expression in Nrdc-cKO pancreas was analysed compared with wild-type pancreas by microarray analysis. We also analysed Ptf1a-Cre; KrasG12D; Nrdcflox/flox mice to investigate the impact of Nrdc deletion in the context of oncogenic Kras. A total of 51 human samples of pancreatic intraepithelial lesions (PanIN) and PDA were examined by immunohistochemistry for NRDC. Results We found that pancreatic deletion of Nrdc leads to spontaneous chronic pancreatitis concomitant with acinar-to-ductal conversion, increased apoptosis and atrophic pancreas in mice. Acinar-to-ductal conversion was observed mainly through a non-cell autonomous mechanism, and the expression of several chemokines was significantly increased in Nrdc-null pancreatic acinar cells. Furthermore, pancreatic deletion of Nrdc dramatically accelerated KrasG12D -driven PanIN and subsequent PDA formation in mice. These data demonstrate a previously unappreciated anti-inflammatory and tumour suppressive functions of Nrdc in the pancreas in mice. Finally, absence of NRDC expression was observed in a subset of human PanIN and PDA. Conclusion Nrdc inhibits pancreatitis and suppresses PDA initiation in mice.
Scientific Reports | 2017
Yusuke Morita; Mikiko Ohno; Kiyoto Nishi; Yoshinori Hiraoka; Sayaka Saijo; Shintaro Matsuda; Toru Kita; Takeshi Kimura; Eiichiro Nishi
Post-translational histone modifications, such as acetylation and methylation, are prerequisites for transcriptional regulation. The metalloendopeptidase nardilysin (Nrdc) is a H3K4me2-binding protein that controls thermoregulation and β-cell functions through its transcriptional coregulator function. We herein combined high-throughput ChIP-seq and RNA-seq to achieve the first genome-wide identification of Nrdc target genes. A ChIP-seq analysis of immortalized mouse embryo fibroblasts (iMEF) identified 4053 Nrdc-binding sites, most of which were located in proximal promoter sites (2587 Nrdc-binding genes). Global H3K4me2 levels at Nrdc-binding promoters slightly increased, while H3K9ac levels decreased in the absence of Nrdc. Among Nrdc-binding genes, a comparative RNA-seq analysis identified 448 candidates for Nrdc target genes, among which cell cycle-related genes were significantly enriched. We confirmed decreased mRNA and H3K9ac levels at the promoters of individual genes in Nrdc-deficient iMEF, which were restored by the ectopic introduction of Nrdc. Reduced mRNA levels, but not H3K9ac levels were fully restored by the reintroduction of the peptidase-dead mutant of Nrdc. Furthermore, Nrdc promoted cell cycle progression at multiple stages, which enhanced cell proliferation in vivo. Collectively, our integrative studies emphasize the importance of Nrdc for maintaining a proper epigenetic status and cell growth.
Ensho | 1995
Noriaki Kume; Hiroshi Ochi; Eiichiro Nishi; Toru Kita
One of the characteristic features of early atherogenesis is focal accumulation of monocyte/macrophages and T lymphocytes in arteral intima. Endothelial expression of adhesion molecules, such as VCAM-1 and ICAM-1, appear to play a role in this process. Lysophosphatidylcholine (lyso-PC), a prominent phospholipid component of atherogenic lipoproteins such as oxidized LDL and β-VLDL, can upregulate expression of VCAM-1 and ICAM-1 in cultured human and rabbit arterial endothelial cells. Lyso-PC also induces endothelial expression of potent smooth muscle growth factors such as PDGF A- and B-chains and HB-EGF in culture.Thus, lyso-PC may be an important stimulus, in atherogenesis, to enhance mononuclear leukocyte recruitment into arterial lesions and to stimulate migration and proliferation of vascular smooth muscle cells in situ.
Clinical Cancer Research | 2018
Tomoaki Yoh; Etsuro Hatano; Yosuke Kasai; Hiroaki Fuji; Kiyoto Nishi; Kan Toriguchi; Hideaki Sueoka; Mikiko Ohno; Satoru Seo; Keiko Iwaisako; Kojiro Taura; Rina Yamaguchi; Masato Kurokawa; Jiro Fujimoto; Takeshi Kimura; Shinji Uemoto; Eiichiro Nishi
The Japanese Biochemical Society/The Molecular Biology Society of Japan | 2017
Yusuke Morita; Mikiko Ohno; Kiyoto Nishi; Sayaka Saijo; Shintaro Matsuda; Takeshi Kimura; Eiichiro Nishi
The Japanese Biochemical Society/The Molecular Biology Society of Japan | 2017
Hirotaka Iwasaki; Takeshi Imamura; Katsutaro Morino; Hidetoshi Sakurai; Mikiko Ohno; Hiroshi Maegawa; Eiichiro Nishi
The Japanese Biochemical Society/The Molecular Biology Society of Japan | 2017
Mikiko Ohno; Kiyoto Nishi; Yoshinori Hiraoka; Shinichiro Niizuma; Sayaka Saijo; Jiro Sakamoto; Po-Min Chen; Yusuke Morita; Shintaro Matsuda; Yoshiko Mukumoto; Hiroshi Kiyonari; Hiroshi Matsuura; Toru Kita; Takeshi Kimura; Eiichiro Nishi
The Japanese Biochemical Society/The Molecular Biology Society of Japan | 2017
Shintaro Matsuda; Kiyoto Nishi; Yusuke Morita; Mikiko Ohno; Takeshi Kimura; Eiichiro Nishi
The Japanese Biochemical Society/The Molecular Biology Society of Japan | 2017
Takaki Hiwasa; Ken-ichiro Goto; Xiao-Meng Zhang; Natsuko Shinmen; Takao Sugiyama; Seiichiro Mine; Eiichiro Nishi; Mikiko Ohno; Minoru Takemoto; Kenichiro Kitamura