World's Best Scientists 2026 revealed!
Tomomi Gotoh

Tomomi Gotoh

D-Index & Metrics

Molecular Biology

D-Index
51
Citations
10419
World Ranking
2500
National Ranking
186

Overview

Tomomi Gotoh is affiliated with Kumamoto University in Japan and specializes in research within health professions and biochemistry, genetics, and molecular biology. Their work spans multiple subfields, including general health professions, biophysics, insect science, and molecular biology.

Gotoh's research focuses on diverse topics such as geriatric care and nursing homes, workplace health and well-being, nursing roles and practices, spectroscopy techniques in biomedical and chemical research, bee products chemical analysis, and planarian biology and electrostimulation.

The scientist has published articles in notable venues, including:

  • JBI Evidence Synthesis
  • The Indonesian Biomedical Journal

Recent papers authored or coauthored by Gotoh include:

  • "Experiences and attitudes of task-shifting and task-sharing of physicians, nurses, and nursing assistants in hospitals: a qualitative systematic review protocol," published in 2023 in JBI Evidence Synthesis
  • "Electric Field Stimulation of Stem Cell Culture Media Increases Oxygen Radical Uptake Capacity," published in 2023 in The Indonesian Biomedical Journal

Frequent collaborators in Gotoh's research include:

  • Masatoshi Saiki
  • Gaku Nishimiya
  • Kazuhito Hirota
  • Ikuko Sakai
  • Maki Yoshikawa

Gotoh's publications explore health professions at various levels, with particular attention paid to nursing roles, hospital workforce dynamics, and biomedical techniques such as spectroscopy and stimulation methods affecting cellular behavior. This multidisciplinary approach bridges clinical health sciences and molecular biology techniques.

Best Publications

  • ER Stress Triggers Apoptosis by Activating BH3-Only Protein Bim

    Hamsa Puthalakath;Lorraine A. O'Reilly;Priscilla Gunn;Lily Lee

  • Targeted disruption of the Chop gene delays endoplasmic reticulum stress–mediated diabetes

    Seiichi Oyadomari;Akio Koizumi;Kiyoshi Takeda;Tomomi Gotoh

  • Ischemia-induced neuronal cell death is mediated by the endoplasmic reticulum stress pathway involving CHOP

    S. Tajiri;S. Oyadomari;S. Yano;M. Morioka

  • hsp70-DnaJ chaperone pair prevents nitric oxide- and CHOP-induced apoptosis by inhibiting translocation of Bax to mitochondria

    Tomomi Gotoh;K. Terada;S. Oyadomari;M. Mori

  • Arginase II Downregulates Nitric Oxide (NO) Production and Prevents NO-mediated Apoptosis in Murine Macrophage-derived RAW 264.7 Cells

    Tomomi Gotoh;Masataka Mori

  • Coinduction of Nitric-oxide Synthase and Arginase I in Cultured Rat Peritoneal Macrophages and Rat Tissues in Vivo by Lipopolysaccharide

    Takashi Sonoki;Akitoshi Nagasaki;Tomomi Gotoh;Masaki Takiguchi

  • C/EBP homologous protein (CHOP) is crucial for the induction of caspase-11 and the pathogenesis of lipopolysaccharide-induced inflammation.

    Motoyoshi Endo;Masataka Mori;Shizuo Akira;Tomomi Gotoh

  • The Endoplasmic Reticulum Stress-C/EBP Homologous Protein Pathway-Mediated Apoptosis in Macrophages Contributes to the Instability of Atherosclerotic Plaques

    Hiroto Tsukano;Tomomi Gotoh;Motoyoshi Endo;Keishi Miyata

  • Arginine Metabolic Enzymes, Nitric Oxide and Infection

    Masataka Mori;Tomomi Gotoh

  • Mitochondrial Dysfunction and Increased Reactive Oxygen Species Impair Insulin Secretion in Sphingomyelin Synthase 1-null Mice

    Masato Yano;Ken Watanabe;Tadashi Yamamoto;Kazutaka Ikeda

  • Coinduction of Nitric Oxide Synthase, Argininosuccinate Synthetase, and Argininosuccinate Lyase in Lipopolysaccharide-treated Rats: RNA BLOT, IMMUNOBLOT, AND IMMUNOHISTOCHEMICAL ANALYSES

    Akitoshi Nagasaki;Tomomi Gotoh;Motohiro Takeya;Yingjie Yu

  • L-arginine uptake, the citrulline-NO cycle and arginase II in the rat brain: an in situ hybridization study.

    Olivier Braissant;Tomomi Gotoh;Marc Loup;Masataka Mori

  • Distinct arginase isoforms expressed in primary and transformed macrophages: regulation by oxygen tension

    Claudine A. Louis;Jonathan S. Reichner;William L. Henry;Balduino Mastrofrancesco

  • Regulation of the genes for arginase isoforms and related enzymes in mouse macrophages by lipopolysaccharide

    Salimuddin;Akitoshi Nagasaki;Tomomi Gotoh;Hirotaka Isobe

  • Positive role of CCAAT/enhancer-binding protein homologous protein, a transcription factor involved in the endoplasmic reticulum stress response in the development of colitis

    Takushi Namba;Ken Ichiro Tanaka;Yosuke Ito;Tomoaki Ishihara

  • The glucocorticoid-responsive gene cascade: Activation of the rat arginase gene through induction of C/EBPβ

    Tomomi Gotoh;Shoaib Chowdhury;Masaki Takiguchi;Masataka Mori

  • CCAAT/Enhancer-Binding Protein Homologous Protein (CHOP) Regulates Osteoblast Differentiation

    Ken Shirakawa;Shingo Maeda;Tomomi Gotoh;Makoto Hayashi

  • Chromosomal localization of the human arginase II gene and tissue distribution of its mRNA.

    Tomomi Gotoh;Masatake Araki;Masataka Mori

  • Induction of the C/EBP beta gene by dexamethasone and glucagon in primary-cultured rat hepatocytes.

    Fumihiko Matsuno;Shoaib Chowdhury;Tomomi Gotoh;Katsuro Iwase

  • Effects of arginase isoforms on NO Production by nNOS.

    Loretta G. Que;Samuel E. George;Tomomi Gotoh;Masataka Mori

Frequent Co-Authors

Masataka Mori
Masataka Mori Kumamoto University
Masaki Takiguchi
Masaki Takiguchi Chiba University
Motohiro Takeya
Motohiro Takeya Kumamoto Health Science University
Yuichi Oike
Yuichi Oike Kumamoto University
Kiyoshi Takatsuki
Kiyoshi Takatsuki Kumamoto University
Shizuo Akira
Shizuo Akira Osaka University
Jorge E. Albina
Jorge E. Albina Brown University
Jonathan S. Reichner
Jonathan S. Reichner Brown University
Takaaki Akaike
Takaaki Akaike Tohoku University
Shinichi Kohsaka
Shinichi Kohsaka Keio University

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