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Koichi Sato

Koichi Sato

D-Index & Metrics

Biology and Biochemistry

D-Index
59
Citations
11633
World Ranking
12622
National Ranking
864

Overview

Koichi Sato is affiliated with Gunma University in Japan and has contributed extensively to research across multiple disciplines, primarily medicine and biochemistry, genetics, and molecular biology. Their scholarly output encompasses 116 publications in medicine and 54 in biochemistry, genetics, and molecular biology, reflecting a broad range of scientific inquiry.

Their work spans significant subfields such as molecular biology, cardiology and cardiovascular medicine, surgery, radiology, nuclear medicine and imaging, and electrical and electronic engineering. This multidisciplinary approach is further illustrated by the main research topics Koichi Sato has engaged in, including cardiac imaging and diagnostics, semiconductor lasers and optical devices, semiconductor quantum structures and devices, risk and safety analysis, combustion and detonation processes, sphingolipid metabolism and signaling, and autism spectrum disorder research.

Koichi Sato's research has been published in several recurrent venues. Frequent publication outlets include the International Journal of Hydrogen Energy, Scientific Reports, Journal of Cardiology Cases, Journal of the American Society of Nephrology, and IJC Heart & Vasculature. This range spans both basic and applied sciences, highlighting the scientist's diverse research interests.

Recent notable publications include:

  • "Quantitative risk assessment using a Japanese hydrogen refueling station model," 2020, International Journal of Hydrogen Energy
  • "Intestinal Bacterial Translocation Contributes to Diabetic Kidney Disease," 2022, Journal of the American Society of Nephrology
  • "Protective effect of d-alanine against acute kidney injury," 2022, American Journal of Physiology-Renal Physiology
  • "The protective role of proton-sensing TDAG8 in the brain injury in a mouse ischemia reperfusion model," 2020, Scientific Reports
  • "Quantitative risk assessment of a hydrogen refueling station by using a dynamic physical model based on multi-physics system-level modeling," 2021, International Journal of Hydrogen Energy

Collaboration is a significant element of Koichi Sato's research activities. Frequent co-authors include Hisayuki Ogura, Yasunori Iwata, Shinji Kitajima, Tadashi Toyama, and Taro Miyagawa, each having worked closely on multiple projects. These partnerships suggest interdisciplinary cooperation particularly in areas linking medicine, molecular biology, and applied physics.

Best Publications

  • Interaction of sphingosine 1-phosphate with plasma components, including lipoproteins, regulates the lipid receptor-mediated actions.

    Naoya Murata;Koichi Sato;Junko Kon;Hideaki Tomura

  • Reactive astrocytes function as phagocytes after brain ischemia via ABCA1-mediated pathway

    Yosuke M. Morizawa;Yosuke M. Morizawa;Yuri Hirayama;Noubuhiko Ohno;Shinsuke Shibata

  • Ki16425, a Subtype-Selective Antagonist for EDG-Family Lysophosphatidic Acid Receptors

    Hideo Ohta;Koichi Sato;Naoya Murata;Alatangaole Damirin

  • Sphingosine 1-Phosphate May Be a Major Component of Plasma Lipoproteins Responsible for the Cytoprotective Actions in Human Umbilical Vein Endothelial Cells

    Takao Kimura;Koichi Sato;Atsushi Kuwabara;Hideaki Tomura

  • Comparison of Intrinsic Activities of the Putative Sphingosine 1-Phosphate Receptor Subtypes to Regulate Several Signaling Pathways in Their cDNA-transfected Chinese Hamster Ovary Cells

    Junko Kon;Koichi Sato;Tomoko Watanabe;Hideaki Tomura

  • TTF-2, a new forkhead protein, shows a temporal expression in the developing thyroid which is consistent with a role in controlling the onset of differentiation

    M. Zannini;V. Avantaggiato;E. Biffali;M.I. Arnone

  • TDAG8 Is a Proton-sensing and Psychosine-sensitive G-protein-coupled Receptor

    Ju-Qiang Wang;Junko Kon;Chihiro Mogi;Masayuki Tobo

  • Sphingosine 1-phosphate stimulates proliferation and migration of human endothelial cells possibly through the lipid receptors, Edg-1 and Edg-3.

    Takao Kimura;Tomoko Watanabe;Koichi Sato;Junko Kon

  • High-Density Lipoprotein Stimulates Endothelial Cell Migration and Survival Through Sphingosine 1-Phosphate and Its Receptors

    Takao Kimura;Koichi Sato;Enkhzol Malchinkhuu;Hideaki Tomura

  • Role of scavenger receptor class B type I and sphingosine 1-phosphate receptors in high density lipoprotein-induced inhibition of adhesion molecule expression in endothelial cells.

    Takao Kimura;Hideaki Tomura;Chihiro Mogi;Atsushi Kuwabara

  • Proton-sensing and lysolipid-sensitive G-protein-coupled receptors: a novel type of multi-functional receptors.

    Hideaki Tomura;Chihiro Mogi;Koichi Sato;Fumikazu Okajima

  • Critical role of ABCA1 transporter in sphingosine 1-phosphate release from astrocytes.

    Koichi Sato;Enkhzol Malchinkhuu;Yuta Horiuchi;Chihiro Mogi

  • Lysophosphatidic Acid (LPA) in Malignant Ascites Stimulates Motility of Human Pancreatic Cancer Cells through LPA1

    Takayuki Yamada;Koichi Sato;Mayumi Komachi;Enkhzol Malchinkhuu

  • Edg-6 as a putative sphingosine 1-phosphate receptor coupling to Ca(2+) signaling pathway.

    Yuji Yamazaki;Junko Kon;Koichi Sato;Hideaki Tomura

  • Involvement of proton-sensing TDAG8 in extracellular acidification-induced inhibition of proinflammatory cytokine production in peritoneal macrophages.

    Chihiro Mogi;Masayuki Tobo;Hideaki Tomura;Naoya Murata

  • Quantitative measurement of sphingosine 1-phosphate by radioreceptor-binding assay.

    Naoya Murata;Koichi Sato;Junko Kon;Hideaki Tomura

  • Extracellular mechanism through the Edg family of receptors might be responsible for sphingosine-1-phosphate-induced regulation of DNA synthesis and migration of rat aortic smooth-muscle cells

    Ken-ichi Tamama;Junko Kon;Koichi Sato;Hideaki Tomura

  • A permissive role of pertussis toxin substrate G-protein in P2-purinergic stimulation of phosphoinositide turnover and arachidonate release in FRTL-5 thyroid cells. Cooperative mechanism of signal transduction systems.

    F Okajima;K Sato;M Nazarea;K Sho

  • Prostaglandin I2 Production and cAMP Accumulation in Response to Acidic Extracellular pH through OGR1 in Human Aortic Smooth Muscle Cells

    Hideaki Tomura;Ju-Qiang Wang;Mayumi Komachi;Alatangaole Damirin

  • Previously postulated "ligand-independent" signaling of GPR4 is mediated through proton-sensing mechanisms.

    Masayuki Tobo;Hideaki Tomura;Chihiro Mogi;Ju Qiang Wang

Frequent Co-Authors

Fumikazu Okajima
Fumikazu Okajima Aomori University
Hideaki Tomura
Hideaki Tomura Meiji University
Hitoshi Kurose
Hitoshi Kurose University of Tokushima
Michio Ui
Michio Ui Tokyo Metropolitan Institute of Medical Science
Satoshi Ishii
Satoshi Ishii Akita University
Hae Young Chung
Hae Young Chung Pusan National University
Hiroshi Nishina
Hiroshi Nishina Tokyo Medical and Dental University
Norihiko Misawa
Norihiko Misawa Ishikawa Prefectural University
Junichi Nabekura
Junichi Nabekura National Institutes of Natural Sciences
Antonio Simeone
Antonio Simeone King's College London

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