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Kikuko Amo-Shiinoki

Showing results (1-10 of 9) with videos related to

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Journal of Diabetes Research|February 8, 2017
Interorgan Crosstalk Contributing to <i>β</i>-Cell DysfunctionKatsuya Tanabe, Kikuko Amo-Shiinoki, Masayuki Hatanaka, et al.
Diabetologia|July 29, 2018
Activation of GLP-1 receptor signalling alleviates cellular stresses and improves beta cell function in a mouse model of Wolfram syndromeManabu Kondo, Katsuya Tanabe, Kikuko Amo-Shiinoki, et al.
Diabetologia|October 4, 2016
Sequential cleavage of insulin receptor by calpain 2 and γ-secretase impairs insulin signallingTomoyuki Yuasa, Kikuko Amo-Shiinoki, Shuhei Ishikura, et al.
International Journal of Molecular Sciences|November 11, 2022
Gsk-3-Mediated Proteasomal Degradation of ATF4 Is a Proapoptotic Mechanism in Mouse Pancreatic β-CellsYuko Nagao, Kikuko Amo-Shiinoki, Hiroko Nakabayashi, et al.
The Journal of Biological Chemistry|February 13, 2025
Txnip deficiency causes a susceptibility to acute cold stress with brown fat dysfunction in miceMeng Zou, Katsuya Tanabe, Kikuko Amo-Shiinoki, et al.
Science Translational Medicine|February 19, 2025
β cell dedifferentiation, the underlying mechanism of diabetes in Wolfram syndromeKikuko Amo-Shiinoki, Katsuya Tanabe, Wataru Nishimura, et al.
Diabetes Care|February 25, 2021
Importance of Intestinal Environment and Cellular Plasticity of Islets in the Development of Postpancreatectomy DiabetesTatsuya Fukuda, Ryotaro Bouchi, Takato Takeuchi, et al.
Frontiers in Pharmacology|May 30, 2023
Hachimijiogan, a traditional herbal medicine, modulates adipose cell function and ameliorates diet-induced obesity and insulin resistance in miceSyota Kagawa, Katsuya Tanabe, Makoto Hiromura, et al.
JCI Insight|January 11, 2021
Islet cell dedifferentiation is a pathologic mechanism of long-standing progression of type 2 diabetesKikuko Amo-Shiinoki, Katsuya Tanabe, Yoshinobu Hoshii, et al.
Pageof 1

Showing results (1-10 of 9) with videos related to

Sort By:
Pageof 1
Journal of Diabetes Research|February 8, 2017
Interorgan Crosstalk Contributing to <i>β</i>-Cell DysfunctionKatsuya Tanabe, Kikuko Amo-Shiinoki, Masayuki Hatanaka, et al.
Diabetologia|July 29, 2018
Activation of GLP-1 receptor signalling alleviates cellular stresses and improves beta cell function in a mouse model of Wolfram syndromeManabu Kondo, Katsuya Tanabe, Kikuko Amo-Shiinoki, et al.
Diabetologia|October 4, 2016
Sequential cleavage of insulin receptor by calpain 2 and γ-secretase impairs insulin signallingTomoyuki Yuasa, Kikuko Amo-Shiinoki, Shuhei Ishikura, et al.
International Journal of Molecular Sciences|November 11, 2022
Gsk-3-Mediated Proteasomal Degradation of ATF4 Is a Proapoptotic Mechanism in Mouse Pancreatic β-CellsYuko Nagao, Kikuko Amo-Shiinoki, Hiroko Nakabayashi, et al.
The Journal of Biological Chemistry|February 13, 2025
Txnip deficiency causes a susceptibility to acute cold stress with brown fat dysfunction in miceMeng Zou, Katsuya Tanabe, Kikuko Amo-Shiinoki, et al.
Science Translational Medicine|February 19, 2025
β cell dedifferentiation, the underlying mechanism of diabetes in Wolfram syndromeKikuko Amo-Shiinoki, Katsuya Tanabe, Wataru Nishimura, et al.
Diabetes Care|February 25, 2021
Importance of Intestinal Environment and Cellular Plasticity of Islets in the Development of Postpancreatectomy DiabetesTatsuya Fukuda, Ryotaro Bouchi, Takato Takeuchi, et al.
Frontiers in Pharmacology|May 30, 2023
Hachimijiogan, a traditional herbal medicine, modulates adipose cell function and ameliorates diet-induced obesity and insulin resistance in miceSyota Kagawa, Katsuya Tanabe, Makoto Hiromura, et al.
JCI Insight|January 11, 2021
Islet cell dedifferentiation is a pathologic mechanism of long-standing progression of type 2 diabetesKikuko Amo-Shiinoki, Katsuya Tanabe, Yoshinobu Hoshii, et al.
Pageof 1