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Gan to Kagaku Ryoho. Cancer & Chemotherapy
|
April 19, 2014
[A case of Stage IV sigmoid colon cancer that achieved long-term survival with oral anticancer drugs]
Yako Hasegawa, Hideyuki Iwata, Masayuki Hatanaka
Journal of Diabetes Research
|
February 8, 2017
Interorgan Crosstalk Contributing to <i>β</i>-Cell Dysfunction
Katsuya Tanabe, Kikuko Amo-Shiinoki, Masayuki Hatanaka, et al.
Nihon Rinsho. Japanese Journal of Clinical Medicine
|
March 14, 2015
[Wolfram syndrome: clinical features, molecular genetics of WFS1 gene]
Katsuya Tanabe, Kimie Matsunaga, Masayuki Hatanaka, et al.
Molecular Endocrinology (Baltimore, Md.)
|
September 25, 2014
Maintenance of Pdx1 mRNA translation in islet β-cells during the unfolded protein response
Andrew T Templin, Bernhard Maier, Sarah A Tersey, et al.
Molecular Endocrinology (Baltimore, Md.)
|
December 20, 2012
Translational control of inducible nitric oxide synthase by p38 MAPK in islet β-cells
Yurika Nishiki, Adeola Adewola, Masayuki Hatanaka, et al.
Biochemical and Biophysical Research Communications
|
May 5, 2009
DOC2b is a SNARE regulator of glucose-stimulated delayed insulin secretion
Mutsuko Miyazaki, Masahiro Emoto, Naofumi Fukuda, et al.
Leukemia Research
|
February 25, 2009
The anti-apoptotic role of the unfolded protein response in Bcr-Abl-positive leukemia cells
Atsuko Tanimura, Toshiaki Yujiri, Yoshinori Tanaka, et al.
Human Molecular Genetics
|
January 5, 2011
Wolfram syndrome 1 gene (WFS1) product localizes to secretory granules and determines granule acidification in pancreatic beta-cells
Masayuki Hatanaka, Katsuya Tanabe, Akie Yanai, 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 syndrome
Manabu Kondo, Katsuya Tanabe, Kikuko Amo-Shiinoki, et al.
Diabetes
|
May 20, 2014
Palmitate induces mRNA translation and increases ER protein load in islet β-cells via activation of the mammalian target of rapamycin pathway
Masayuki Hatanaka, Bernhard Maier, Emily K Sims, et al.
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Search research articles
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Showing results (1-10 of 19) with videos related to
Sort By:
Page
of 2
Gan to Kagaku Ryoho. Cancer & Chemotherapy
|
April 19, 2014
[A case of Stage IV sigmoid colon cancer that achieved long-term survival with oral anticancer drugs]
Yako Hasegawa, Hideyuki Iwata, Masayuki Hatanaka
Journal of Diabetes Research
|
February 8, 2017
Interorgan Crosstalk Contributing to <i>β</i>-Cell Dysfunction
Katsuya Tanabe, Kikuko Amo-Shiinoki, Masayuki Hatanaka, et al.
Nihon Rinsho. Japanese Journal of Clinical Medicine
|
March 14, 2015
[Wolfram syndrome: clinical features, molecular genetics of WFS1 gene]
Katsuya Tanabe, Kimie Matsunaga, Masayuki Hatanaka, et al.
Molecular Endocrinology (Baltimore, Md.)
|
September 25, 2014
Maintenance of Pdx1 mRNA translation in islet β-cells during the unfolded protein response
Andrew T Templin, Bernhard Maier, Sarah A Tersey, et al.
Molecular Endocrinology (Baltimore, Md.)
|
December 20, 2012
Translational control of inducible nitric oxide synthase by p38 MAPK in islet β-cells
Yurika Nishiki, Adeola Adewola, Masayuki Hatanaka, et al.
Biochemical and Biophysical Research Communications
|
May 5, 2009
DOC2b is a SNARE regulator of glucose-stimulated delayed insulin secretion
Mutsuko Miyazaki, Masahiro Emoto, Naofumi Fukuda, et al.
Leukemia Research
|
February 25, 2009
The anti-apoptotic role of the unfolded protein response in Bcr-Abl-positive leukemia cells
Atsuko Tanimura, Toshiaki Yujiri, Yoshinori Tanaka, et al.
Human Molecular Genetics
|
January 5, 2011
Wolfram syndrome 1 gene (WFS1) product localizes to secretory granules and determines granule acidification in pancreatic beta-cells
Masayuki Hatanaka, Katsuya Tanabe, Akie Yanai, 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 syndrome
Manabu Kondo, Katsuya Tanabe, Kikuko Amo-Shiinoki, et al.
Diabetes
|
May 20, 2014
Palmitate induces mRNA translation and increases ER protein load in islet β-cells via activation of the mammalian target of rapamycin pathway
Masayuki Hatanaka, Bernhard Maier, Emily K Sims, et al.
Page
of 2