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American Journal of Physiology. Gastrointestinal and Liver Physiology|September 1, 2007
Externally applied pressure activates pancreatic stellate cells through the generation of intracellular reactive oxygen speciesHiroshi Asaumi, Shiro Watanabe, Masashi Taguchi, et al.Journal of UOEH|March 15, 2016
[A Case of Acute Superior Mesenteric Artery Occlusion Rescued by Thrombus Aspiration without Bowel Resection]Yoshinori Inamasu, Hiroshi Asaumi, Tatsuyuki Watanabe, et al.Pancreas|October 14, 2009
Overexpression of Smad6 exacerbates pancreatic fibrosis in murine caerulein-induced chronic pancreatic injuriesTamao Miyamoto, Hayato Nakamura, Yoshikuni Nagashio, et al.American Journal of Physiology. Gastrointestinal and Liver Physiology|March 16, 2004
Angiotensin II type 1 receptor interaction is an important regulator for the development of pancreatic fibrosis in miceYoshikuni Nagashio, Hiroshi Asaumi, Shiro Watanabe, et al.Pancreas|April 7, 2007
High glucose activates rat pancreatic stellate cells through protein kinase C and p38 mitogen-activated protein kinase pathwayYoko Nomiyama, Mitsuo Tashiro, Taizo Yamaguchi, et al.Laboratory Investigation; a Journal of Technical Methods and Pathology|October 27, 2004
Inhibition of transforming growth factor beta decreases pancreatic fibrosis and protects the pancreas against chronic injury in miceYoshikuni Nagashio, Hikaru Ueno, Michio Imamura, et al.Pancreas|December 20, 2007
Preferential increase of extracellular matrix expression relative to transforming growth factor beta1 in the pancreas during the early stage of acute hemorrhagic pancreatitis in ratsHayato Nakamura, Mitsuo Tashiro, Taizo Yamaguchi, et al.American Journal of Physiology. Gastrointestinal and Liver Physiology|August 21, 2004
Pressure activates rat pancreatic stellate cellsShiro Watanabe, Yoshikuni Nagashio, Hiroshi Asaumi, et al.Pageof 1