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Journal of Diabetes Investigation|May 21, 2014
Sensory and motor physiological functions are impaired in gastric inhibitory polypeptide receptor-deficient miceTetsuji Okawa, Hideki Kamiya, Tatsuhito Himeno, et al.
Obesity (Silver Spring, Md.)|June 28, 2013
The role of S100B in the interaction between adipocytes and macrophagesAtsushi Fujiya, Hiroshi Nagasaki, Yusuke Seino, et al.
Journal of Diabetes Investigation|March 25, 2015
Therapeutic efficacy of bone marrow-derived mononuclear cells in diabetic polyneuropathy is impaired with aging or diabetesMasaki Kondo, Hideki Kamiya, Tatsuhito Himeno, et al.
Journal of Diabetes and Its Complications|July 17, 2014
Mesenchymal stem cells ameliorate impaired wound healing through enhancing keratinocyte functions in diabetic foot ulcerations on the plantar skin of ratsJiro Kato, Hideki Kamiya, Tatsuhito Himeno, et al.
Biomed Research International|December 10, 2013
Mesenchymal stem cell-like cells derived from mouse induced pluripotent stem cells ameliorate diabetic polyneuropathy in miceTatsuhito Himeno, Hideki Kamiya, Keiko Naruse, et al.
Journal of Diabetes Research|May 16, 2015
Angioblast Derived from ES Cells Construct Blood Vessels and Ameliorate Diabetic Polyneuropathy in MiceTatsuhito Himeno, Hideki Kamiya, Keiko Naruse, et al.
Diabetes|August 4, 2011
Beneficial effects of exendin-4 on experimental polyneuropathy in diabetic miceTatsuhito Himeno, Hideki Kamiya, Keiko Naruse, et al.
Cell Transplantation|October 12, 2012
Transplantation of neural crest-like cells derived from induced pluripotent stem cells improves diabetic polyneuropathy in miceTetsuji Okawa, Hideki Kamiya, Tatsuhito Himeno, et al.
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