RRC ID 37024
著者 Himeno T, Kamiya H, Naruse K, Cheng Z, Ito S, Shibata T, Kondo M, Kato J, Okawa T, Fujiya A, Suzuki H, Kito T, Hamada Y, Oiso Y, Isobe K, Nakamura J.
タイトル Angioblast Derived from ES Cells Construct Blood Vessels and Ameliorate Diabetic Polyneuropathy in Mice.
ジャーナル J Diabetes Res
Abstract BACKGROUND:Although numerous reports addressing pathological involvements of diabetic polyneuropathy have been conducted, a universally effective treatment of diabetic polyneuropathy has not yet been established. Recently, regenerative medicine studies in diabetic polyneuropathy using somatic stem/progenitor cell have been reported. However, the effectiveness of these cell transplantations was restricted because of their functional and numerical impairment in diabetic objects. Here, we investigated the efficacy of treatment for diabetic polyneuropathy using angioblast-like cells derived from mouse embryonic stem cells.
METHODS AND RESULTS:Angioblast-like cells were obtained from mouse embryonic stem cells and transplantation of these cells improved several physiological impairments in diabetic polyneuropathy: hypoalgesia, delayed nerve conduction velocities, and reduced blood flow in sciatic nerve and plantar skin. Furthermore, pathologically, the capillary number to muscle fiber ratios were increased in skeletal muscles of transplanted hindlimbs, and intraepidermal nerve fiber densities were ameliorated in transplanted plantar skin. Transplanted cells maintained their viabilities and differentiated to endothelial cells and smooth muscle cells around the injection sites. Moreover, several transplanted cells constructed chimeric blood vessels with recipient cells.
CONCLUSIONS:These results suggest that transplantation of angioblast like cells induced from embryonic stem cells appears to be a novel therapeutic strategy for diabetic polyneuropathy.
巻・号 2015
ページ 257230
公開日 2015-1-1
DOI 10.1155/2015/257230
PMID 25977928
PMC PMC4419216
MeSH Animals Blood Vessels / cytology* Cell Differentiation* Diabetes Mellitus, Experimental / physiopathology Diabetic Neuropathies / physiopathology Diabetic Neuropathies / therapy* Embryonic Stem Cells Male Mice Neural Conduction / physiology Sciatic Nerve / physiopathology Stem Cell Transplantation / methods*
IF 2.965
引用数 7
リソース情報
ヒト・動物細胞 BRC6(AES0010) MC3T3-G2/PA6(RCB1127)