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Development of Transplantable Corneal Epithelium Fabricated with Cell Sheet Engineering

Development of Transplantable Corneal Epithelium Fabricated with Cell Sheet Engineering
利用细胞片工程制造的可移植角膜上皮的开发
批准号:
13558119
负责人:
YAMATO Masayuki
金额:
$4.42万
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (B)
财政年份:
2001
资助国家:
日本
项目状态:
已结题
起止时间:
2001 至 2003

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中文摘要
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英文摘要
Limbal stem-cell deficiency by ocular trauma or diseases causes corneal opacification and visual loss. Recent attempts have been made to fabricate corneal epithelial graft constructs, but the technology is still evolving. We have developed a novel cell-sheet manipulation technology using temperature-responsive culture surfaces to generate functional, cultivated corneal epithelial cell sheet grafts. Human or rabbit limbal stem cells were cocultured with mitomycin C-treated 3T3 feeder layers on temperature-responsive culture dishes at 37℃. Cell sheets were harvested from the dishes after 2 weeks by reducing temperature to 20℃. Histologic analyzes, immunoblotting, and colony-forming assay were performed to characterize the cell sheets. Autologous transplantation was undertaken to reconstruct the corneal surfaces of rabbits with experimentally induced limbal stem cell deficiencies. Multilayered corneal epithelial sheets were harvested intact simply by reducing the temperature, without the use of proteases. Cell-cell junctions and extracellular matrix on the basal side of the sheet, critical to sheet integrity and function, remained intact. A viable population of corneal progenitor cells, close in number to that originally seeded, was found in the sheets. Harvested sheets were easily manipulated, transplantable without any carriers, and readily adhesive to corneal stroma so that suturing was not required. Corneal surface reconstruction in rabbits was highly successful. Cell sheet engineering technology allows us to create intact, transplantable corneal epithelial cell sheets that retain stem cells from limbal stem cells expanded ex vivo. Our research indicates highly promising clinical capabilities for our bioengineered corneal epithelial sheet.
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会议论文
M.Harimoto, M.Yamato, A.Kikuchi, T.Okano: "Cell Sheet Engineering : Intelligent Polymer Patterned Surfaces for Tissue Engineered Liver"Macromol.Symoosia. 195. 231-235 (2003)
M.Harimoto、M.Yamato、A.Kikuchi、T.Okano:“细胞片工程:用于组织工程肝脏的智能聚合物图案化表面”Macromol.Symoosia。
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通讯作者:
T.Shimizu, M.Yamato, T.Akutsu, T.Shibata, Y.Isoi, A.Kikuchi, M.Umezu: "Electrically communicating three-dimensional cardiac tissue mimic fabricated by layered cultured cardiomyocyte sheets"J.Biomed.Mater.Res.. 60. 110-117 (2002)
T.Shimizu、M.Yamato、T.Akutsu、T.Shibata、Y.Isoi、A.Kikuchi、M.Umezu:“通过分层培养心肌细胞片制造的电通信三维心脏组织模拟物”J.Biomed.Mater。
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Masayuki Yamato: "Thermo-Responsive Culture Dishes Allow the Intact Recovery of Multilayered Keratinocyte Sheets without Dispase by Only Reducing Temperature"Tissue Enngineering. 7. 473-480 (2001)
Masayuki Yamato:“热敏培养皿只需降低温度即可完整恢复多层角质形成细胞片,无需分散”组织工程。
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M.Yamato, C.Konnno, S.Koike, T.Shimizu, A.Kikuchi, K.Makino, T.Okano: "Nanofabrication for micropatterned cell arrays by combining electron beam irradiated polymer-grafting and localized laser ablations"J.Biomed.Mater.Res.. 67A. 1065-1071 (2003)
M.Yamato、C.Konnno、S.Koike、T.Shimizu、A.Kikuchi、K.Makino、T.Okano:“通过结合电子束照射聚合物接枝和局部激光烧蚀进行微图案化细胞阵列的纳米加工”J.Biomed
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20
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