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首页> 外文期刊>Investigative ophthalmology & visual science >Rat Limbal Niche Cells Prevent Epithelial Stem/Progenitor Cells From Differentiation and Proliferation by Inhibiting Notch Signaling Pathway In Vitro
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Rat Limbal Niche Cells Prevent Epithelial Stem/Progenitor Cells From Differentiation and Proliferation by Inhibiting Notch Signaling Pathway In Vitro

机译:大鼠肢体小生境细胞通过抑制Notch信号通路体外阻止上皮干细胞/祖细胞的分化和增殖。

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Purpose: Limbal niche cells (LNCs) play a pivotal role in regulating limbal epithelial stem/progenitor cells (LESCs). This study aimed to investigate whether Notch signaling is involved in LNCs' regulation of LESCs. Methods: Rat limbus was digested by dispase and collagenase, respectively. Limbal niche cells were isolated by serial passage of collagenase-digested cells on coated Matrigel in a modified embryonic stem cell medium (MESCM). Dispase-isolated cells, with or without LNCs, were seeded on three-dimensional (3D) Matrigel. The effects of LNCs, Notch inhibition (by N-(N-[3, 5-difluorophenacetyl]-lalanyl)-S-phenylglycine t-butyl ester [DAPT] or Notch1-siRNA) and activation (by Jagged1) on LESCs were analyzed using quantitative RT-PCR, immunostaining, and Western blot. Results: Dispase isolated pan cytokeratin (PCK)+ limbal epithelial cells (LECs). Collagenase isolated subjacent native LNCs, which were purified and expanded with expression of Oct4, Rex1, Sox2, Nanog, SSEA4, N-cadherin, and CD34. Limbal niche cells reunited with p63?±+ LESCs to form clusters and prevented their differentiation on 3D Matrigel. Notch signaling was unactivated in rat corneal and limbal epithelium in vivo, but activated in cultured LECs in vitro. Limbal niche cells inhibited the Notch signaling of LECs in culture. Notch inhibition (by DAPT or Notch1-siRNA) increased p63?± expression and decreased CK12 expression in LECs to the level of LNCs' effects. Notch inhibition by DAPT also decreased Ki67 expression in LECs to the level of LNCs' effects. Conclusions: Rat LNCs prevent LESCs from differentiation and proliferation primarily via inhibiting the Notch signaling in vitro. Manipulating the Notch signaling pathway may help to preserve LESCs for corneal epithelial tissue engineering.
机译:目的:边缘利基细胞(LNC)在调节角膜缘上皮干/祖细胞(LESC)中起关键作用。这项研究旨在调查Notch信号是否参与LNC对LESC的调控。方法:用分散酶和胶原酶分别消化大鼠角膜缘。通过在修饰的胚胎干细胞培养基(MESCM)中将胶原酶消化的细胞在包被的基质胶上连续传代,分离出边缘小生境细胞。将具有或不具有LNC的分散酶分离的细胞接种在三维(3D)Matrigel上。分析了LNCs,Notch抑制(通过N-(N- [3,5-二氟苯乙酰基]-丙氨酰)-S-苯基甘氨酸叔丁酯[DAPT]或Notch1-siRNA)对LESC的影响和活化(通过Jagged1)。使用定量RT-PCR,免疫染色和Western印迹。结果:Dispase分离出泛细胞角蛋白(PCK)+角膜缘上皮细胞(LECs)。胶原酶分离的天然下层LNCs纯化并通过Oct4,Rex1,Sox2,Nanog,SSEA4,N-钙黏着蛋白和CD34的表达而扩增。边缘利基细胞与p63?±+ LESCs重组形成簇,并阻止其在3D Matrigel上分化。 Notch信号在体内大鼠角膜和角膜缘上皮中未激活,但在体外培养的LEC中被激活。边缘利基细胞抑制培养中LEC的Notch信号传导。 Notch抑制(通过DAPT或Notch1-siRNA抑制)使LEC中的p63α±表达增加,而CK12表达降低至LNC的作用水平。 DAPT对Notch的抑制作用还将LEC中的Ki67表达降低至LNC的作用水平。结论:大鼠LNCs主要通过抑制Notch信号传导来阻止LESCs的分化和增殖。操纵Notch信号通路可能有助于保留LESCs进行角膜上皮组织工程。

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