首页> 美国卫生研究院文献>Tissue Engineering. Part C Methods >Intrinsic Lens Forming Potential of Mouse Lens Epithelial versus Newt Iris Pigment Epithelial Cells in Three-Dimensional Culture
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Intrinsic Lens Forming Potential of Mouse Lens Epithelial versus Newt Iris Pigment Epithelial Cells in Three-Dimensional Culture

机译:三维培养中小鼠晶状体上皮对versus虹膜色素上皮细胞的内在晶状体形成潜力

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摘要

Adult newts (Notophthalmus viridescens) are capable of complete lens regeneration that is mediated through dorsal iris pigment epithelial (IPE) cells transdifferentiation. In contrast, higher vertebrates such as mice demonstrate only limited lens regeneration in the presence of an intact lens capsule with remaining lens epithelial cells. To compare the intrinsic lens regeneration potential of newt IPE versus mouse lens epithelial cells (MLE), we have established a novel culture method that uses cell aggregation before culture in growth factor-reduced Matrigel™. Dorsal newt IPE aggregates demonstrated complete lens formation within 1 to 2 weeks of Matrigel culture without basic fibroblast growth factor (bFGF) supplementation, including the establishment of a peripheral cuboidal epithelial cell layer, and the appearance of central lens fibers that were positive for αA-crystallin. In contrast, the lens-forming potential of MLE cell aggregates cultured in Matrigel was incomplete and resulted in the formation of defined-size lentoids with partial optical transparency. While the peripheral cell layers of MLE aggregates were nucleated, cells in the center of aggregates demonstrated a nonapoptotic nuclear loss over a time period of 3 weeks that was representative of lens fiber formation. Matrigel culture supplementation with bFGF resulted in higher transparent bigger-size MLE aggregates that demonstrated increased appearance of βB1-crystallin expression. Our study demonstrates that bFGF is not required for induction of newt IPE aggregate-dependent lens formation in Matrigel, while the addition of bFGF seems to be beneficial for the formation of MLE aggregate-derived lens-like structures. In conclusion, the three-dimensional aggregate culture of IPE and MLE in Matrigel allows to a higher extent than older models the indepth study of the intrinsic lens-forming potential and the corresponding identification of lentogenic factors.
机译:成年new(Notophthalmus viridescens)能够完成晶状体的再生,该再生是通过背虹膜色素上皮(IPE)细胞转分化介导的。相反,在存在完整的晶状体囊和剩余的晶状体上皮细胞的情况下,高等脊椎动物如小鼠仅表现出有限的晶状体再生。为了比较newt IPE与小鼠晶状体上皮细胞(MLE)固有的晶状体再生潜能,我们建立了一种新的培养方法,该方法在生长因子降低的Matrigel™中培养之前使用细胞聚集。背new IPE聚集体在Matrigel培养后1-2周内显示出完整的晶状体形成,无需补充碱性成纤维细胞生长因子(bFGF),包括建立了外周立方上皮细胞层,并且出现了对αA-呈阳性的中央晶状体纤维。晶状体。相比之下,在Matrigel中培养的MLE细胞聚集体的晶状体形成潜能不完全,并导致形成一定尺寸的具有部分光学透明性的双凸透镜。虽然MLE聚集体的外围细胞层成核,但聚集体中心的细胞在3周内显示出非凋亡性核损失,这是晶状体纤维形成的代表。补充bFGF的基质胶培养物可产生更高透明度的大尺寸MLE聚集体,其表现出增加的βB1-晶状蛋白表达。我们的研究表明,在基质胶中诱导newt IPE聚集体依赖性晶状体不需要bFGF,而添加bFGF似乎对形成MLE聚集体晶状体结构有益。总之,与较旧的模型相比,Matrigel中IPE和MLE的三维聚集培养可以更深入地研究内在晶状体形成潜能以及相应的长晶状体因子识别。

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