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Layer-by-layer surface decoration of electrospun nanofibrous meshes for air-liquid interface cultivation of epidermal cells

机译:电纺纳米纤维网的逐层表面装饰,对表皮细胞的空气液体界面栽培

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摘要

Multilayered assembly of hydrophilic polymers is used to decorate electrospun nanofibrous mats for the air-liquid interface cultivation of epidermal cells. epsilon-Caprolactone is ring-opening polymerized into carboxyl-terminated poly(epsilon-caprolactone) (PCL) and subsequently conjugated with poly(ethyleneimine) (PEI) in order to prepare the PCL-PEI block copolymers. The electrospun PCL-PEI nanofibers are chemically conjugated with multivalent poly(ethyeleneglycol) (PEG) chains, and PEI is chemically tethered to the PEG layers in order to further decorate the surface with multiple layers of PEG. The layered PEG is characterized using both thermal properties and direct visualization of the whole mats with fluorescence labeling, which exhibit escalating levels of PEG content with increasing numbers of PEG layering processes. The PCL-PEI nanofibers with PEG multilayers exhibit superior water swelling rates compared with unmodified mats and have high water retaining behaviors for prolonged periods without additional water supply in a PEG layer-dependent manner. When epidermal cells are cultivated on the PEG-multilayered mats without a continuous supply of the cell culture medium, the viability is maintained for 48 h and gradually decreases after 48 h. The epidermis-specific genes are highly expressed in cells cultivated on the PEG-multilayered mats in comparison with those on an insert well or unmodified mats, which is confirmed by qualitative real-time polymerase chain reaction and immunocytochemical staining of total keratin. Thus, PEG-multilayered nanofibrous mats can be a novel cell culture matrix for cell culture systems where the cell cultivation conditions require air-liquid interfaces.
机译:多层亲水性聚合物的组件被用来装饰电纺纳米纤维垫对表皮细胞的空气 - 液体界面培养。 ε-己内酯是在为了制备PCL-PEI嵌段共聚物的开环聚合为羧基封端的聚(ε-己内酯)(PCL),随后用聚(乙烯亚胺)缀合的(PEI)。所述电PCL-PEI纳米纤维化学与多价聚(ethyeleneglycol)(PEG)缀合的链,和PEI进行化学束缚于所述PEG层,以进一步装饰表面用PEG的多个层。层状PEG同时使用热性能,并与荧光标记的整个垫,其表现出随PEG分层过程的数目PEG含量的逐步升级的水平直接可视化,其特征。与未改性的垫子相比,PCL-PEI纳米纤维与PEG多层显示出优异的水溶胀率和具有无需在PEG层依赖性方式附加供水长时间的高保水的行为。当表皮细胞中的PEG-多层垫栽培无细胞培养基的连续供给,生存力保持48小时和48小时后逐渐减小。表皮特异性基因在与这些比较栽培在PEG-多层垫上的插入孔中的细胞或未经修饰的垫,其通过定性实时聚合酶链反应和总的角蛋白免疫染色确认高度表达。因此,PEG-多层纳米纤维垫可以是用于在细胞培养条件需要空气 - 液体界面的细胞培养系统的新的细胞培养基质。

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  • 来源
    《RSC Advances》 |2016年第115期|共8页
  • 作者单位

    Kangwon Natl Univ Dept Med Biomat Engn Chunchon 24341 South Korea;

    Kangwon Natl Univ Dept Med Biomat Engn Chunchon 24341 South Korea;

    Kangwon Natl Univ Dept Med Biomat Engn Chunchon 24341 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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