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首页> 外文期刊>Acta biomaterialia >Uniform cell colonization of porous 3-D scaffolds achieved using radial control of surface chemistry.
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Uniform cell colonization of porous 3-D scaffolds achieved using radial control of surface chemistry.

机译:使用表面化学的径向控制,可以实现多孔3-D支架的均匀细胞定植。

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Uniform cellular distribution is a prerequisite to forming tissue within porous scaffolds, but the seeding process often results in preferential adhesion of cells at the periphery. We develop a vapour phase coating strategy which is readily applicable to any porous solid to provide a uniform cellular distribution. Plasma polymerized allyl amine (ppAAm) is used to form a thin nitrogen-containing coating throughout porous three-dimensional (3-D) poly(d,l-lactic acid) scaffolds. Subsequent controlled deposition of a hydrocarbon plasma polymerized hexane (ppHex) allows control of the fibroblast penetration into these porous 3-D objects. In order to optimize the coating conditions, a planar pinhole model of plasma penetration into pores is developed to rapidly measure deposit penetration using picolitre water contact angle measurement. Sufficiently good control over the plasma deposition within the porous scaffold is achieved using this approach to superimpose a relatively cell-repellent ppHex coating at the scaffold periphery onto the ppAAm-coated core, with a chemical gradient between the two. This 3-D chemical gradient encourages 3T3 fibroblast cells to adhere homogeneously from the periphery to the centre, when balanced by the tortuousity of the pore structure, which cells experience when passing from the surrounding medium to the centre.
机译:均匀的细胞分布是在多孔支架内形成组织的先决条件,但是播种过程通常会导致细胞在外周优先附着。我们开发了一种气相涂覆策略,该策略可轻松应用于任何多孔固体以提供均匀的细胞分布。等离子体聚合的烯丙基胺(ppAAm)用于在整个多孔三维(3-D)聚(d,l-乳酸)支架上形成薄的含氮涂层。随后控制沉积的烃等离子体聚合的己烷(ppHex)可以控制成纤维细胞渗透到这些多孔3-D物体中。为了优化涂覆条件,开发了等离子体渗透到孔中的平面针孔模型,以使用皮脂水接触角测量来快速测量沉积物渗透。使用这种方法,可以在支架周围将相对抗细胞的ppHex涂层叠加到ppAAm包衣的核心上,并在两者之间形成化学梯度,从而可以很好地控制多孔支架内的血浆沉积。这种3-D化学梯度会促使3T3成纤维细胞从外围均匀地粘附到中心,同时又被孔结构的曲折所平衡,而这种曲折是细胞从周围介质传递到中心时所经历的。

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