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The influence of surface topography of a porous perfluoropolyether polymer on corneal epithelial tissue growth and adhesion.

机译:多孔全氟聚醚聚合物的表面形貌对角膜上皮组织生长和粘附的影响。

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摘要

Design principles for corneal implants are challenging and include permeability which inherently involves pore openings on the polymer surface. These topographical cues can be significant to a successful clinical outcome where a stratified epithelium is needed over the device surface, such as with a corneal onlay or corneal repair material. The impact of polymer surface topography on the growth and adhesion of corneal epithelial tissue was assessed using porous perfluoropolyether membranes with a range of surface topography. Surfaces were characterised by AFM and XPS, and the permeability and water content of membranes was measured. Biological testing of membranes involved a 21-day in vitro tissue assay to evaluate migration, stratification and adhesion of corneal epithelium. Similar parameters were monitored in vivo by surgically implanting membranes into feline corneas for up to 5 months. Data showed optimal growth and adhesion of epithelial tissue in vitro when polymer surface features were below a 150 nm RMS value. Normal processes of tissue growth and adhesion were disrupted when RMS values approached 300 nm. Data from the in vivo study confirmed these findings. Together, outcomes demonstrated the importance of surface topography in the design of implantable devices that depend on functional epithelial cover.
机译:角膜植入物的设计原理具有挑战性,并且包括渗透性,其固有地涉及聚合物表面上的孔洞。这些地形线索对于成功的临床结果非常重要,在这种情况下,需要在器械表面覆盖分层的上皮,例如使用角膜覆盖物或角膜修复材料。使用具有一系列表面形貌的多孔全氟聚醚膜,评估了聚合物表面形貌对角膜上皮组织生长和粘附的影响。用AFM和XPS对表面进行表征,并测量膜的渗透性和水含量。膜的生物学测试涉及21天的体外组织测定,以评估角膜上皮的迁移,分层和粘附。通过外科手术将膜植入猫角膜长达5个月,可以监测体内相似的参数。数据显示,当聚合物表面特征低于150 nm RMS值时,体外上皮组织的最佳生长和粘附。当RMS值接近300 nm时,正常的组织生长和粘附过程被破坏。来自体内研究的数据证实了这些发现。总之,结果证明了表面形貌在依赖功能上皮覆盖物的可植入设备设计中的重要性。

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