首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Ultraviolet Functionalization of Electrospun Scaffolds to Activate Fibrous Runways for Targeting Cell Adhesion
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Ultraviolet Functionalization of Electrospun Scaffolds to Activate Fibrous Runways for Targeting Cell Adhesion

机译:静电纺丝支架的紫外线功能化,以激活纤维状跑道以靶向细胞粘附。

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摘要

A critical challenge in scaffold design for tissue engineering is recapitulating the complex biochemical patterns that regulate cell behavior in vivo. In this work, we report the adaptation of a standard sterilization methodology – UV irradiation – for patterning the surfaces of two complementary polymeric electrospun scaffolds with oxygen cues able to efficiently immobilize biomolecules. Independently of the different polymer chain length of poly(ethylene oxide terephthalate)/poly(butylene terephthalate) (PEOT/PBT) copolymers and PEOT/PBT ratio, it was possible to easily functionalize specific regions of the scaffolds by inducing an optimized and spatially controlled adsorption of proteins capable of boosting the adhesion and spreading of cells along the activated fibrous runways. By allowing an efficient design of cell attachment patterns without inducing any noticeable change on cell morphology nor on the integrity of the electrospun fibres, this procedure offers an affordable and resourceful approach to generate complex biochemical patterns that can decisively complement the functionality of the next generation of tissue engineering scaffolds.
机译:组织工程支架设计中的关键挑战是概括调节体内细胞行为的复杂生化模式。在这项工作中,我们报告了采用标准灭菌方法-UV辐射的方法,该方法可利用能够有效固定生物分子的氧气提示图案化两个互补的聚合物电纺支架的表面。独立于聚对苯二甲酸乙二醇酯/聚对苯二甲酸丁二醇酯(PEOT / PBT)共聚物的聚合物链长和PEOT / PBT比率的不同,可以通过诱导优化和空间控制的方法轻松地使支架的特定区域功能化能够增强蛋白质沿活化纤维跑道的粘附和扩散的蛋白质的吸附。通过允许有效地设计细胞附着模式,而不会引起细胞形态或电纺纤维完整性的任何明显变化,该程序提供了一种可负担且足智多谋的方法来生成复杂的生化模式,从而可以决定性地补充下一代的功能。组织工程支架。

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