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Electrospinning Fibrous Polymer Scaffolds for Tissue Engineering and Cell Culture

机译:用于组织工程和细胞培养的静电纺丝纤维聚合物支架

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摘要

As the field of tissue engineering evolves, there is a tremendous demand to produce more suitable materials and processing techniques in order to address the requirements (e.g., mechanics and vascularity) of more intricate organs and tissues. Electrospinning is a popular technique to create fibrous scaffolds that mimic the architecture and size scale of the native extracellular matrix. These fibrous scaffolds are also useful as cell culture substrates since the fibers can be used to direct cellular behavior, including stem cell differentiation (see extensive reviews by Mauck et al. and Sill et al. for more information). In this article, we describe the general process of electrospinning polymers and as an example, electrospin a reactive hyaluronic acid capable of crosslinking with light exposure (see Ifkovits et al. for a review on photocrosslinkable materials). We also introduce further processing capabilities such as photopatterning and multi-polymer scaffold formation. Photopatterning can be used to create scaffolds with channels and multi-scale porosity to increase cellular infiltration and tissue distribution. Multi-polymer scaffolds are useful to better tune the properties (mechanics and degradation) of a scaffold, including tailored porosity for cellular infiltration. Furthermore, these techniques can be extended to include a wide array of polymers and reactive macromers to create complex scaffolds that provide the cues necessary for the development of successful tissue engineered constructs.
机译:随着组织工程学领域的发展,迫切需要生产更合适的材料和加工技术,以解决更复杂的器官和组织的要求(例如,力学和血管性)。电纺丝是一种流行的技术,用于创建模拟天然细胞外基质的结构和尺寸尺度的纤维支架。这些纤维支架也可用作细胞培养底物,因为该纤维可用于指导细胞行为,包括干细胞分化(有关更多信息,请参见Mauck等人和Sill等人的详尽评论)。在本文中,我们描述了静电纺丝聚合物的一般过程,并举例说明了静电纺丝能够在曝光条件下发生交联的反应性透明质酸(有关光可交联材料的综述,请参见Ifkovits等)。我们还介绍了进一步的处理能力,例如光图案化和聚合物支架的形成。可以使用光图案法来创建具有通道和多尺度孔隙率的支架,以增加细胞浸润和组织分布。聚合物支架可用于更好地调节支架的性能(力学和降解),包括为细胞浸润量身定制的孔隙率。此外,这些技术可以扩展到包括各种各样的聚合物和反应性大分子单体,以创建复杂的支架,从而为开发成功的组织工程构建体提供必要的线索。

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