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Hyaluronic Acid Based Materials for Scaffolding via Two-Photon Polymerization

机译:用于双光子聚合的支架的透明质酸基材料

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摘要

Hydrogels are able to mimic the basic three-dimensional (3D) biological, chemical, and mechanical properties of native tissues. Since hyaluronic acid (HA) is a chief component of human extracellular matrix (ECM), it represents an extremely attractive starting material for the fabrication of scaffolds for tissue engineering. Due to poor mechanical properties of hydrogels, structure fabrication of this material class remains a major challenge. Two-photon polymerization (2PP) is a promising technique for biomedical applications, which allows the fabrication of complex 3D microstructures by moving the laser focus in the volume of a photosensitive material. Chemical modification of hyaluronan allows application of the 2PP technique to this natural material and, thus, precise fabrication of 3D hydrogel constructs. To create materials with tailor-made mechanochemical properties, HA was combined and coyalently cross-linked with poiy(ethyleneglycol) diacrylate (PEGDA) in situ. 2PP was applied for the fabrication of well elaborated 3D HA and HA-PEGDA microstructures. For enhanced biological adaption, HA was functionalized with human epidermal growth factor.
机译:水凝胶能够模仿天然组织的基本三维(3D)生物学,化学和机械特性。由于透明质酸(HA)是人类细胞外基质(ECM)的主要成分,因此它是制造用于组织工程的支架的极具吸引力的原材料。由于水凝胶的机械性能较差,此类材料的结构制造仍然是主要挑战。两光子聚合(2PP)是一种用于生物医学应用的有前途的技术,它允许通过在光敏材料的体积中移动激光焦点来制造复杂的3D微观结构。透明质酸的化学修饰可以将2PP技术应用于这种天然材料,从而精确制造3D水凝胶结构。为了创建具有定制机械化学性能的材料,将HA结合并与聚乙二醇二丙烯酸酯(PEGDA)原位共聚交联。 2PP被用于制造精心制作的3D HA和HA-PEGDA微结构。为了增强生物适应性,将HA与人类表皮生长因子一起功能化。

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