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Chemical Sintering Generates Uniform Porous Hyaluronic Acid Hydrogels

机译:化学烧结产生均匀的多孔透明质酸水凝胶

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摘要

Implantation of scaffolds for tissue repair has been met with limited success primarily due to the inability to achieve vascularization within the construct. Many strategies have shifted to incorporate pores into these scaffolds to encourage rapid cellular infiltration and subsequent vascular ingrowth. We utilized an efficient chemical sintering technique to create a uniform network of polymethyl methacrylate (PMMA) microspheres for porous hyaluronic acid hydrogel formation. The porous hydrogels generated from chemical sintering possessed comparable pore uniformity and interconnectivity as the commonly used non- and heat sintering techniques. Moreover, similar cell response to the porous hydrogels generated from each sintering approach was observed in cell viability, spreading, proliferation in vitro, as well as, cellular invasion in vivo. We propose chemical sintering of PMMA microspheres using a dilute acetone solution as an alternative method to generating porous hyaluronic acid hydrogels since it requires equal or ten-fold less processing time as the currently used non-sintering or heat sintering technique, respectively.
机译:主要由于无法在构建体中实现血管化,因此植入支架进行组织修复的成功有限。已经采取了许多策略,将孔合并到这些支架中,以鼓励快速的细胞浸润和随后的血管向内生长。我们利用一种有效的化学烧结技术来创建聚甲基丙烯酸甲酯(PMMA)微球的均匀网络,以形成透明质酸水凝胶。化学烧结产生的多孔水凝胶具有与常用的非烧结和热烧结技术相当的孔隙均匀性和互连性。此外,在细胞活力,扩散,体外增殖以及体内细胞侵袭中,观察到了对每种烧结方法产生的多孔水凝胶的相似细胞反应。我们建议使用稀丙酮溶液对PMMA微球进行化学烧结,作为产生多孔透明质酸水凝胶的一种替代方法,因为它所需的处理时间分别比当前使用的非烧结或热烧结技术少或十倍。

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