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Enabling Surgical Placement of Hydrogels through Achieving Paste-Like Rheological Behavior in Hydrogel Precursor Solutions

机译:通过在水凝胶前体溶液中实现类似于糊剂的流变行为来实现水凝胶的外科手术放置

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摘要

Hydrogels are a promising class of materials for tissue regeneration, but they lack the ability to be molded into a defect site by a surgeon because hydrogel precursors are liquid solutions that are prone to leaking during placement. Therefore, although the main focus of hydrogel technology and developments are on hydrogels in their crosslinked form, our primary focus is on improving the fluid behavior of hydrogel precursor solutions. In this work, we introduce a method to achieve paste-like hydrogel precursor solutions by combining hyaluronic acid nanoparticles with traditional crosslinked hyaluronic acid hydrogels. Prior to crosslinking, the samples underwent rheological testing to assess yield stress and recovery using linear hyaluronic acid as a control. The experimental groups containing nanoparticles were the only solutions that exhibited a yield stress, demonstrating that the nanoparticulate rather than the linear form of hyaluronic acid was necessary to achieve paste-like behavior. The gels were also photocrosslinked and further characterized as solids, where it was demonstrated that the inclusion of nanoparticles did not adversely affect the compressive modulus and that encapsulated bone marrow-derived mesenchymal stem cells remained viable. Overall, this nanoparticle-based approach provides a platform hydrogel system that exhibits a yield stress prior to crosslinking, and can then be crosslinked into a hydrogel that is capable of encapsulating cells that remain viable. This behavior may hold significant impact for hydrogel applications where a paste-like behavior is desired in the hydrogel precursor solution.
机译:水凝胶是一类有前景的组织再生材料,但是由于水凝胶前体是易于在放置过程中泄漏的液体溶液,因此它们缺乏被外科医生成型为缺损部位的能力。因此,尽管水凝胶技术和发展的主要重点是交联形式的水凝胶,但我们的主要重点是改善水凝胶前体溶液的流体行为。在这项工作中,我们介绍了一种通过将透明质酸纳米粒子与传统的交联透明质酸水凝胶结合来获得糊状水凝胶前体溶液的方法。在交联之前,使用线性透明质酸作为对照,对样品进行流变测试以评估屈服应力和恢复。含有纳米颗粒的实验组是唯一表现出屈服应力的溶液,表明纳米颗粒而不是线性形式的透明质酸是实现糊状行为所必需的。凝胶还进行了光交联,并进一步表征为固体,其中证明了纳米颗粒的掺入不会对压缩模量产生不利影响,并且封装的骨髓来源的间充质干细胞仍然可行。总体而言,这种基于纳米粒子的方法提供了一种平台水凝胶系统,该系统在交联之前表现出屈服应力,然后可以交联为能够封装保持活力的细胞的水凝胶。对于在水凝胶前体溶液中需要糊状行为的水凝胶应用,此行为可能会产生重大影响。

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