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In situ forming oxidised hyaluronic acid/adipic acid dihydrazide hydrogel for prevention of epidural fibrosis after laminectomy

机译:原位形成氧化透明质酸/己二酸二酰肼水凝胶,用于预防椎板切除术后的硬膜外纤维化

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摘要

Post-operative epidural fibrosis is a biological response after laminectomy that may lead to clinical symptoms, such as radicular pain. An ideal material for prevention of epidural fibrosis should be able to inhibit fibroblast adhesions and reduce formation of scar tissue. An injectable hydrogel would be the material of choice for this purpose, since it could fill an irregular surgical defect completely, gelate in situ and be delivered in a minimally-invasive manner. The objective of this study was to evaluate, in vitro and in vivo, the cytocompatibility and anti-adhesive effect of an oxidised hyaluronic acid/adipic acid dihydrazide (oxi-HA/ADH) hydrogel. Different cell types present in the spine were used to test the cytocompatibility of the hydrogel. The hydrogel extraction medium had no deleterious effects on neural cells (PC-12), but reduced fibroblasts viability (NIH/3T3). Although the hydrogel did not change the release of lactate dehydrogenase from myoblasts (C2C12) and Schwann cells (RSC96), the extraction medium concentration slightly affected the mitochondrial activity of these two cell types. qPCR showed that the hydrogel down-regulated S100a and P4hb expression in NIH/3T3 cells, supporting the hypothesis that the hydrogel might inhibit fibroblast activity. The animal study showed a reduction of scar tissue formation as well as severity of adhesion between scar tissue and the dura mater in a rat laminectomy model. Superficially, the peel-off test showed significantly decreased tenacity. In conclusion, the oxi-HA/ADH hydrogel is a promising injectable and thermosensitive material for prevention of post-operative epidural fibrosis.
机译:术后硬膜外纤维化是椎板切除术后的生物反应,其可能导致临床症状,例如自由疼痛。用于预防硬膜外纤维化的理想材料应该能够抑制成纤维细胞粘连并减少瘢痕组织的形成。可注射水凝胶是为此目的选择的材料,因为它可以完全填充不规则的外科缺陷,原位凝胶,并以微创的方式递送。本研究的目的是评估氧化透明质酸/己二酸二酰肼(Oxi-HA / ADH)水凝胶的细胞相容性和抗粘接效果。脊柱中存在的不同细胞类型用于测试水凝胶的细胞粘合性。水凝胶萃取介质对神经细胞(PC-12)没有有害影响,但减少成纤维细胞活力(NIH / 3T3)。虽然水凝胶没有从肌细胞(C2C12)和Schwann细胞(RSC96)中释放乳酸脱氢酶(RSC96),但萃取介质浓度略微影响这两种细胞类型的线粒体活性。 QPCR显示水凝胶下调的S100A和P4HB在NIH / 3T3细胞中的表达,支持水凝胶可能抑制成纤维细胞活性的假设。动物研究表明,瘢痕组织形成的减少以及大鼠层压术模型中的瘢痕组织和硬脑膜组织之间的粘附性的严重程度。表面上,剥离试验显示出明显降低的韧性。总之,氧气-HA / ADH水凝胶是预防术后硬膜外纤维化的有希望的可注射和热敏材料。

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