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Assessments of injectable alginate particle-embedded fibrin hydrogels for soft tissue reconstruction

机译:评估可注射藻酸盐包埋的纤维蛋白水凝胶在软组织重建中的作用

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Soft tissue reconstruction is often needed after massive traumatic damage or cancer removal. In this study, we developed a novel hybrid hydrogel system consisting of alginate particles and a fibrin matrix that could maintain tissue volume long term. Alginate particles were fabricated by mixing 5% alginate with a 20 mM calcium solution. Cells and these alginate particles were then embedded in fibrin (alginate-fibrin) hydrogels using a dual syringe mixer. Cell-hydrogel constructs were evaluated in terms of cell survival and proliferation in the constructs in vitro. The results indicated that cellular viability, spreading and proliferation in the alginate-fibrin hydrogels were significantly higher compared to constructs fabricated with fibrin or alginate only. In vivo explants showed that cells contained within fibrin-only hydrogels did not contribute to neo-tissue formation, and the fibrin was fully degraded within a 12 week period. In the alginate-fibrin system, higher cellularity and vascular ingrowth were observed in vivo. This resulted in neo-tissue formation in the alginate-fibrin hydrogels. These results demonstrate that fibrin may enhance cell proliferation and accelerate the formation of extracellular matrix proteins in the alginate-fibrin system, while the alginate particles could contribute to volume retention. This injectable hybrid system composed of degradable and non-degradable hydrogels may be a preferable approach to the repair of soft tissue defects.
机译:大规模的创伤性损伤或癌症切除后,通常需要软组织重建。在这项研究中,我们开发了一种新型的混合水凝胶系统,该系统由藻酸盐颗粒和可以长期维持组织体积的纤维蛋白基质组成。通过将5%藻酸盐与20 mM钙溶液混合来制备藻酸盐颗粒。然后使用双注射器混合器将细胞和这些藻酸盐颗粒包埋在血纤蛋白(藻酸盐-血纤蛋白)水凝胶中。根据细胞在体外的存活和增殖评估细胞-水凝胶构建体。结果表明,与仅用纤维蛋白或藻酸盐制造的构建体相比,藻酸盐-血纤蛋白水凝胶中的细胞生存力,扩散和增殖显着更高。体内外植体表明,仅含纤维蛋白的水凝胶中所含的细胞没有促进新组织的形成,并且纤维蛋白在12周内被完全降解。在藻酸盐-纤维蛋白系统中,体内观察到更高的细胞性和血管向内生长。这导致藻酸盐-纤维蛋白水凝胶中形成新组织。这些结果表明血纤蛋白可增强藻酸盐-血纤蛋白系统中的细胞增殖并加速细胞外基质蛋白的形成,而藻酸盐颗粒可有助于体积保持。由可降解和不可降解的水凝胶组成的这种可注射的混合系统可能是修复软组织缺损的首选方法。

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