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首页> 外文期刊>Acta biomaterialia >Supplementation of fibrin gels with sodium chloride enhances physical properties and ensuing osteogenic response.
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Supplementation of fibrin gels with sodium chloride enhances physical properties and ensuing osteogenic response.

机译:用氯化钠补充纤维蛋白凝胶可增强物理性质并确保成骨反应。

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摘要

Modifying the relative concentrations of fibrinogen and thrombin can control the physical properties of fibrin gels, while the viability of associated cells has been linked to the gel's final network structure. It was hypothesized that increasing the gel ionic strength during fabrication through supplementation with sodium chloride (NaCl) would provide an improved approach for tailoring the physical properties of fibrin gels and maintaining the viability and osteogenic potential of entrapped cells. Fibrin gels were formed by mixing fibrinogen, thrombin and calcium chloride with varying masses of NaCl (0-4.40% w/v), and the osteogenic potential of entrapped human mesenchymal stem cells (MSC) was examined over 14 days. Physical properties including gelation time, compressive modulus and fiber diameter were dependent upon NaCl content, with gels containing 2.60% NaCl possessing compressive moduli threefold higher than gels without NaCl. Alkaline phosphatase activity was highest for MSC entrapped in gels containing 2.15-2.60% NaCl after 14 days, and all gels exhibited increased calcium incorporation over the culture period. These data confirm that varying the salt concentration of the pre-gel solution can modulate the material properties of fibrin constructs without additional fibrinogen or thrombin, thereby offering a new approach for generating improved cell transplantation vehicles for use in bone tissue regeneration.
机译:改变血纤蛋白原和凝血酶的相对浓度可以控制血纤蛋白凝胶的物理特性,而相关细胞的生存能力已经与凝胶的最终网络结构联系在一起。假设通过在制造过程中通过补充氯化钠(NaCl)来增加凝胶离子强度,将提供一种改进的方法,用于调整纤维蛋白凝胶的物理性质,并保持被包裹细胞的活力和成骨潜能。通过将纤维蛋白原,凝血酶和氯化钙与不同质量的NaCl(0-4.40%w / v)混合,形成纤维蛋白凝胶,并在14天的时间内检查了包埋的人间充质干细胞(MSC)的成骨潜能。包括胶凝时间,压缩模量和纤维直径的物理性质取决于NaCl含量,含有2.60%NaCl的凝胶的压缩模量比不含NaCl的凝胶高三倍。 14天后,碱性磷酸酶的活性最高,对于包埋在含2.15-2.60%NaCl的凝胶中的MSC而言,所有凝胶在培养期间均表现出增加的钙结合。这些数据证实,改变预凝胶溶液的盐浓度可以调节血纤蛋白构建体的材料特性,而无需额外的血纤蛋白原或凝血酶,从而提供了一种新的方法来产生用于骨组织再生的改良的细胞移植载体。

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