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首页> 外文期刊>Neural regeneration research >Dynamic culture of a thermosensitive collagen hydrogel as an extracellular matrix improves the construction of tissue-engineered peripheral nerve
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Dynamic culture of a thermosensitive collagen hydrogel as an extracellular matrix improves the construction of tissue-engineered peripheral nerve

机译:动态培养热敏性胶原水凝胶作为细胞外基质可改善组织工程性周围神经的构造

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摘要

Tissue engineering technologies offer new treatment strategies for the repair of peripheral nerve injury, but cell loss between seeding and adhesion to the scaffold remains inevitable. A thermosensitive collagen hydrogel was used as an extracellular matrix in this study and combined with bone marrow mesenchymal stem cells to construct tissue-engineered peripheral nerve composites in vitro. Dynamic culture was performed at an oscillating frequency of 0.5 Hz and 35° swing angle above and below the horizontal plane. The results demonstrated that bone marrow mesenchymal stem cells formed membrane-like structures around the poly-L-lactic acid scaffolds and exhibited regular alignment on the composite surface. Collagen was used to fill in the pores, and seeded cells adhered onto the poly-L-lactic acid fibers. The DNA content of the bone marrow mesenchymal stem cells was higher in the composites constructed with a thermosensitive collagen hydrogel compared with that in collagen I scaffold controls. The cellular DNA content was also higher in the thermosensitive collagen hydrogel composites constructed with the thermosensitive collagen hydrogel in dynamic culture than that in static culture. These results indicate that tissue-engineered composites formed with thermosensitive collagen hydrogel in dynamic culture can maintain larger numbers of seeded cells by avoiding cell loss during the initial adhesion stage. Moreover, seeded cells were distributed throughout the material.
机译:组织工程技术为修复周围神经损伤提供了新的治疗策略,但播种与支架之间的细胞损失仍然不可避免。在这项研究中,将热敏性胶原水凝胶用作细胞外基质,并与骨髓间充质干细胞结合,以体外构建组织工程化的周围神经复合物。动态培养是在水平面上方和下方以0.5 Hz的振荡频率和35°摆动角进行的。结果表明,骨髓间充质干细胞在聚-L-乳酸支架周围形成膜状结构,并在复合材料表面呈现规则排列。用胶原蛋白填充毛孔,种子细胞粘附在聚L-乳酸纤维上。用热敏性胶原水凝胶构建的复合物中,骨髓间充质干细胞的DNA含量高于胶原蛋白I支架对照。用动态培养的热敏胶原水凝胶构建的热敏胶原水凝胶复合物中的细胞DNA含量也高于静态培养中的细胞DNA含量。这些结果表明,动态培养中由热敏胶原水凝胶形成的组织工程复合材料可通过避免细胞在初始黏附阶段损失而维持大量的种子细胞。此外,种子细胞分布在整个材料中。

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