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Cytocompatibility and biologic characteristics of synthetic scaffold materials of rabbit acellular vascular matrix combining with human-like collagen I

机译:兔细胞血管基质合成支架材料与人样胶原蛋白的合成支架材料的细胞相容性和生物学特性

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Scaffold material provides a three-dimensional growing environment for seed cells in the research field of tissue engineering. In the present study, rabbit arterial blood vessel cells were chemically removed with trypsin and Triton X-100 to prepare rabbit acellular vascular matrix scaffold material. Observation by He&Masson staining revealed that no cellular components or nuclei existed in the vascular intima and media after decellularization. Human-like collagen I was combined with acellular vascular matrix by freeze-drying to prepare an acellular vascular matrix-0.25% human-like collagen I scaffold to compensate for the extracellular matrix loss during the decellularization process. We next performed a series of experiments to test the water absorbing quality, biomechanics, pressure resistance, cytotoxicity, and ultra-micro structure of the acellular vascular matrix composite material and natural rabbit artery and found that the acellular vascular matrix-0.25% human-like collagen I material behaved similarly to natural rabbit artery. In conclusion, the acellular vascular matrix-0.25% human-like collagen I composite material provides a new approach and lays the foundation for novel scaffold material research into tissue engineering of blood vessels.
机译:脚手架材料为组织工程研究领域的种子细胞提供了三维生长环境。在本研究中,用胰蛋白酶和Triton X-100化学除去兔动脉血管细胞以制备兔细胞血管基质支架材料。 He&amp的观察; Masson染色揭示了血管内膜和脱细胞化后的血管内膜和培养基中没有细胞组分或细胞核。通过冷冻干燥将人样胶原蛋白与细胞血管基质相结合,制备无细胞血管基质-0.25%人样胶原I支架,以补偿脱细胞化过程中的细胞外基质损失。我们接下来进行了一系列实验,以测试无细胞血管基质复合材料和天然兔动脉的吸水质量,生物力学,耐压,细胞毒性和超微微观结构,发现无细胞血管基质-0.25%人物胶原蛋白I材料表现得与天然兔动脉相似。总之,无细胞血管基质-0.25%人样胶原蛋白I复合材料提供了一种新方法,为血管组织工程奠定了新的支架材料研究。

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