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首页> 外文期刊>Journal of Bioactive and Compatible Polymers >Dynamic Co-Seeding of Osteoblast and Endothelial Cells on 3D Polycaprolaetone Scaffolds for Enhanced Bone Tissue Engineering
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Dynamic Co-Seeding of Osteoblast and Endothelial Cells on 3D Polycaprolaetone Scaffolds for Enhanced Bone Tissue Engineering

机译:在增强骨骼组织工程的3D聚己内酯支架上动态整合成骨细胞和内皮细胞

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Tissue engineered scaffolds must have an organized and repeatable microstructure which enables cells to assemble in an ordered matrix that allows adequate nutriental perfusion. In this work, to evaluate the reciprocal cell interactions of endothelial and osteoblast-like cells, human osteoblast-like cells (MG63) and Human Umbilical Vein Endothelial Cells (HUVEC) were co-seeded onto 3D geometrically controlled porous poly(ε-caprolactone) (PCL) and cultured by means of a rotary cell culture system (RCCS-4DQ). In our dynamic co-culture system, the lack of significant enhancement of osteoblast ALP activity and ECM production indicated that the microgravity conditions of the rotary system affected the cells by favoring their proliferation and cellular cross-talk. These results emphasize how osteoblasts increase endothelial cell proliferate and endothelial cells amplify the growth of osteoblasts but decrease their differentiation. This dynamic seeding of osteoblasts and endothelial cells onto a 3D polymeric scaffold may represent a unique approach for studying the mechanisms of interaction of endothelial and osteoblast cells as well as achieve a functional hybrid in which angiogenesis, furnished by neo-vascular organization of endothelial cells may further support osteoblasts growth. Furthermore, this in vitro model may be useful in examining the applicability of novel material structures for tissue engineering.
机译:组织工程支架必须具有组织化且可重复的微观结构,以使细胞能够以有序的基质组装,从而实现足够的营养灌注。在这项工作中,为了评估内皮细胞和成骨细胞样细胞的相互作用,将人成骨细胞样细胞(MG63)和人脐静脉内皮细胞(HUVEC)共同植入3D几何控制的多孔聚己内酯中(PCL)并通过旋转细胞培养系统(RCCS-4DQ)进行培养。在我们的动态共培养系统中,成骨细胞ALP活性和ECM产量缺乏显着增强,这表明旋转系统的微重力条件通过促进细胞增殖和细胞串扰影响了细胞。这些结果强调了成骨细胞如何增加内皮细胞的增殖,以及内皮细胞如何放大成骨细胞的生长却降低了它们的分化。将成骨细胞和内皮细胞动态播种到3D聚合物支架上,可能代表研究内皮细胞与成骨细胞相互作用机制以及实现功能性杂合的独特方法,在该杂合中,内皮细胞的新血管组织可以促进血管生成进一步支持成骨细胞的生长。此外,这种体外模型可能对检查新型材料结构在组织工程中的适用性很有用。

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