首页> 外文期刊>International journal of oral and maxillofacial surgery >Segmental bone tissue engineering by seeding osteoblast precursor cells into titanium mesh-coral composite scaffolds.
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Segmental bone tissue engineering by seeding osteoblast precursor cells into titanium mesh-coral composite scaffolds.

机译:通过将成骨细胞前体细胞植入钛网-珊瑚复合支架中来进行节段性骨组织工程。

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The size and specific shape of bone grafts are important for jaw reconstruction. In this experiment, segmental bone grafts were engineered in a predetermined shape via seeding osteoblast precursor cells into titanium mesh-coral composite scaffolds. Titanium meshes were moulded into the shape of a column with length 12mm and diameter 8mm. The column was filled with natural coral granules and the complex acted as a cell-seeding scaffold. About 4x10(7) osteoblast precursor cells in 200mul cell-culture medium were seeded into each of six scaffolds and incubated in vitro for 2 days. Then, the composites were implanted subcutaneously into the backs of nude mice and incubated in vivo. Two months after implantation, the animals were killed and new bone formed in the scaffolds was investigated by gross inspection, X-ray examination, histological observation and mechanical testing. The results showed that newly formed tissue was red and presented the gross appearance of bone, and kept the original shape of the column. Titanium mesh was situated on the surface of the bone graft. An X-ray blocking shadow was observed in and around the titanium scaffolds; most of the coral granules had been absorbed. Histological observation demonstrated a large amount of new bone formed and integrated well with titanium mesh. Mechanical testing showed that new bone improved the mechanical property of the graft significantly. In conclusion, a titanium mesh-coral composite scaffold with osteoblast precursor cells is an efficient means to engineer segmental bone, possessing the desired shape and mechanical strength.
机译:骨移植物的大小和特定形状对于下颌重建至关重要。在该实验中,通过将成骨细胞前体细胞接种到钛网-珊瑚复合支架中,将节段骨移植物工程化为预定形状。将钛网模制成长度为12mm,直径为8mm的圆柱状。该柱充满了天然珊瑚颗粒,并且该复合物充当了细胞播种支架。将200mul细胞培养基中的约4x10(7)成骨细胞前体细胞接种到六个支架中的每个支架中,并在体外孵育2天。然后,将复合物皮下植入裸鼠的背部并在体内孵育。植入两个月后,处死动物,并通过肉眼检查,X射线检查,组织学观察和力学测试研究了在支架中形成的新骨。结果表明,新形成的组织为红色,呈现出骨骼的总体外观,并保持了圆柱的原始形状。钛网位于骨移植物的表面上。在钛支架内和周围观察到X射线阻挡阴影。大多数珊瑚颗粒已被吸收。组织学观察显示大量新骨形成并与钛网很好地整合。力学测试表明,新骨明显改善了移植物的力学性能。总之,具有成骨细胞前体细胞的钛网珊瑚复合支架是一种工程化分段骨的有效方法,具有所需的形状和机械强度。

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