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Osteogenesis with coral is increased by BMP and BMC in a rat cranioplasty.

机译:BMP和BMC在大鼠颅骨成形术中增加了珊瑚的成骨作用。

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摘要

Autologous bone marrow cells (BMC), bone morphogenetic protein (BMP) and natural coral exoskeleton (CC) were used to enhance the repair of large skull bone defects in a craniotomy model. Nine millimeter calvarial defects were created in adult rats and were either left empty (control defects) or implanted with CC alone, CC-BMC, CC-BMP, or CC-BMC-BMP. After 1 or 2 months, osteogenesis was insufficient to allow union when defects were left empty or filled with CC. Addition of BMC alone to CC had no positive influence on osteogenesis at any time and increased CC resorption at 2 months (0.1 +/- 0.1 mm2 versus 0.5 +/- 0.3 mm2). In contrast addition of BM P or BM P/BMC to CC led to a significant increase in osteogenesis and allowed bone union after 1 month. At 2 months, the combination of CC-BM P-BMC was the most potent activator of osteogenesis. Filling a defect with CC-BMP-BMC resulted in significantly increased bone surface area (11 +/- 2.7 mm2) in comparison to filling a defect with CC-BMP (7.0 +/- 1.4 mm2), CC-BMC (3.5 +/- 1.1 mm2) or CC (4.5 +/- 0.4 mm2). CC resorption was significantly decreased in the presence of BMP with or without BMC at both times. These data are in accordance with the presence of progenitor cells in bone marrow that are inducible by BMP to the osteogenic pathway in a cranial site. The increase in material resorption in defects filled with CC-BMC could suggest that cells from the granulocyte-macrophage lineage survived the grafting procedure and were still active after 2 months.
机译:自体骨髓细胞(BMC),骨形态发生蛋白(BMP)和天然珊瑚外骨骼(CC)用于增强颅骨切开模型中大头骨骨缺损的修复。在成年大鼠中产生了9毫米颅骨缺损,要么留空(对照缺损),要么单独植入CC,CC-BMC,CC-BMP或CC-BMC-BMP。 1或2个月后,缺损为空或充满CC时,成骨作用不足以允许愈合。在BCC中单独添加BMC在任何时候都不会对成骨产生积极影响,并且在2个月时CC吸收增加(0.1 +/- 0.1 mm2对0.5 +/- 0.3 mm2)。相反,向CC中添加BM P或BM P / BMC会导致成骨作用显着增加,并在1个月后允许骨愈合。在2个月时,CC-BM P-BMC的组合是最有效的成骨激活剂。与CC-BMP(7.0 +/- 1.4 mm2),CC-BMC(3.5 + /)填充缺损相比,CC-BMP-BMC填充缺损导致骨表面积显着增加(11 +/- 2.7 mm2) -1.1平方毫米)或CC(4.5 +/- 0.4平方毫米)。在有或没有BMC的情况下,存在BMP的CC吸收均显着降低。这些数据与骨髓中祖细胞的存在是一致的,这些祖细胞可以被BMP诱导至颅骨部位的成骨途径。填充CC-BMC的缺损中物质吸收的增加可能表明粒细胞-巨噬细胞谱系的细胞在移植过程中幸存下来,并在2个月后仍然活跃。

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