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Osteogenic ability of bone marrow stem cells intraoperatively enriched by a novel matrix

机译:术中通过新型基质富集骨髓干细胞的成骨能力

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Poly-L-lysine (PLL) is commonly used as an adhibiting agent due to its good viscosity, and demineralized bone matrix (DBM) is a common enriched matrix for selective cell retention technology. Therefore, the aim of this study was to use PLL to coat the surface and interspaces of DBM to form a novel type of enriched matrix [DBM coated with PLL (PLL-DBM)], in order to effectively improve the enrichment effects of bone marrow stem cells and enhance their osteogenic ability. Electron microscope scanning and the infrared spectrum were used to observe the structure of PLL-DBM and the optimal conditions for the combination of PLL and DBM. Enriching effects on bone marrow nucleated cells (NCs) and platelets (PLTs) were detected with an automated hematology analyzer. The osteogenesis of the following four groups was assessed with a grafting bone model in a goat spinal transverse process: IA, tissue engineered bone (TEB) fabricated following enrichment of bone marrow with PLL-DBM; IB, autogenous iliac bone; IIC, TEB fabricated following enrichment of bone marrow with DBM; IID, blank DBM. The goats were sacrificed in one batch at week 16 after the surgery and the fusion specimens were examined using X-ray and three-dimensional computed tomography (CT). In addition, the CT value was determined and the histology and biomechanics were analyzed in order to evaluate the osteogenic ability. The results showed that PLL and DBM combined well and that PLL-DBM exhibited a natural mesh pore structure. The fold enrichment of NCs and PLTs with PLL-DBM was significantly higher than that with DBM. The fusion effects of the IA and IB groups were similar and significantly enhanced compared with those of the IIC and IID groups. The results confirmed that PLL-DBM is an ideal enriched matrix for bone marrow stem cells, and TEB rapidly fabricated by PLL-DBM intraoperatively enriched bone marrow stem cells exhibits an improved osteogenic ability.
机译:聚-L-赖氨酸(PLL)由于其良好的粘度而通常用作粘合剂,而去矿质骨基质(DBM)是用于选择性细胞保留技术的常见富集基质。因此,本研究的目的是利用PLL覆盖DBM的表面和间隙以形成一种新型的富集基质[用PLL覆盖的DBM(PLL-DBM)],以有效地提高骨髓的富集效果。干细胞并增强其成骨能力。用电子显微镜扫描和红外光谱观察PLL-DBM的结构以及结合使用PLL和DBM的最佳条件。用自动血液分析仪检测对骨髓有核细胞(NCs)和血小板(PLTs)的富集作用。在山羊脊髓横突中用移植骨模型评估了以下四组的成骨性:IA,在用PLL-DBM富集骨髓后制造的组织工程骨(TEB); IB,自体骨; IIC,TEB在用DBM富集骨髓后制成; IID,空白DBM。手术后第16周将山羊分批处死,并使用X射线和三维计算机断层扫描(CT)检查融合标本。另外,确定CT值并分析组织学和生物力学以评估成骨能力。结果表明,PLL和DBM结合得很好,并且PLL-DBM表现出自然的网孔结构。 PLL-DBM对NCs和PLTs的富集倍数显着高于DBM。 IA和IB组的融合效果与IIC和IID组相比相似,并且显着增强。结果证实,PLL-DBM是骨髓干细胞的理想富集基质,并且由PLL-DBM术中富集的骨髓干细胞快速制造的TEB表现出改善的成骨能力。

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