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Bone conditioned media (BCM) improves osteoblast adhesion and differentiation on collagen barrier membranes.

机译:骨条件培养基(BCM)可改善成骨细胞在胶原屏障膜上的粘附和分化。

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摘要

BACKGROUNDududThe use of autogenous bone chips during guided bone regeneration procedures has remained the gold standard for bone grafting due to its excellent combination of osteoconduction, osteoinduction and osteogenesis. Recent protocols established by our group have characterized specific growth factors and cytokines released from autogenous bone that have the potential to be harvested and isolated into bone conditioned media (BCM). Due to the advantageous osteo-promotive properties of BCM, the aims of the present study was to pre-coat collagen barrier membranes with BCM and investigate its effect on osteoblast adhesion, proliferation and differentiation for possible future clinical use.ududMETHODSududScanning electron microscopy (SEM) was first used to qualitative assess BCM protein accumulation on the surface of collagen membranes. Thereafter, undifferentiated mouse ST2 stromal bone marrow cells were seeded onto BioGide porcine derived collagen barrier membranes (control) or barrier membranes pre-coated with BCM (test group). Control and BCM samples were compared for cell adhesion at 8 h, cell proliferation at 1, 3 and 5 days and real-time PCR at 5 days for osteoblast differentiation markers including Runx2, alkaline phosphatase (ALP), osteocalcin (OCN) and bone sialoprotein (BSP). Mineralization was further assessed with alizarin red staining at 14 days post seeding.ududRESULTSududSEM images demonstrated evidence of accumulated proteins found on the surface of collagen membranes following coating with BCM. Analysis of total cell numbers revealed that the additional pre-coating with BCM markedly increased cell attachment over 4 fold when compared to cells seeded on barrier membranes alone. No significant difference could be observed for cell proliferation at all time points. BCM significantly increased mRNA levels of osteoblast differentiation markers including ALP, OCN and BSP at 5 days post seeding. Furthermore, barrier membranes pre-coated with BCM demonstrated a 5-fold increase in alizarin red staining at 14 days.ududCONCLUSIONududThe results from the present study suggest that the osteoconductive properties of porcine-derived barrier membranes could be further improved by BCM by significantly increasing cell attachment, differentiation and mineralization of osteoblasts in vitro. Future animal testing is required to fully characterize the additional benefits of BCM for guided bone regeneration.
机译:背景技术在引导性骨再生过程中使用自体骨屑由于其骨传导,成骨诱导和成骨作用的良好结合,一直是植骨的金标准。我们小组建立的最新方案已对自体骨释放的特定生长因子和细胞因子进行了表征,这些生长因子和细胞因子有可能被收获并分离到骨条件培养基(BCM)中。由于BCM具有有利的促骨特性,因此本研究的目的是在BCM上预涂胶原蛋白屏障膜,并研究其对成骨细胞粘附,增殖和分化的影响,以备将来临床使用。 ud udMETHODS ud扫描电子显微镜(SEM)首先用于定性评估BCM蛋白在胶原膜表面的积累。此后,将未分化的小鼠ST2基质骨髓细胞接种到BioGide猪衍生的胶原屏障膜(对照)或预先涂有BCM的屏障膜上(测试组)。比较对照和BCM样品在8h时的细胞黏附,1、3和5天的细胞增殖以及5天时的实时PCR的成骨细胞分化标记物,包括Runx2,碱性磷酸酶(ALP),骨钙蛋白(OCN)和骨唾液蛋白(BSP)。播种后14天,通过茜素红染色进一步评估矿化程度。 ud udRESULTS ud udSEM图像显示在用BCM包被后在胶原膜表面发现了积累的蛋白质。对总细胞数的分析表明,与单独接种在屏障膜上的细胞相比,额外的BCM预涂层显着增加了4倍以上的细胞附着。在所有时间点均未观察到细胞增殖的显着差异。播种后5天,BCM显着增加了成骨细胞分化标志物的mRNA水平,包括ALP,OCN和BSP。此外,预涂BCM的屏障膜在14天时茜素红染色增加了5倍。 ud ud结论 ud ud本研究的结果表明,猪衍生屏障膜的骨传导特性可能会进一步提高BCM通过显着增加体外成骨细胞的细胞附着,分化和矿化作用而改善了这种情况。需要未来的动物测试来充分表征BCM在引导骨再生中的其他优势。

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