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Inhibitory Effects of Human Primary Intervertebral Disc Cells on Human Primary Osteoblasts in a Co-Culture System

机译:共培养体系中人原代椎间盘细胞对人原代成骨细胞的抑制作用

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摘要

Spinal fusion is a common surgical procedure to address a range of spinal pathologies, like damaged or degenerated discs. After the removal of the intervertebral disc (IVD), a structural spacer is positioned followed by internal fixation, and fusion of the degenerated segment by natural bone growth. Due to their osteoinductive properties, bone morphogenetic proteins (BMP) are applied to promote spinal fusion. Although spinal fusion is successful in most patients, the rates of non-unions after lumbar spine fusion range from 5% to 35%. Clinical observations and recent studies indicate, that the incomplete removal of disc tissue might lead to failure of spinal fusion. Yet, it is still unknown if a secretion of BMP antagonists in intervertebral disc (IVD) cells could be the reason of inhibition in bone formation. In this study, we co-cultured human primary osteoblasts (OB) and IVD cells i.e., nucleus pulposus (NPC), annulus fibrosus (AFC) and cartilaginous endplate cells (CEPC), to test the possible inhibitory effect from IVD cells on OB. Although we could see a trend in lower matrix mineralization in OB co-cultured with IVD cells, results of alkaline phosphatase (ALP) activity and gene expression of major bone genes were inconclusive. However, in NPC, AFC and CEPC beads, an up-regulation of several BMP antagonist genes could be detected. Despite being able to show several indicators for an inhibition of osteoinductive effects due to IVD cells, the reasons for pseudarthrosis after spinal fusion remain unclear.
机译:脊柱融合术是解决一系列脊柱病变(如椎间盘受损或退化)的常见外科手术方法。取出椎间盘(IVD)后,放置结构垫片,然后进行内部固定,并通过自然的骨生长融合退化的节段。由于其骨诱导特性,骨形态发生蛋白(BMP)被应用于促进脊柱融合。尽管脊柱融合术在大多数患者中都是成功的,但腰椎融合术后的不愈合率在5%至35%之间。临床观察和最新研究表明,椎间盘组织切除不彻底可能导致脊柱融合失败。然而,仍然不清楚椎间盘(IVD)细胞中BMP拮抗剂的分泌是否可能是抑制骨形成的原因。在这项研究中,我们共培养了人类原代成骨细胞(OB)和IVD细胞,即髓核(NPC),纤维环(AFC)和软骨终板细胞(CEPC),以测试IVD细胞对OB的可能抑制作用。尽管我们可以看到与IVD细胞共培养的OB中基质矿化程度降低的趋势,但碱性磷酸酶(ALP)活性和主要骨基因的基因表达的结果尚无定论。但是,在NPC,AFC和CEPC珠中,可以检测到一些BMP拮抗剂基因的上调。尽管能够显示出抑制IVD细胞引起的骨诱导作用的指标,但脊柱融合后假关节的原因尚不清楚。

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