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Molecular Therapy for Degenerative Disc Disease: Clues from Secretome Analysis of the Notochordal Cell-Rich Nucleus Pulposus

机译:椎间盘退变疾病的分子疗法:脊索丰富细胞髓核的分泌组分析的线索

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摘要

Degenerative disc disease (DDD) is associated with spinal pain often leading to long-term disability. However, the non-chondrodystrophic canine intervertebral disc is protected from the development of DDD, ostensibly due to its retention of notochordal cells (NC) in the nucleus pulposus (NP). In this study, we hypothesized that secretome analysis of the NC-rich NP will lead to the identification of key proteins that delay the onset of DDD. Using mass-spectrometry, we identified 303 proteins including components of TGFβ- and Wnt-signaling, anti-angiogeneic factors and proteins that inhibit axonal ingrowth in the bioactive fractions of serum free, notochordal cell derived conditioned medium (NCCM). Ingenuity Pathway Analysis revealed TGFβ1 and CTGF as major hubs in protein interaction networks. In vitro treatment with TGFβ1 and CTGF promoted the synthesis of healthy extra-cellular matrix proteins, increased cell proliferation and reduced cell death in human degenerative disc NP cells. A single intra-discal injection of recombinant TGFβ1 and CTGF proteins in a pre-clinical rat-tail disc injury model restored the NC and stem cell rich NP. In conclusion, we demonstrate the potential of TGFβ1 and CTGF to mitigate the progression of disc degeneration and the potential use of these molecules in a molecular therapy to treat the degenerative disc.
机译:椎间盘退变性疾病(DDD)与脊柱疼痛相关,常常导致长期残疾。然而,表面上非软骨营养不良的犬椎间盘受到DDD的保护,这显然是由于其在髓核(NP)中保留了脊索细胞(NC)。在这项研究中,我们假设富含NC的NP的分泌组分析将导致鉴定延迟DDD发作的关键蛋白。使用质谱法,我们鉴定了303种蛋白质,包括TGFβ和Wnt信号的成分,抗血管生成因子以及抑制无血清,脊索细胞衍生条件培养液(NCCM)生物活性级分中轴突向内生长的蛋白质。创造力途径分析显示,TGFβ1和CTGF是蛋白质相互作用网络中的主要枢纽。 TGFβ1和CTGF的体外治疗促进了健康的细胞外基质蛋白的合成,增加了人类变性椎间盘NP细胞的细胞增殖并降低了细胞死亡。在临床前的鼠尾椎间盘损伤模型中,单次椎间盘内注射重组TGFβ1和CTGF蛋白可恢复富含NC和干细胞的NP。总之,我们证明了TGFβ1和CTGF减轻椎间盘退变的进展的潜力,以及这些分子在分子疗法中治疗退行性椎间盘的潜在用途。

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