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Elevated extracellular matrix production and degradation upon bone morphogenetic protein-2 (BMP-2) stimulation point toward a role for BMP-2 in cartilage repair and remodeling

机译:骨形态发生蛋白2(BMP-2)刺激后细胞外基质的产生和降解升高,表明BMP-2在软骨修复和重塑中的作用

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摘要

Bone morphogenetic protein-2 (BMP-2) has been proposed as a tool for cartilage repair and as a stimulant of chondrogenesis. In healthy cartilage, BMP-2 is hardly present, whereas it is highly expressed during osteoarthritis. To assess its function in cartilage, BMP-2 was overexpressed in healthy murine knee joints and the effects on proteoglycan (PG) synthesis and degradation were evaluated. Moreover, the contribution of BMP in repairing damage induced by interleukin-1 (IL-1) was investigated. Ad-BMP-2 was injected intra-articularly into murine knee joints, which were isolated 3, 7, and 21 days after injection for histology, immunohistochemistry, and autoradiography. In addition, patellar and tibial cartilage was isolated for RNA isolation or measurement of PG synthesis by means of 35SO4 2- incorporation. To investigate the role for BMP-2 in cartilage repair, cartilage damage was induced by intra-articular injection of IL-1. After 2 days, Ad-BMP-2, Ad-BMP-2 + Ad-gremlin, Ad-gremlin, or a control virus was injected. Whole knee joints were isolated for histology at day 4 or patellae were isolated to measure 35SO42- incorporation. BMP-2 stimulated PG synthesis in patellar cartilage on all days and in tibial cartilage on day 21. Aggrecan mRNA expression had increased on all days in patellar cartilage, with the highest increase on day 7. Collagen type II expression showed a similar expression pattern. In tibial cartilage, collagen type II and aggrecan mRNA expression had increased on days 7 and 21. BMP-2 overexpression also induced increased aggrecan degradation in cartilage. VDIPEN staining (indicating matrix metalloproteinase activity) was elevated on day 3 in tibial cartilage and on days 3 and 7 in patellar cartilage, but no longer was by day 21. Increased NITEGE staining (indicating aggrecanase activity) was found on days 7 and 21. In IL-1-damaged patellar cartilage, BMP-2 boosted PG synthesis. Blocking of BMP activity resulted in a decreased PG synthesis compared with IL-1 alone. This decreased PG synthesis was associated with PG depletion in the cartilage. These data show that BMP-2 boosts matrix turnover in intact and IL-damaged cartilage. Moreover, BMP contributes to the intrinsic repair capacity of damaged cartilage. Increased matrix turnover might be functional in replacing matrix molecules in the repair of a damaged cartilage matrix.
机译:骨形态发生蛋白2(BMP-2)已被提出作为软骨修复的工具和软骨形成的刺激物。在健康的软骨中,几乎不存在BMP-2,而在骨关节炎中高表达。为了评估其在软骨中的功能,BMP-2在健康的鼠膝关节中过表达,并评估了其对蛋白聚糖(PG)合成和降解的影响。此外,研究了BMP在修复白介素1(IL-1)诱导的损伤中的作用。将Ad-BMP-2关节内注射到小鼠膝关节中,在注射后3、7和21天进行分离,以进行组织学,免疫组织化学和放射自显影。另外,分离35骨和胫骨软骨用于RNA分离或通过35SO 4 2-掺入测量PG合成。为了研究BMP-2在软骨修复中的作用,通过关节内注射IL-1诱导了软骨损伤。 2天后,注射Ad-BMP-2,Ad-BMP-2 + Ad-gremlin,Ad-gremlin或对照病毒。在第4天分离全膝关节用于组织学,或分离isolated骨以测量35SO42-掺入。 BMP-2整天刺激pa骨软骨和第21天胫骨软骨中的PG合成。Ag骨软骨中Aggrecan mRNA表达全天都增加,而第7天的增幅最高。II型胶原蛋白表达显示了相似的表达模式。在胫骨软骨中,II型胶原蛋白和聚集蛋白聚糖mRNA表达在第7天和第21天增加。BMP-2过表达也诱导软骨聚集蛋白聚糖降解增加。在胫骨软骨的第3天,pa骨软骨的第3天和第7天,VDIPEN染色(指示基质金属蛋白酶活性)升高,但在第21天时不再升高。在第7和21天发现NITEGE染色增加(指示软骨聚集蛋白聚糖酶活性)。在IL-1损伤的pa骨软骨中,BMP-2增强了PG的合成。与单独的IL-1相比,BMP活性的阻断导致PG合成减少。 PG合成的减少与软骨中PG的消耗有关。这些数据表明,BMP-2可以促进完整和IL损伤的软骨的基质更新。此外,BMP有助于受损软骨的内在修复能力。基质更新的增加可能在修复受损软骨基质中替代基质分子中起作用。

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