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骨形态发生蛋白9通过重塑现有胶原框架诱导未成熟关节软骨的出生后区域分层。

BMP9 induces postnatal zonal stratification of immature articular cartilage through reconfiguration of the existing collagen framework.

作者信息

Anderson-Watters Miles, Khan Ilyas M

机构信息

Faculty of Medicine, Health and Life Science, Swansea University, Swansea, United Kingdom.

出版信息

Front Cell Dev Biol. 2025 Jan 28;12:1511908. doi: 10.3389/fcell.2024.1511908. eCollection 2024.

Abstract

Articular cartilage lines bones in synovial joints, and its main structural element, collagen, has an arcade-like arrangement formed from an initially random network in a process called postnatal maturation. This reshaping of the extracellular matrix is similar across all species and is critical for the lifelong strength and durability of cartilage. Collagen remodelling during maturation is difficult to study because it spans a period of time between birth and puberty, and in larger animals this can be months or years. In this study, we show that growth factor bone morphogenetic protein-9 (BMP9) induces collagen remodelling in intact immature articular cartilage explants within 21 days, generating the characteristic arcade-like structure and zonal anisotropic architecture of adult cartilage. In explants exposed to BMP9, collagen fibrils underwent angular displacement from 19° to 78° with respect to the surface, cell density decreased 1.77-fold, and chondrons were significantly larger. The absence of labelling with anti-COL2¾m, a marker of collagen turnover, showed that the existing fibril network was restructured. We found that stromelysin-1 (metalloproteinase-3, MMP3) gene expression was consistently upregulated, whilst other MMP transcript levels were unchanged or reduced. Remodelling was dependent on proteoglycan turnover and could be inhibited using PD166973. These data suggest a possible mechanism whereby MMP3 induces proteoglycan turnover and depolymerises collagen fibrils enabling them to undergo spatial reorganisation. This process may be driven by tissue swelling, which generates directional strain to align fibrils into an arcade-like pattern. The ability to induce tissue maturation advances the potential for engineering durable and functional cartilage for patients requiring joint repair due to diseases such as osteoarthritis.

摘要

关节软骨衬于滑膜关节的骨表面,其主要结构成分胶原蛋白具有一种拱廊样排列,这种排列由出生后成熟过程中最初随机的网络形成。细胞外基质的这种重塑在所有物种中都是相似的,对于软骨的终身强度和耐久性至关重要。成熟过程中的胶原蛋白重塑很难研究,因为它跨越了从出生到青春期的一段时间,在大型动物中这可能是数月或数年。在本研究中,我们表明生长因子骨形态发生蛋白9(BMP9)可在21天内诱导完整的未成熟关节软骨外植体中的胶原蛋白重塑,生成成年软骨特有的拱廊样结构和区域各向异性结构。在暴露于BMP9的外植体中,胶原纤维相对于表面发生了从19°到78°的角位移,细胞密度降低了1.77倍,软骨细胞显著增大。抗COL2αm(胶原蛋白周转的标志物)标记缺失表明现有纤维网络发生了重组。我们发现基质溶解素-1(金属蛋白酶-3,MMP3)基因表达持续上调,而其他MMP转录水平未改变或降低。重塑依赖于蛋白聚糖周转,并且可以使用PD166973抑制。这些数据提示了一种可能的机制,即MMP3诱导蛋白聚糖周转并使胶原纤维解聚,使其能够进行空间重组。这个过程可能由组织肿胀驱动,组织肿胀产生定向应变以使纤维排列成拱廊样模式。诱导组织成熟的能力提高了为因骨关节炎等疾病需要关节修复的患者构建持久且功能正常的软骨的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f6c/11810917/b28a701c1dcc/fcell-12-1511908-g001.jpg

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