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BMP7 可减少纤维软骨细胞表型。

BMP7 reduces the fibrocartilage chondrocyte phenotype.

机构信息

Laboratory for Experimental Orthopedics, Department of Orthopedic Surgery, Maastricht University, Universiteitssingel 50, 6229 ER, Maastricht, The Netherlands.

Laboratory for Experimental Orthopedics, Department of Orthopedic Surgery, Maastricht University Medical Center, P.O. Box 5800, 6202 AZ, Maastricht, The Netherlands.

出版信息

Sci Rep. 2021 Oct 4;11(1):19663. doi: 10.1038/s41598-021-99096-0.

Abstract

The fibrocartilage chondrocyte phenotype has been recognized to attribute to osteoarthritis (OA) development. These chondrocytes express genes related to unfavorable OA outcomes, emphasizing its importance in OA pathology. BMP7 is being explored as a potential disease-modifying molecule and attenuates the chondrocyte hypertrophic phenotype. On the other hand, BMP7 has been demonstrated to relieve organ fibrosis by counteracting the pro-fibrotic TGFβ-Smad3-PAI1 axis and increasing MMP2-mediated Collagen type I turnover. Whether BMP7 has anti-fibrotic properties in chondrocytes is unknown. Human OA articular chondrocytes (HACs) were isolated from end-stage OA femoral cartilage (total knee arthroplasty; n = 18 individual donors). SW1353 cells and OA HACs were exposed to 1 nM BMP7 for 24 h, after which gene expression of fibrosis-related genes and fibrosis-mediating factors was determined by RT-qPCR. In SW1353, Collagen type I protein levels were determined by immunocytochemistry and western blotting. PAI1 and MMP2 protein levels and activity were measured with an ELISA and activity assays, respectively. MMP2 activity was inhibited with the selective MMP-2 inhibitor OA-Hy. SMAD3 activity was determined by a (CAGA)-reporter assay, and pSMAD2 levels by western blotting. Following BMP7 exposure, the expression of fibrosis-related genes was reduced in SW1353 cells and OA HACs. BMP7 reduced Collagen type I protein levels in SW1353 cells. Gene expression of MMP2 was increased in SW1353 cells following BMP7 treatment. BMP7 reduced PAI1 protein levels and -activity, while MMP2 protein levels and -activity were increased by BMP7. BMP7-dependent inhibition of Collagen type I protein levels in SW1353 cells was abrogated when MMP2 activity was inhibited. Finally, BMP7 reduced pSMAD2 levels determined by western blotting and reduced SMAD3 transcriptional activity as demonstrated by decreased (CAGA) luciferase reporter activity. Our data demonstrate that short-term exposure to BMP7 decreases the fibrocartilage chondrocyte phenotype. The BMP7-dependent reduction of Collagen type I protein expression seems MMP2-dependent and inhibition of Smad2/3-PAI1 activity was identified as a potential pathway via which BMP7 exerts its anti-fibrotic action. This indicates that in chondrocytes BMP7 may have a double mode-of-action by targeting both the hypertrophic as well as the fibrotic chondrocyte phenotype, potentially adding to the clinical relevance of using BMP7 as an OA disease-modifying molecule.

摘要

纤维软骨细胞表型已被认为与骨关节炎(OA)的发展有关。这些软骨细胞表达与不利的 OA 结局相关的基因,强调了其在 OA 病理学中的重要性。BMP7 被探索作为一种潜在的疾病修饰分子,可以减轻软骨细胞的肥大表型。另一方面,BMP7 通过拮抗促纤维化 TGFβ-Smad3-PAI1 轴和增加 MMP2 介导的 I 型胶原周转来减轻器官纤维化。BMP7 是否对软骨细胞具有抗纤维化特性尚不清楚。从终末期 OA 股骨软骨(全膝关节置换术;n=18 名个体供体)中分离出人 OA 关节软骨细胞(HAC)。用 1 nM BMP7 处理 SW1353 细胞和 OA HAC 24 小时,然后通过 RT-qPCR 测定纤维化相关基因和纤维化介导因子的基因表达。在 SW1353 中,通过免疫细胞化学和 Western blot 测定 I 型胶原蛋白水平。用 ELISA 和活性测定法分别测量 PAI1 和 MMP2 蛋白水平和活性。用选择性 MMP-2 抑制剂 OA-Hy 抑制 MMP2 活性。通过(CAGA)报告基因测定法测定 SMAD3 活性,通过 Western blot 测定 pSMAD2 水平。在 BMP7 暴露后,SW1353 细胞和 OA HAC 中的纤维化相关基因表达减少。BMP7 降低了 SW1353 细胞中的 I 型胶原蛋白水平。BMP7 处理后,SW1353 细胞中 MMP2 的基因表达增加。BMP7 降低了 PAI1 蛋白水平和活性,而 MMP2 蛋白水平和活性增加。当 MMP2 活性被抑制时,BMP7 依赖性抑制 SW1353 细胞中 I 型胶原蛋白水平的作用被废除。最后,通过 Western blot 测定发现 BMP7 降低了 pSMAD2 水平,并通过降低(CAGA)荧光素酶报告基因活性证明减少了 SMAD3 转录活性。我们的数据表明,短期暴露于 BMP7 可降低纤维软骨细胞表型。BMP7 依赖性降低 I 型胶原蛋白表达似乎依赖于 MMP2,抑制 Smad2/3-PAI1 活性被确定为 BMP7 发挥其抗纤维化作用的潜在途径。这表明在软骨细胞中,BMP7 可能通过靶向肥大和纤维化软骨细胞表型具有双重作用模式,这可能增加了将 BMP7 用作 OA 疾病修饰分子的临床相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fec/8490443/9dbdf2c43dae/41598_2021_99096_Fig1_HTML.jpg

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