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周期性压缩负荷激活关节软骨细胞中的血管紧张素II 1型受体,并通过G蛋白依赖性途径刺激肥大分化。

Cyclic compressive loading activates angiotensin II type 1 receptor in articular chondrocytes and stimulates hypertrophic differentiation through a G-protein-dependent pathway.

作者信息

Nakamura Fumihisa, Tsukamoto Ichiro, Inoue Shinji, Hashimoto Kazuhiko, Akagi Masao

机构信息

Department of Orthopaedic Surgery Kindai University Hospital Osaka-Sayama Japan.

出版信息

FEBS Open Bio. 2018 May 21;8(6):962-973. doi: 10.1002/2211-5463.12438. eCollection 2018 Jun.

Abstract

Angiotensin II type 1 receptor (AT1R) appears to have a mechanosensing function in a number of cell types. The purpose of this study was to examine whether AT1R expressed in articular chondrocytes is involved in osteoarthritis (OA) progression and whether cyclic compressive loading activates the AT1R and stimulates hypertrophic differentiation of chondrocytes . The relationships between the modified Mankin score for cartilage degeneration and the expression of AT1R and type X collagen (Col X) were studied in mouse knees with OA induced using the destabilization-of-medial-meniscus model. Cyclic compressive loads were applied to cultured bovine articular chondrocytes in three-dimensional agarose scaffolds. Expression of Col X and runt-related transcription factor 2 (Runx2) was analyzed using RT-PCR and western blotting. We dissected the downstream pathway for intracellular signal transductions of AT1R including G-protein-dependent and G-protein-independent pathways. Positive significant correlations between the Mankin score and the rate of AT1R-immunopositive cells and between the rates of AT1R and Col X expression were noted. The expression of Col X and Runx2 was increased by compressive loading but suppressed by addition of olmesartan, an Ang II receptor blocker, to the agarose scaffolds. Compressive loading upregulated the phosphorylation of c-Jun N-terminal kinase (JNK), Src, and STAT1, but olmesartan significantly suppressed only JNK phosphorylation. We conclude that AT1R expressed by articular chondrocytes may be involved in OA progression . Mechanical stress can activate AT1R and stimulate hypertrophic differentiation of chondrocytes through the G-protein-dependent pathway. AT1R has a mechanosensing function in chondrocytes and may be a new therapeutic target in OA.

摘要

血管紧张素II 1型受体(AT1R)在多种细胞类型中似乎具有机械传感功能。本研究的目的是检查关节软骨细胞中表达的AT1R是否参与骨关节炎(OA)的进展,以及周期性压缩负荷是否激活AT1R并刺激软骨细胞的肥大分化。在使用内侧半月板失稳模型诱导OA的小鼠膝关节中,研究了软骨退变的改良Mankin评分与AT1R和X型胶原(Col X)表达之间的关系。将周期性压缩负荷施加于三维琼脂糖支架中培养的牛关节软骨细胞。使用RT-PCR和蛋白质印迹法分析Col X和 runt相关转录因子2(Runx2)的表达。我们剖析了AT1R细胞内信号转导的下游途径,包括G蛋白依赖性和G蛋白非依赖性途径。注意到Mankin评分与AT1R免疫阳性细胞率之间以及AT1R和Col X表达率之间存在正相关。压缩负荷增加了Col X和Runx2的表达,但在琼脂糖支架中添加血管紧张素II受体阻滞剂奥美沙坦可抑制其表达。压缩负荷上调了c-Jun N末端激酶(JNK)、Src和信号转导和转录激活因子1(STAT1)的磷酸化,但奥美沙坦仅显著抑制JNK磷酸化。我们得出结论,关节软骨细胞表达的AT1R可能参与OA的进展。机械应力可通过G蛋白依赖性途径激活AT1R并刺激软骨细胞的肥大分化。AT1R在软骨细胞中具有机械传感功能,可能是OA的一个新的治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3998/5986009/ce1042630b96/FEB4-8-962-g001.jpg

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