首页> 外文期刊>American Journal of Pathology: Official Publication of the American Association of Pathologists >Transforming Growth Factor-{beta}2 Suppresses Collagen Cleavage in Cultured Human Osteoarthritic Cartilage, Reduces Expression of Genes Associated with Chondrocyte Hypertrophy and Degradation, and Increases Prostaglandin E2 Production.
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Transforming Growth Factor-{beta}2 Suppresses Collagen Cleavage in Cultured Human Osteoarthritic Cartilage, Reduces Expression of Genes Associated with Chondrocyte Hypertrophy and Degradation, and Increases Prostaglandin E2 Production.

机译:转化生长因子-β2抑制培养的人类骨关节炎软骨中的胶原蛋白裂解,减少与软骨细胞肥大和降解相关的基因的表达,并增加前列腺素E2的产生。

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摘要

Articular cartilage degeneration in osteoarthritis (OA) involves type II collagen degradation and chondrocyte differentiation (hypertrophy). Because these changes resemble growth plate remodeling, we hypothesized that collagen degradation may be inhibitable by growth factors known to suppress growth plate hypertrophy, namely transforming growth factor (TGF)-beta2, fibroblast growth factor (FGF)-2, and insulin. Full-depth explants of human OA knee articular cartilage from arthroplasty were cultured with TGF-beta2, FGF-2, and insulin in combination (growth factors) or individually. In cultured explants from five OA patients, collagenase-mediated type II collagen cleavage was significantly down-regulated by combined growth factors as measured by enzyme-linked immunosorbent assay. Individually, FGF-2 and insulin failed to inhibit collagen cleavage in some OA explants whereas TGF-beta2 reduced collagen cleavage in these 5 explants and in 19 additional explants. Moreover, TGF-beta2 effectively suppressed cleavage at low concentrations. Together or individually these growth factors did not inhibit glycosaminoglycan (primarily aggrecan) degradation while TGF-beta2 occasionally did. Semiquantitative reverse transcriptase-polymerase chain reaction of articular cartilage from six OA patients revealed that TGF-beta2 suppressed expression of matrix metalloproteinase-13 and matrix metalloproteinase-9, early (PTHrP) and late (COL10A1) differentiation-related genes, and proinflammatory cytokines (interleukin-1beta, tumor necrosis factor-alpha). In contrast, TGF-beta2 up-regulated PGES-1 expression and prostaglandin E(2) release. These observations show that TGF-beta2 can suppress collagen resorption and chondrocyte differentiation in OA cartilage and that this may be mediated by prostaglandin E(2). Therefore TGF-beta2 could provide therapeutic control of type II collagen degeneration in OA.
机译:骨关节炎(OA)中的关节软骨变性涉及II型胶原蛋白降解和软骨细胞分化(肥大)。因为这些变化类似于生长板重塑,所以我们假设胶原蛋白降解可能被已知抑制生长板肥大的生长因子抑制,即转化生长因子(TGF)-β2,成纤维细胞生长因子(FGF)-2和胰岛素。将来自关节成形术的人OA膝关节软骨的全深度外植体与TGF-β2,FGF-2和胰岛素组合(生长因子)或单独培养。在来自五名OA患者的培养的外植体中,胶原酶介导的II型胶原蛋白裂解被酶联免疫吸附法测定的联合生长因子显着下调。个别地,FGF-2和胰岛素未能抑制某些OA外植体中的胶原蛋白裂解,而TGF-beta2减少了这5个外植体和19个其他外植体中的胶原蛋白裂解。此外,TGF-β2在低浓度下可有效抑制裂解。这些生长因子一起或单独地不抑制糖胺聚糖(主要是聚集蛋白聚糖)的降解,而TGF-beta2有时会抑制。来自6例OA患者的关节软骨的半定量逆转录聚合酶链反应显示,TGF-β2抑制了基质金属蛋白酶13和基质金属蛋白酶9,早期(PTHrP)和晚期(COL10A1)分化相关基因以及促炎细胞因子的表达(白介素-1β,肿瘤坏死因子-α)。相反,TGF-beta2上调PGES-1表达和前列腺素E(2)释放。这些观察结果表明,TGF-β2可以抑制OA软骨中的胶原吸收和软骨细胞分化,这可能是由前列腺素E(2)介导的。因此,TGF-β2可以为OA中II型胶原变性提供治疗控制。

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