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Fibronectin fragments upregulate insulin-like growth factor binding proteins in chondrocytes.

机译:纤连蛋白片段上调软骨细胞中的胰岛素样生长因子结合蛋白。

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Addition of fibronectin fragments (Fn-fs) to cultured cartilage explants has been shown to mediate extensive cartilage matrix degradation followed by anabolic responses.Objective To determine whether specific Fn-fs regulate cartilage metabolism through a mechanism, in part, involving insulin-like growth factor (IGF) and insulin-like growth factor binding proteins (IGFBPs).Methods Primary bovine articular chondrocyte cultures were treated with Fn-fs. mRNA from the cultures was analysed by Northern blotting. Changes in the levels of IGFBPs in cellular extracts and conditioned media were analysed by Western ligand blotting. Explant cultures of bovine articular cartilage were used to assay release of exogenous IGF-I and IGFBP-2. An analog of IGF-I with altered affinity for IGFBPs was used to assay the effect of IGFBPs on proteoglycan synthesis.Results The Fn-fs increased protein levels of IGFBPs-2, -3 and -5 in conditioned media and of IGFBP-2 in cell extracts by as much as nine-fold. Conversely, the protein level of constitutively expressed IGBP-4 was decreased in conditioned medium. Northern blot analysis reflected increased IGFBP-3 mRNA but not decreased IGFBP-4 mRNA. The IGF-I analog was more effective at restoring PG synthesis suppression by Fn-fs than was wild type IGF-I.Conclusions The Fn-fs increased levels of IGFBPs in cultures of bovine articular chondrocytes and elicited release of IGFBP-2 and IGF-I from articular cartilage. The increased level of IGFBPs may trap IGF-I and account in part for the initial suppression of PG synthesis. Induced proteinases may subsequently liberate IGF-I and cause greatly enhanced anabolic processes, contributing to cartilage repair.
机译:已证明在培养的软骨外植体中添加纤连蛋白片段(Fn-fs)可以介导广泛的软骨基质降解和同化反应。目的确定特定的Fn-fs是否通过某种机制调节软骨代谢,该机制部分涉及胰岛素样生长方法:用Fn-fs处理原代牛关节软骨细胞培养物,并用胰岛素样生长因子结合蛋白(IGFBPs)处理。通过Northern印迹分析来自培养物的mRNA。通过Western配体印迹分析细胞提取物和条件培养基中IGFBPs水平的变化。牛关节软骨的外植体培养物用于测定外源性IGF-1和IGFBP-2的释放。用与IGFBPs亲和力改变的IGF-I类似物来分析IGFBPs对蛋白聚糖合成的影响。细胞提取物多达九倍。相反,在条件培养基中组成性表达的IGBP-4的蛋白质水平降低。 Northern印迹分析反映IGFBP-3 mRNA增加,但IGFBP-4 mRNA没有减少。与野生型IGF-I相比,IGF-I类似物更能有效恢复Fn-fs对PG的抑制作用。结论Fn-fs增加了牛关节软骨细胞培养物中IGFBPs的水平,并引发了IGFBP-2和IGF-我来自关节软骨。 IGFBP水平升高可能会诱捕IGF-I,部分原因是PG合成的最初抑制。诱导的蛋白酶可随后释放IGF-I,并导致合成代谢过程大大增强,从而促进软骨修复。

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