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地塞米松诱导软骨细胞中糖皮质激素反应基因lipocalin 2的表达。

Dexamethasone-induced expression of the glucocorticoid response gene lipocalin 2 in chondrocytes.

作者信息

Owen H C, Roberts S J, Ahmed S F, Farquharson C

机构信息

Bone Biology Group, Roslin Institute, Edinburgh, UK.

出版信息

Am J Physiol Endocrinol Metab. 2008 Jun;294(6):E1023-34. doi: 10.1152/ajpendo.00586.2007. Epub 2008 Apr 1.

Abstract

Glucocorticoids (GC) are commonly used anti-inflammatory drugs, but long-term use can result in marked growth retardation in children due to their actions on growth plate chondrocytes. To gain an insight into the mechanisms involved in GC-induced growth retardation, we performed Affymetrix microarray analysis of the murine chondrogenic cell line ATDC5, incubated with 10(-6) M dexamethasone (Dex) for 24 h. Downregulated genes included secreted frizzled-related protein and IGF-I, and upregulated genes included serum/GC-regulated kinase, connective-tissue growth factor, and lipocalin 2. Lipocalin 2 expression increased 40-fold after 24-h Dex treatment. Expression increased further after 48-h (75-fold) and 96-h (84-fold) Dex treatment, and this response was Dex concentration dependent. Lipocalin 2 was immunolocalized to both proliferating and hypertrophic growth plate zones, and its expression was increased by Dex in primary chondrocytes at 6 h (3-fold, P < 0.05). The lipocalin 2 response was blocked by the GC-receptor antagonist RU-486 and was increased further by the protein synthesis blocker cycloheximide. Proliferation in lipocalin 2-overexpressing cells was less than in control cells (49%, P < 0.05), and overexpression caused an increase in collagen type X expression (4-fold, P < 0.05). The effects of lipocalin 2 overexpression on chondrocyte proliferation (64%, P < 0.05) and collagen type X expression (8-fold, P < 0.05) were further exacerbated with the addition of 10(-6) M Dex. This synergistic effect may be explained by a further increase in lipocalin 2 expression with Dex treatment of transfected cells (45%, P < 0.05). These results suggest that lipocalin 2 may mediate Dex effects on chondrocytes and provides a potential novel mechanism for GC-induced growth retardation.

摘要

糖皮质激素(GC)是常用的抗炎药物,但长期使用会因对生长板软骨细胞的作用而导致儿童明显生长迟缓。为深入了解GC诱导生长迟缓的机制,我们对小鼠软骨生成细胞系ATDC5进行了Affymetrix微阵列分析,该细胞系用10⁻⁶ M地塞米松(Dex)孵育24小时。下调的基因包括分泌型卷曲相关蛋白和胰岛素样生长因子-I,上调的基因包括血清/GC调节激酶、结缔组织生长因子和脂质运载蛋白2。脂质运载蛋白2在24小时Dex处理后表达增加了40倍。在48小时(75倍)和96小时(84倍)Dex处理后表达进一步增加,且这种反应呈Dex浓度依赖性。脂质运载蛋白2免疫定位在增殖和肥大生长板区域,在原代软骨细胞中,Dex在6小时时使其表达增加(3倍,P < 0.05)。脂质运载蛋白2的反应被GC受体拮抗剂RU - 486阻断,并被蛋白质合成阻滞剂环己酰亚胺进一步增强。脂质运载蛋白2过表达细胞中的增殖低于对照细胞(49%,P < 0.05),过表达导致X型胶原表达增加(4倍,P < 0.05)。加入10⁻⁶ M Dex后,脂质运载蛋白2过表达对软骨细胞增殖(64%,P < 0.05)和X型胶原表达(8倍,P < 0.05)的影响进一步加剧。这种协同效应可能是由于用Dex处理转染细胞后脂质运载蛋白2表达进一步增加(45%,P < 0.05)来解释。这些结果表明脂质运载蛋白2可能介导Dex对软骨细胞的作用,并为GC诱导的生长迟缓提供了一种潜在的新机制。

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