Aggrecan degradation in human articular cartilage explants is mediated by both ADAMTS-4 and ADAMTS-5

被引:333
作者
Song, Ruo-Hua [1 ]
Tortorella, Micky D. [1 ]
Malfait, Anne-Marie [1 ]
Alston, James T. [1 ]
Yang, Zhiyong [1 ]
Arner, Elizabeth C. [1 ]
Griggs, David W. [1 ]
机构
[1] Pfizer Global Res & Dev, St Louis, MO USA
来源
ARTHRITIS AND RHEUMATISM | 2007年 / 56卷 / 02期
关键词
D O I
10.1002/art.22334
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Objective. Recent published studies have shown that cartilage from ADAMTS-5-knockout mice, but not ADAMTS-4- or ADAMTS-1-knockout mice, is significantly protected from degradation. The present study was undertaken to evaluate the respective roles of these enzymes in human cartilage breakdown, using a small interfering RNA (siRNA) approach to assess the effects of inhibition of each enzyme in normal and osteoarthritic (OA) explants. Methods. The activities of ARNA specifically targeting ADANITS-1, -4, and -5 were assessed by transfection into primary human chondrocytes and cultured human cartilage explants. At 24 hours, a cytokine stimulus was applied to normal, but not OA, samples to initiate a catabolic response. At designated times, total RNA was isolated and gene expression was measured by quantitative real-time reverse transcription-polymerase chain reaction. Aggrecan release and aggrecanase-generated neoepitope formation were determined by dye binding analysis and Western blotting, respectively. Results. Human chondrocytes and explants were efficiently transfected with ARNA that specifically decreased the expression of each targeted gene. Suppression of ADAMTS-4 and ADANITS-5, individually or in combination, attenuated the degradation of aggrecan in cytokine-stimulated normal cartilage. A reduction in aggrecan degradation was also observed following siRNA-mediated knockdown of either gene in unstimulated OA cartilage. In contrast, knockdown of ADANITS-1 failed to inhibit aggrecan loss. Conclusion. Despite the apparent dominant role of ADAMTS-5 in genetically modified mice, our data suggest that both ADAMTS-4 and ADAMTS-5 contribute to the structural damage that characterizes human OA.
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页码:575 / 585
页数:11
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