关节白色脂肪组织产生的瘦素通过上调和激活基质金属蛋白酶诱导软骨降解。
Leptin produced by joint white adipose tissue induces cartilage degradation via upregulation and activation of matrix metalloproteinases.
机构信息
Musculoskeletal Research Group, Institute of Cellular Medicine, Medical School, Newcastle University, Newcastle-upon-Tyne, UK.
出版信息
Ann Rheum Dis. 2012 Mar;71(3):455-62. doi: 10.1136/annrheumdis-2011-200372. Epub 2011 Nov 9.
OBJECTIVES
To investigate the effect of leptin on cartilage destruction.
METHODS
Collagen release was assessed in bovine cartilage explant cultures, while collagenolytic and gelatinolytic activities in culture supernatants were determined by bioassay and gelatin zymography. The expression of matrix metalloproteinases (MMP) was analysed by real-time RT-PCR. Signalling pathway activation was studied by immunoblotting. Leptin levels in cultured osteoarthritic joint infrapatellar fat pad or peri-enthesal deposit supernatants were measured by immunoassay.
RESULTS
Leptin, either alone or in synergy with IL-1, significantly induced collagen release from bovine cartilage by upregulating collagenolytic and gelatinolytic activity. In chondrocytes, leptin induced MMP1 and MMP13 expression with a concomitant activation of STAT1, STAT3, STAT5, MAPK (JNK, Erk, p38), Akt and NF-κB signalling pathways. Selective inhibitor blockade of PI3K, p38, Erk and Akt pathways significantly reduced MMP1 and MMP13 expression in chondrocytes, and reduced cartilage collagen release induced by leptin or leptin plus IL-1. JNK inhibition had no effect on leptin-induced MMP13 expression or leptin plus IL-1-induced cartilage collagen release. Conditioned media from cultured white adipose tissue (WAT) from osteoarthritis knee joint fat pads contained leptin, induced cartilage collagen release and increased MMP1 and MMP13 expression in chondrocytes; the latter being partly blocked with an anti-leptin antibody.
CONCLUSIONS
Leptin acts as a pro-inflammatory adipokine with a catabolic role on cartilage metabolism via the upregulation of proteolytic enzymes and acts synergistically with other pro-inflammatory stimuli. This suggests that the infrapatellar fat pad and other WAT in arthritic joints are local producers of leptin, which may contribute to the inflammatory and degenerative processes in cartilage catabolism, providing a mechanistic link between obesity and osteoarthritis.
目的
研究瘦素对软骨破坏的影响。
方法
通过牛软骨外植体培养,评估胶原释放情况,通过生物测定和明胶酶谱法测定培养上清液中的胶原酶和明胶酶活性。通过实时 RT-PCR 分析基质金属蛋白酶 (MMP) 的表达。通过免疫印迹研究信号通路的激活。通过免疫测定法测量培养的骨关节炎关节髌下脂肪垫或骨赘沉积物上清液中的瘦素水平。
结果
瘦素单独或与白细胞介素-1 协同作用,通过上调胶原酶和明胶酶活性,显著诱导牛软骨胶原释放。在软骨细胞中,瘦素诱导 MMP1 和 MMP13 的表达,同时激活 STAT1、STAT3、STAT5、MAPK(JNK、Erk、p38)、Akt 和 NF-κB 信号通路。PI3K、p38、Erk 和 Akt 通路的选择性抑制剂阻断显著降低了软骨细胞中 MMP1 和 MMP13 的表达,并降低了瘦素或瘦素加白细胞介素-1 诱导的软骨胶原释放。JNK 抑制对瘦素诱导的 MMP13 表达或瘦素加白细胞介素-1 诱导的软骨胶原释放没有影响。来自骨关节炎膝关节脂肪垫的培养白色脂肪组织 (WAT) 的条件培养基含有瘦素,诱导软骨胶原释放并增加软骨细胞中 MMP1 和 MMP13 的表达;用抗瘦素抗体部分阻断。
结论
瘦素作为一种促炎脂肪因子,通过上调蛋白水解酶对软骨代谢发挥分解代谢作用,并与其他促炎刺激协同作用。这表明髌下脂肪垫和关节炎关节中的其他 WAT 是瘦素的局部产生者,可能有助于软骨分解代谢中的炎症和退行性过程,为肥胖症和骨关节炎之间提供了一种机制联系。