Barton Kristen I, Heard Bryan J, Chung May, Sevick Johnathan L, Martin C Ryan, Achari Yamini, Frank Cyril B, Shrive Nigel G, Hart David A
McCaig Institute for Bone and Joint Health, Cumming School of Medicine, Health Sciences Centre, University of Calgary, 3330 Hospital Drive NW, Calgary, AB, T2N 4N1, Canada.
Schulich School of Engineering, University of Calgary, Calgary, AB, Canada.
Inflamm Res. 2017 Mar;66(3):239-248. doi: 10.1007/s00011-016-1009-z. Epub 2016 Nov 16.
To determine the ability of methylprednisolone acetate (MPA) to influence interleukin 1β (IL1β)-induced gene expression in ovine knee joint tissues.
Ovine articular cartilage, synovium, and infrapatellar fat pad (IPFP) explants.
Explants were treated with 10 M or 10 M MPA.
Explant treatment groups: (1) control (DMEM); (2) inflammation (IL1β); (3) IL1β + 10 M MPA; or (4) IL1β + 10 M MPA. Cell viability was assessed pre- and post-treatment. Expression of mRNA levels for inflammatory, degradative, anabolic, innate immunity, and adipose-related molecules was quantified via qPCR, and analyzed via the comparative C method.
Except for IL8 in a subset of cartilage locations, matrix metalloproteinases (MMPs) were the only genes consistently affected by MPA. MPA mitigated IL1β-induced MMP3 expression levels in all regions of the articular cartilage, and in the synovium and IPFP, while MMP1 mRNA expression levels were significantly decreased with MPA after IL1β in the tibial plateau and synovium, but paradoxical increases in the IPFP. MMP13 mRNA expression levels exhibited significant decreases with MPA after IL1β in the femoral condyles, tibial plateau, synovium, and IPFP.
MPA treatment suppressed IL1β-induced mRNA levels for MMPs in articular cartilage, synovium, and IPFP and was found to be tissue-, location-, and gene-specific.
确定醋酸甲泼尼龙(MPA)影响绵羊膝关节组织中白细胞介素1β(IL1β)诱导的基因表达的能力。
绵羊关节软骨、滑膜和髌下脂肪垫(IPFP)外植体。
外植体用10μM或100μM MPA处理。
外植体处理组:(1)对照组(DMEM);(2)炎症组(IL1β);(3)IL1β + 10μM MPA组;或(4)IL1β + 100μM MPA组。在处理前后评估细胞活力。通过qPCR定量炎症、降解、合成代谢、先天免疫和脂肪相关分子的mRNA水平表达,并通过比较Cq法进行分析。
除了在软骨部分位置的IL8外,基质金属蛋白酶(MMPs)是唯一始终受MPA影响的基因。MPA减轻了IL1β诱导的关节软骨所有区域、滑膜和IPFP中的MMP3表达水平,而在胫骨平台和滑膜中,IL1β刺激后MPA使MMP1 mRNA表达水平显著降低,但在IPFP中却出现矛盾的升高。在股骨髁、胫骨平台、滑膜和IPFP中,IL1β刺激后MPA使MMP13 mRNA表达水平显著降低。
MPA处理抑制了IL1β诱导的关节软骨、滑膜和IPFP中MMPs的mRNA水平,且发现其具有组织、位置和基因特异性。