Meng Z H, Hudson A P, Schumacher H R, Baker J F, Baker D G
Arthritis-Immunology Center, Medical Research Service, Philadelphia DVA Medical Center, PA 19104, USA.
J Rheumatol. 1997 Dec;24(12):2385-8.
Tumor necrosis factor-alpha (TNF-alpha) is thought to be important in chronic inflammation of joints characteristic of crystal induced arthritis. Monocytes are instrumental in maintaining that inflammation. We investigated production of mRNA and protein for TNF-alpha in vitro in a murine mononuclear cell line, after exposure to relevant crystal types.
Using the cell line designated RAW 264.7, cells were grown in standard medium and exposed to varying amounts of monosodium urate (MSU), hydroxyapatite (HA), and calcium pyrophosphate dihydrate (CPPD) crystals for differing time periods. Analysis of TNF-alpha mRNA induced by such exposure was by Northern hybridization; analysis of TNF-alpha protein was by ELISA:
RNA analyses of cells treated with various levels of MSU, HA, and CPPD crystals showed strong induction of TNF-alpha transcripts. ELISA on culture supernatants confirmed high level TNF-alpha peptide secretion resulting from that transcriptional upregulation. Time course studies showed peak accumulation of TNF-alpha mRNA 1-6 h post-treatment. Study of the signalling pathway involved in TNF-alpha transcriptional upregulation indicated that increased phospholipase A2 activity was required.
These observations suggest that crystals in joints can directly stimulate production of TNF-alpha, and that the source of that cytokine may be the monocytes known to be present and playing an important role in chronic joint disease.
肿瘤坏死因子-α(TNF-α)被认为在晶体诱导性关节炎特有的关节慢性炎症中起重要作用。单核细胞在维持这种炎症中起作用。我们研究了在体外,一种小鼠单核细胞系在暴露于相关晶体类型后,TNF-α的mRNA和蛋白质的产生情况。
使用命名为RAW 264.7的细胞系,细胞在标准培养基中培养,并在不同时间段暴露于不同量的尿酸钠(MSU)、羟基磷灰石(HA)和二水焦磷酸钙(CPPD)晶体。通过Northern杂交分析这种暴露诱导的TNF-α mRNA;通过ELISA分析TNF-α蛋白质。
对用不同水平的MSU、HA和CPPD晶体处理的细胞进行RNA分析,显示TNF-α转录本有强烈诱导。对培养上清液进行ELISA证实,由于转录上调导致高水平的TNF-α肽分泌。时间进程研究显示,处理后1-6小时TNF-α mRNA积累达到峰值。对参与TNF-α转录上调的信号通路的研究表明,需要增加磷脂酶A2活性。
这些观察结果表明,关节中的晶体可直接刺激TNF-α的产生,并且该细胞因子的来源可能是已知存在于慢性关节疾病中并起重要作用的单核细胞。