De Groote D, Gevaert Y, Lopez M, Gathy R, Fauchet F, Dehart I, Jadoul M, Radoux D, Franchimont P
Department of Endocrinology, University of Liège, Belgium.
J Immunol Methods. 1993 Aug 9;163(2):259-67. doi: 10.1016/0022-1759(93)90130-y.
A new one-step culture-immunoassay procedure is described for testing cytokine production by immunocompetent cells in whole blood (WB) without the need for an isolation step. Briefly, WB samples or distilled water were added to RPMI medium containing specific anti-cytokine peroxidase-labelled monoclonal antibodies and incubated in micro-well plates coated with specific capture monoclonal antibodies, directed against distinct epitopes of the cytokine, and containing dried polyclonal activators (5.625 micrograms LPS + 1.125 micrograms PHA) or dried standards respectively. The optimalisation of the assay is described for an extended measurement range. The best compromise between sensitivity and linearity was obtained with the addition of 50 ng/well for TNF-alpha and IL-6 or 100 ng/well for IFN-gamma of unconjugate antibodies to the corresponding conjugate. The kinetics of individual production of each cytokine in WB of normal healthy donors showed values entering the standard range following incubation times of between 2 and 8 h for TNF-alpha, 2 and 4 h for IL-6, and 4 and 24 h for IFN-gamma. The sensitivity, the precision (intra-assay CVs) and the reproducibility (interassay CVs) of the assays were as follows: 70 pg/ml, < or = 14% and < or = 11% for TNF-alpha; 25 pg/ml, < or = 11% and < or = 16% for IL-6; 25 pg/ml, < or = 19% and < or = 20% for IFN-gamma. The accuracy (% of recovery) of the assays was in the order of 100% and between 40 and 60% in the absence or presence of polyclonal activators, reflecting the occurrence of an active production/consumption mechanism during the activation.
本文描述了一种新的一步法培养免疫分析法,用于检测全血(WB)中免疫活性细胞产生的细胞因子,无需进行分离步骤。简要地说,将WB样本或蒸馏水加入含有特异性抗细胞因子过氧化物酶标记单克隆抗体的RPMI培养基中,并在涂有特异性捕获单克隆抗体的微孔板中孵育,这些捕获单克隆抗体针对细胞因子的不同表位,分别含有干燥的多克隆激活剂(5.625微克脂多糖 + 1.125微克植物血凝素)或干燥的标准品。针对扩展的测量范围描述了该分析方法的优化。通过向相应的缀合物中添加50 ng/孔的TNF-α和IL-6非缀合抗体或100 ng/孔的IFN-γ非缀合抗体,在灵敏度和线性之间获得了最佳折衷。正常健康供体WB中每种细胞因子的个体产生动力学显示,TNF-α孵育2至8小时、IL-6孵育2至4小时、IFN-γ孵育4至24小时后,其值进入标准范围。该分析方法的灵敏度、精密度(批内变异系数)和重现性(批间变异系数)如下:TNF-α为70 pg/ml,≤14%且≤11%;IL-6为25 pg/ml,≤11%且≤16%;IFN-γ为25 pg/ml,≤19%且≤20%。该分析方法的准确度(回收率%)在100%左右,在不存在或存在多克隆激活剂的情况下为40%至60%,这反映了激活过程中存在活跃的产生/消耗机制。