Departamento de Bioquimica e Imunologia, Faculdade de Medicina de Ribeirão Preto, Universidade de São Paulo, Ribeirão Preto, SP, Brazil.
Talanta. 2003 Jun 13;60(2-3):601-8. doi: 10.1016/S0039-9140(03)00188-7.
We have established a luminol- and a lucigenin-dependent CL methods to investigate the role of the receptors for Fc portion of IgG (FcgammaR) and/or complement receptors (CR) in mediating the oxidative burst in neutrophils from systemic lupus erythematosus (SLE) patients compared with healthy controls. In the luminol-CL system, all the reactive oxygen species (ROS) are responsible for light production, whereas in the lucigenin-CL system, only the first ROS generated, converts the lucigenin into an unstable intermediate molecule, which also emits light. First, neutrophils from healthy controls and SLE patients were stimulated with different IC opsonized or not with complement from normal human serum (NHS) or SLE serum, in presence of 10(-4) M luminol. This method was able to differentiate the role of the FcgammaR, CR and FcgammaR/CR co-operation in mediating the oxidative burst, as well as show that the oxidative burst mediated by these receptors was reduced in neutrophils from SLE patients. Second, neutrophils from healthy controls and SLE patients were stimulated with different IC, opsonized or not with NHS, in presence of 10(-3) M lucigenin. In this case, the lucigenin-CL system was also able to differentiate the role of FcgammaR and FcgammaR/CR co-operation, as well as show differences among healthy controls and two different groups of SLE patients according to their clinical manifestations. In conclusion, we have established two sensitive CL systems to study the role of FcgammaR and/or CR in stimulating the oxidative burst of neutrophils, which can be applied in monitoring the involvement of these receptors in the immunopathogenesis of SLE.
我们建立了鲁米诺和荧光素依赖性 CL 方法,以研究 Fc 段 IgG 受体(FcγR)和/或补体受体(CR)在介导系统性红斑狼疮(SLE)患者中性粒细胞氧化爆发中的作用,与健康对照组相比。在鲁米诺-CL 系统中,所有活性氧物质(ROS)都负责发光,而在荧光素-CL 系统中,只有第一个生成的 ROS 将荧光素转化为不稳定的中间分子,也会发光。首先,用不同的 IC 刺激来自健康对照者和 SLE 患者的中性粒细胞,并用正常人血清(NHS)或 SLE 血清中的补体预先孵育,存在 10(-4) M 鲁米诺。该方法能够区分 FcγR、CR 和 FcγR/CR 合作在介导氧化爆发中的作用,并表明 SLE 患者中性粒细胞介导的氧化爆发减少。其次,用不同的 IC 刺激来自健康对照者和 SLE 患者的中性粒细胞,用 NHS 预先孵育或不孵育,存在 10(-3) M 荧光素。在这种情况下,荧光素-CL 系统也能够区分 FcγR 和 FcγR/CR 合作的作用,并根据临床表现将健康对照者和两个不同组的 SLE 患者区分开来。总之,我们建立了两种敏感的 CL 系统来研究 FcγR 和/或 CR 在刺激中性粒细胞氧化爆发中的作用,可用于监测这些受体在 SLE 免疫发病机制中的参与。