J Clin Invest. 2013 Dec;123(12):5135-45. doi: 10.1172/JCI70231. Epub 2013 Nov 25.
Autoantibodies against cytokines, chemokines, and growth factors inhibit normal immunity and are implicated in inflammatory autoimmune disease and diseases of immune deficiency. In an effort to evaluate serum from autoimmune and immunodeficient patients for Abs against cytokines, chemokines, and growth factors in a high-throughput and unbiased manner, we constructed a multiplex protein microarray for detection of serum factor-binding Abs and used the microarray to detect autoantibody targets in SLE. We designed a nitrocellulose-surface microarray containing human cytokines, chemokines, and other circulating proteins and demonstrated that the array permitted specific detection of serum factor-binding probes. We used the arrays to detect previously described autoantibodies against cytokines in samples from individuals with autoimmune polyendocrine syndrome type 1 and chronic mycobacterial infection. Serum profiling from individuals with SLE revealed that among several targets, elevated IgG autoantibody reactivity to B cell-activating factor (BAFF) was associated with SLE compared with control samples. BAFF reactivity correlated with the severity of disease-associated features, including IFN-α-driven SLE pathology. Our results showed that serum factor protein microarrays facilitate detection of autoantibody reactivity to serum factors in human samples and that BAFF-reactive autoantibodies may be associated with an elevated inflammatory disease state within the spectrum of SLE.
自身抗体对抗细胞因子、趋化因子和生长因子,抑制正常免疫,并与炎症性自身免疫病和免疫缺陷病有关。为了高通量、无偏地评估自身免疫和免疫缺陷患者的血清中针对细胞因子、趋化因子和生长因子的 Abs,我们构建了一种用于检测血清因子结合 Abs 的多重蛋白微阵列,并使用该微阵列检测 SLE 中的自身抗体靶标。我们设计了一种含有人类细胞因子、趋化因子和其他循环蛋白的硝酸纤维素表面微阵列,并证明该阵列允许对血清因子结合探针进行特异性检测。我们使用该阵列检测了来自自身免疫性多内分泌综合征 1 型和慢性分枝杆菌感染个体的样本中先前描述的针对细胞因子的自身抗体。来自 SLE 患者的血清分析显示,与对照样本相比,几种靶标中,B 细胞激活因子 (BAFF) 的 IgG 自身抗体反应性升高与 SLE 相关。BAFF 反应性与疾病相关特征的严重程度相关,包括 IFN-α 驱动的 SLE 病理学。我们的结果表明,血清因子蛋白微阵列有助于检测人类样本中针对血清因子的自身抗体反应性,并且 BAFF 反应性自身抗体可能与 SLE 范围内的炎症性疾病状态升高有关。