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A Rapid Fluorescence-Based Assay for Classification of iNKT Cell Activating Glycolipids

机译:基于快速荧光的iNKT细胞活化糖脂分类方法

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摘要

Structural variants of α-galactosylceramide (αGC) that activate invariant natural killer T cells (iNKT cells) are being developed as potential immunomodulatory agents for a variety of applications. Identification of specific forms of these glycolipids that bias responses to favor production of proinflammatory vs anti-inflammatory cytokines is central to current efforts, but this goal has been hampered by the lack of in vitro screening assays that reliably predict the in vivo biological activity of these compounds. Here we describe a fluorescence-based assay to identify functionally distinct αGC analogues. Our assay is based on recent findings showing that presentation of glycolipid antigens by CD1d molecules localized to plasma membrane detergent-resistant microdomains (lipid rafts) is correlated with induction of interferon-γ secretion and Th1-biased cytokine responses. Using an assay that measures lipid raft residency of CD1d molecules loaded with αGC, we screened a library of ∼200 synthetic αGC analogues and identified 19 agonists with potential Th1-biasing activity. Analysis of a subset of these novel candidate Th1 type agonists in vivo in mice confirmed their ability to induce systemic cytokine responses consistent with a Th1 type bias. These results demonstrate the predictive value of this novel in vitro assay for assessing the in vivo functionality of glycolipid agonists and provide the basis for a relatively simple high-throughput assay for identification and functional classification of iNKT cell activating glycolipids.
机译:激活不变的自然杀伤性T细胞(iNKT细胞)的α-半乳糖苷神经酰胺(αGC)的结构变体正在开发为多种应用的潜在免疫调节剂。这些糖脂的特定形式的鉴定偏向于倾向于促炎性和抗炎性细胞因子产生的反应是当前努力的核心,但是由于缺乏可靠地预测这些糖脂的体内生物学活性的体外筛选测定法,这一目标受到了阻碍。化合物。在这里,我们描述了一种基于荧光的测定法,以鉴定功能独特的αGC类似物。我们的测定基于最近的发现,这些结果表明,定位于质膜去污剂抗性微区(脂质筏)的CD1d分子对糖脂抗原的呈递与干扰素-γ分泌和偏向Th1的细胞因子应答相关。我们使用一种测定负载αGC的CD1d分子的脂质筏驻留性的测定方法,筛选了约200个合成αGC类似物的文库,并鉴定了19种具有潜在Th1偏向活性的激动剂。对小鼠体内这些新型候选Th1型激动剂的子集进行分析,证实了它们诱导与Th1型偏倚一致的全身细胞因子反应的能力。这些结果证明了该新颖的体外测定法对评估糖脂激动剂的体内功能性的预测价值,并为相对简单的高通量测定法的基础提供了基础,该测定法用于鉴定和功能分类iNKT细胞活化糖脂。

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