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FcγR 基因多态性对 IgG 触发的细胞因子释放的影响:细胞检测方法的重要性。

Impact of Human FcγR Gene Polymorphisms on IgG-Triggered Cytokine Release: Critical Importance of Cell Assay Format.

机构信息

Antibody and Vaccine Group, Centre for Cancer Immunology, Cancer Sciences, Faculty of Medicine, University of Southampton, Southampton, United Kingdom.

Nuffield Department of Medicine, John Radcliffe Hospital, University of Oxford, Oxford, United Kingdom.

出版信息

Front Immunol. 2019 Mar 7;10:390. doi: 10.3389/fimmu.2019.00390. eCollection 2019.

Abstract

Monoclonal antibody (mAb) immunotherapy has transformed the treatment of allergy, autoimmunity, and cancer. The interaction of mAb with Fc gamma receptors (FcγR) is often critical for efficacy. The genes encoding the low-affinity FcγR have single nucleotide polymorphisms (SNPs) and copy number variation that can impact IgG Fc:FcγR interactions. Leukocyte-based assays remain one of the industry standards for determining mAb efficacy and predicting adverse responses in patients. Here we addressed the impact of FcγR genetics on immune cell responses in these assays and investigated the importance of assay format. FcγR genotyping of 271 healthy donors was performed using a Multiplex Ligation-Dependent Probe Amplification assay. Freeze-thawed/pre-cultured peripheral blood mononuclear cells (PBMCs) and whole blood samples from donors were stimulated with reagents spanning different mAb functional classes to evaluate the association of FcγR genotypes with T-cell proliferation and cytokine release. Using freeze-thawed/pre-cultured PBMCs, agonistic T-cell-targeting mAb induced T-cell proliferation and the highest levels of cytokine release, with lower but measurable responses from mAb which directly require FcγR-mediated cellular effects for function. Effects were consistent for individual donors over time, however, no significant associations with FcγR genotypes were observed using this assay format. In contrast, significantly elevated IFN-γ release was associated with the -131H/H genotype compared to -131R/R in whole blood stimulated with Campath ( ≤ 0.01) and IgG1 Fc hexamer ( ≤ 0.05). Donors homozygous for both the high affinity -131H and -158V alleles mounted stronger IFN-γ responses to Campath ( ≤ 0.05) and IgG1 Fc Hexamer ( ≤ 0.05) compared to donors homozygous for the low affinity alleles. Analysis revealed significant reductions in the proportion of CD14 monocytes, CD56 NK cells ( ≤ 0.05) and FcγRIIIa expression ( ≤ 0.05), in donor-matched freeze-thawed PBMC compared to whole blood samples, likely explaining the difference in association between FcγR genotype and mAb-mediated cytokine release in the different assay formats. These findings highlight the significant impact of and SNPs on mAb function and the importance of using fresh whole blood assays when evaluating their association with mAb-mediated cytokine release . This knowledge can better inform on the utility of assays for the prediction of mAb therapy outcome in patients.

摘要

单克隆抗体(mAb)免疫疗法改变了过敏、自身免疫和癌症的治疗方式。mAb 与 Fcγ 受体(FcγR)的相互作用通常对疗效至关重要。低亲和力 FcγR 的基因具有单核苷酸多态性(SNP)和拷贝数变异,可能影响 IgG Fc:FcγR 相互作用。基于白细胞的测定仍然是确定 mAb 疗效和预测患者不良反应的行业标准之一。在这里,我们研究了 FcγR 遗传对这些测定中免疫细胞反应的影响,并研究了测定格式的重要性。使用多重连接依赖性探针扩增测定法对 271 名健康供体进行了 FcγR 基因分型。来自供体的冷冻解冻/预培养外周血单核细胞(PBMC)和全血样本用跨越不同 mAb 功能类别的试剂刺激,以评估 FcγR 基因型与 T 细胞增殖和细胞因子释放的关联。使用冷冻解冻/预培养的 PBMC,激动性 T 细胞靶向 mAb 诱导 T 细胞增殖和最高水平的细胞因子释放,而功能上直接需要 FcγR 介导的细胞效应的 mAb 则产生较低但可测量的反应。随着时间的推移,对于个体供体的影响是一致的,但是,使用这种测定格式未观察到与 FcγR 基因型的显著关联。相比之下,与全血中刺激的 Campath(≤0.01)和 IgG1 Fc 六聚体(≤0.05)相比,-131H/H 基因型与 IFN-γ 释放的显著升高相关。与低亲和力等位基因相比,纯合高亲和力-131H 和-158V 等位基因的供体对 Campath(≤0.05)和 IgG1 Fc 六聚体(≤0.05)的 IFN-γ 反应更强。分析表明,与全血样本相比,冷冻解冻 PBMC 中 CD14 单核细胞、CD56 NK 细胞(≤0.05)和 FcγRIIIa 表达(≤0.05)的比例显著降低,这可能解释了不同测定格式中 FcγR 基因型与 mAb 介导的细胞因子释放之间的关联差异。这些发现强调了 和 SNPs 对 mAb 功能的重大影响,以及在评估它们与 mAb 介导的细胞因子释放的关联时使用新鲜全血测定的重要性。这些知识可以更好地告知 mAb 治疗结果预测的 测定的实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e85d/6417454/407ba043f450/fimmu-10-00390-g0001.jpg

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