PO.TB04.04 · 肿瘤生物学

表达人源化FcgammaR/FcRn小鼠模型的免疫应答特征分析

Characterization of the immunological responses in a mouse model expressing humanized FcgammaR/FcRn

海报缩略图:表达人源化FcgammaR/FcRn小鼠模型的免疫应答特征分析
编号 6072 展板 18 时间 4/21 02:00–05:00 区域 Section 26 主讲 Fabiane Sonego, MS;PhD
分会场 In Vivo Models 2: Genetically Engineered Mouse Models, PDXs, Syngeneic Models
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作者与单位 Authors & Affiliations

Angela Pappalardo1, Julie Donaghey2, Danielle Huggins2, Patrick Kirby2, Fabiane Sonego1, Gaëlle H. Martin1, Kader Thiam1

1genOway, Lyon, France,2Merida Biosciences, Cambridge, MA

摘要 Abstract

中文摘要
治疗性抗体通过利用Fc效应功能等免疫机制彻底改变了癌症治疗,这些功能依赖于IgG与Fcgamma受体(FcgammaRs)之间的相互作用。然而,由于FcgammaR和FcRn的表达和功能存在物种特异性差异,抗体药代动力学(PK)和药效动力学(PD)的临床前评估仍然充满挑战。我们此前报道了一种FcgammaR人源化小鼠模型,该模型表达类似人类的FcgammaR谱(包括FcgammaRI、FcgammaRIIA、FcgammaRIIB、FcgammaRIIIA和FcgammaRIIIB——genO-hFcgammaR)。这些受体具有功能活性,能够准确评估ADCC和B细胞清除等Fc效应功能。该模型展示了治疗性IgG的Fc依赖性活性,可区分具有常规与增强FcgammaR结合能力的抗体,并支持在临床前研究中对Fc工程化抗体进行排序。在此,我们描述了一种在人源化FcgammaRI、FcgammaRIIA、FcgammaRIIB、FcgammaRIIIA和FcgammaRIIIB基础上额外表达人FcRn的模型。由于FcRn参与IgG的循环再利用和转运,开发该模型旨在通过实现人FcRn介导的IgG循环再利用来增强PK研究的可转化性,同时保持对Fc工程化治疗性抗体的PD评估。我们现在的目标是在炎症和体液免疫背景下,表征人源化genO-FcgammaR/FcRn模型的免疫应答能力。具体而言,我们研究了这些小鼠在暴露于特定免疫刺激时,其免疫应答是否与野生型(WT)小鼠相当。我们评估了脂多糖(LPS)刺激后的细胞因子谱和细胞活化情况。在LPS刺激下,genO-hFcgammaR/hFcRn小鼠分泌炎症细胞因子的水平与WT对照组相当。此外,NK细胞和T细胞上的CD25和CD69表达上调。同样地,抗小鼠CD3抗体处理在genO-hFcgammaR/hFcRn和WT小鼠中均触发了以多种细胞因子生成升高为特征的快速免疫应答。最后,为评估体液应答,我们使用钥孔血蓝蛋白(KLH)作为免疫原进行了T细胞依赖性抗体应答试验。genO-hFcgammaR/hFcRn小鼠在KLH处理后成功产生了抗原特异性IgG和IgM抗体,证实了T细胞与B细胞之间的功能协作,这与在WT小鼠中观察到的情况一致。总之,这些结果表明genO-hFcgammaR/hFcRn小鼠具有免疫应答能力,并对免疫刺激产生生理性应答。该模型是在保留天然免疫功能的背景下研究Fc工程化治疗性抗体的强大而可靠的工具。genO-hFcgammaR/hFcRn模型也在进一步改进,以实现对hIgG1抗体的耐受性,并通过表达人免疫检查点提高治疗药物测试的灵活性。
查看英文原文 English abstract
Therapeutic antibodies have revolutionized cancer treatment by leveraging immune mechanisms such as Fc-effector functions, which depend on interactions between IgG and Fcgamma receptors (FcgammaRs). However, preclinical evaluation of antibody pharmacokinetics (PK) and pharmacodynamics (PD) remains challenging due to species-specific differences in FcgammaR and FcRn expression and function. We previously reported a FcgammaR humanized mouse model that expresses a human-like pattern of FcgammaRs (including FcgammaRI, FcgammaRIIA, FcgammaRIIB, FcgammaRIIIA, and FcgammaRIIIB - genO-hFcgammaR). These receptors are functional and enable accurate evaluation of Fc-effector functions such as ADCC and B-cell depletion. The model demonstrated Fc-dependent activity of therapeutic IgG, allowing differentiation between antibodies with regular versus enhanced FcgammaR binding, and supports ranking of Fc-engineered antibodies in preclinical studies. Herein we describe a model expressing human FcRn in addition to humanized FcgammaRI, FcgammaRIIA, FcgammaRIIB, FcgammaRIIIA, and FcgammaRIIIB. As the FcRn is involved in IgG recycling and transport, this model was developed to enhance the translatability of PK studies by enabling human FcRn-mediated IgG recycling, while maintaining PD assessment of Fc-engineered therapeutic antibodies . We now aim to characterize the immunological competence of the humanized genO-FcgammaR/FcRn model in the context of inflammation and humoral immunity. Specifically, we investigated whether the immune responses of these mice are comparable to those of wild-type (WT) mice when exposed to defined immunological challenges. We assessed cytokine profiles and cell activation following lipopolysaccharide (LPS) stimulation. Upon LPS challenge, genO-hFcgammaR/hFcRn mice secreted inflammatory cytokines at levels comparable to WT controls. Additionally, CD25 and CD69 were upregulated on NK and T cells. Similarly, treatment with anti-mouse CD3 antibody triggered a rapid immune response characterized by elevated production of multiple cytokines in both genO-hFcgammaR/hFcRn and WT mice. Finally, to evaluate humoral responses, we performed a T-cell dependent antibody response assay using Keyhole Limpet Hemocyanin (KLH) as immunogen. genO-hFcgammaR/hFcRn mice successfully produced antigen-specific IgG and IgM antibodies in response to treatment with KLH, confirming functional cooperation between T and B cells, as observed in WT mice. In summary, these results demonstrate that genO-hFcgammaR/hFcRn mice are immunologically competent and respond physiologically to immune challenges. This model is a robust and reliable tool for studying Fc-engineered therapeutic antibodies in a context that preserves native immune functionality. The genO-hFcgammaR/hFcRn model is also being improved to enable tolerability to hIgG1 antibodies, and flexibility of therapeutics testing through expression of human immune checkpoints.
利益披露 Disclosure
A. Pappalardo, genOway Employment, Stock, Stock Option. J. Donaghey, Merida Biosciences Employment, Stock, Stock Option. D. Huggins, Merida Biosciences Employment, Stock, Stock Option. P. Kirby, Merida Biosciences Employment, Stock, Stock Option. F. Sonego, genOway Employment, Stock, Stock Option. G. H. Martin, genOway Employment, Stock, Stock Option. K. Thiam, genOway Employment, g., Board of Directors, non-salaried role), Stock, Stock Option.

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