CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:INBRX-106: a hexavalent OX40 agonist that drives superior antitumor responses via optimized receptor clustering.
INBRX-106: a hexavalent OX40 agonist that drives superior antitumor responses via optimized receptor clustering.
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我们的数据证实,六价 INBRX-106 是一种具有差异化特征且更强效的 OX40 激动剂,其通过诱导更优的受体聚集和多聚体结合,展现出克服传统二价疗法局限性的能力。
靶向免疫检查点抑制剂的免疫疗法革新了癌症治疗,但患者应答不完全限制了疗效。OX40(CD134)是肿瘤坏死因子受体家族成员,对T细胞存活和分化至关重要;作为共刺激受体激动剂,OX40在临床前研究中显示前景,但因受体活化不足而临床成功有限。传统二价OX40激动剂无法诱导实现最佳下游信号所需的三聚体结合。为此,我们开发了六价OX40激动剂INBRX-106,旨在不依赖Fc介导交联而增强受体聚簇,并提高T细胞抗肿瘤应答。
采用NF-κB报告基因实验、共聚焦显微镜、流式细胞术和单细胞RNA测序,评估INBRX-106对受体聚簇、信号转导和T细胞活化的影响。在小鼠肿瘤模型和人离体样本中评估治疗效力,并分析一项I/II期试验(NCT04198766)的临床样本以评估免疫活化。
与二价激动剂相比,INBRX-106能更有效诱导受体聚簇和下游信号,从而强效激活并促进T细胞增殖。在小鼠模型中,六价OX40激动作用显著促进肿瘤消退、延长生存并增强CD8+ T细胞效应功能。对接受INBRX-106治疗患者血液样本的临床药效学分析显示,T细胞活化和增殖增强,尤其是中央记忆和效应记忆亚群,验证了临床前结果。
我们的数据确立六价INBRX-106是一种具有独特特性且效力更强的OX40激动剂,能够通过诱导更强受体聚簇和多聚体结合,克服传统二价疗法的局限。这种独特的聚簇机制可放大OX40信号,在临床前及临床环境中促进强效T细胞活化、增殖和效应功能。这些发现凸显INBRX-106的治疗潜力,并为其进一步临床开发与检查点抑制剂联合使用提供了有力依据。
Immunotherapies targeting immune checkpoint inhibitors have revolutionized cancer treatment but are limited by incomplete patient responses. Costimulatory agonists like OX40 (CD134), a tumor necrosis factor receptor family member critical for T-cell survival and differentiation, have shown preclinical promise but limited clinical success due to suboptimal receptor activation. Conventional bivalent OX40 agonists fail to induce the trimeric engagement required for optimal downstream signaling. To address this, we developed INBRX-106, a hexavalent OX40 agonist designed to enhance receptor clustering independently of Fc-mediated crosslinking and boost antitumor T-cell responses.
We assessed INBRX-106's effects on receptor clustering, signal transduction, and T-cell activation using NF-k reporter assays, confocal microscopy, flow cytometry, and single-cell RNA sequencing. Therapeutic efficacy was evaluated in murine tumor models and ex vivo human samples. Clinical samples from a phase I/II trial (NCT04198766) were also analyzed for immune activation.
INBRX-106 demonstrated superior receptor clustering and downstream signaling compared with bivalent agonists, leading to robust T-cell activation and proliferation. In murine models, hexavalent OX40 agonism resulted in significant tumor regression, enhanced survival, and increased CD8 + T-cell effector function. Clinical pharmacodynamic analysis in blood samples from patients treated with INBRX-106 showed heightened T-cell activation and proliferation, particularly in central and effector memory subsets, validating our preclinical findings.
Our data establish hexavalent INBRX-106 as a differentiated and more potent OX40 agonist, showcasing its ability to overcome the limitations of conventional bivalent therapies by inducing superior receptor clustering and multimeric engagement. This unique clustering mechanism amplifies OX40 signaling, driving robust T-cell activation, proliferation, and effector function in preclinical and clinical settings. These findings highlight the therapeutic potential of INBRX-106 and its capacity to redefine OX40-targeted immunotherapy, providing a compelling rationale for its further clinical development in combination with checkpoint inhibitors.
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