RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:A Precision Engineered Interleukin-2 for Bolstering CD8+ T- and NK-cell Activity without Eosinophilia and Vascular Leak Syndrome in Nonhuman Primates.
A Precision Engineered Interleukin-2 for Bolstering CD8+ T- and NK-cell Activity without Eosinophilia and Vascular Leak Syndrome in Nonhuman Primates.
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我们创建了一种精确聚乙二醇化的 IL-2 [SAR-444245 (SAR'245) 或 pegenzileukin,前称 THOR-707],旨在促进靶向 CD8+ T 和 NK 细胞增殖以发挥抗癌活性,同时最小化对抗其作用的抗靶点调节性 CD4+ T 细胞 (Treg) 或触发血管渗漏综合征 (VLS) 的嗜酸性粒细胞的扩增。我们在非人灵长类 (NHP) 中进行了体内研究,以监测 SAR'245 的安全性、药代动力学特征和药效学参数,包括外周 CD8+ T 和 NK 细胞的扩增,以及对 Tregs 和嗜酸性粒细胞的影响。研究包括多次递增给药和采用不同方案(QW、Q2W、Q3W 和 Q4W)的重复给药。我们还使用人原代细胞进行了离体研究,以进一步评估 SAR'245 单独及与程序性细胞死亡 1 (PD-1) 检查点抑制剂联合对靶细胞的刺激作用。SAR'245 在 NHP 中的药代动力学特征显示剂量比例暴露,重复给药时具有可比性。它引起外周 CD8+ T 和 NK 细胞的扩增,各剂量和多次给药方案之间具有可比性。每周一次给药未显示显著不良效应,包括在高达 1 mg/kg 的剂量水平下无 VLS 的标志性体征。离体实验中,SAR'245 单独及与 PD-1 抑制剂联合均增强了 T 细胞受体反应,而未诱导与细胞因子释放综合征或 VLS 相关的细胞因子。结果支持 SAR'245 作为治疗实体瘤的候选药物单独或与 PD-1 抑制剂的临床开发。 意义:SAR-444245 (SAR'245, pegenzileukin) 是一种延长半衰期的 IL-2,靶向效应 CD8+ T 和 NK 细胞,对调节性 T 细胞影响很小。我们在非人灵长类模型中显示,该模型与人类免疫功能和IL-2反应高度接近,SAR'245选择性激活CD8+ T和NK效应细胞,且无明显严重副作用(血管渗漏综合征或细胞因子释放综合征),提示其用于人类实体瘤治疗的潜力。
UNLABELLED: We have created a precisely pegylated IL-2 [SAR-444245 (SAR'245) or pegenzileukin, previously THOR-707] designed for proliferation of target CD8+ T and NK cells for anticancer activity, with minimal expansion of anti-target regulatory CD4+ T cells (Treg) that counter their action, or eosinophils that trigger vascular leak syndrome (VLS).
We performed in vivo studies in nonhuman primates (NHP) to monitor the safety of SAR'245, pharmacokinetic profile, and pharmacodynamic parameters including expansion of peripheral CD8+ T and NK cells, and effects on Tregs and eosinophils. Studies included multiple ascending dosing and repeat dosing with different regimens (QW, Q2W, Q3W and Q4W).
We also conducted ex vivo studies using human primary cells to further evaluate SAR'245 stimulation of target cells alone and in combination with programmed cell-death 1 (PD-1) checkpoint inhibitors. The pharmacokinetic profile of SAR'245 in NHP demonstrated dose-proportional exposure that was comparable with redosing. It elicited expansion of peripheral CD8+ T and NK cells that was comparable with each dose and with multiple dosing regimens. Once-weekly dosing showed no significant adverse effects, including no hallmark signs of VLS at dosing levels up to 1 mg/kg.
Ex vivo, SAR'245 enhanced T-cell receptor responses alone and in combination with PD-1 inhibitors without inducing cytokines associated with cytokine release syndrome or VLS. Results support the clinical development of SAR'245 as a drug candidate for the treatment of solid tumors, alone or in combination with PD-1 inhibitory agents. SIGNIFICANCE: SAR-444245 (SAR'245, pegenzileukin) is an extended half-life IL-2 that targets effector CD8+ T and NK cells, with little effect on regulatory T cells.
We show that in the nonhuman primate model that closely approximates human immune function and response to IL-2, SAR'245 selectively activates CD8+ T and NK effectors without significant serious side effects (vascular leak syndrome or cytokine release syndrome), suggesting its potential for the treatment of solid tumors in humans.
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