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:INBRX-120, a CD8α-targeted detuned IL-2 that selectively expands and activates tumoricidal effector cells for safe and durable in vivo responses.
INBRX-120, a CD8α-targeted detuned IL-2 that selectively expands and activates tumoricidal effector cells for safe and durable in vivo responses.
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通过其在表达 CD8α的效应细胞上独特的顺式信号传导活性,INBRX-120 克服了基于 IL-2 的治疗的主要局限性,并有效利用了 IL-2 强大的内在抗肿瘤活性。这种新型治疗策略有望带来更安全的临床活性,从而在更广泛的各种癌症适应症患者中诱导有意义的抗肿瘤疗效。
作为淋巴细胞增殖和激活的主要驱动因素,白细胞介素2(IL-2)是抗肿瘤反应的关键介质。尽管在部分患者中显示出良好活性,但IL-2(阿地白介素)更广泛的治疗应用受到严重剂量限制性毒性、免疫抑制性调节性T细胞扩增以及不良药代动力学(PK)特征的阻碍。近期的工程化改造努力,包括非α IL-2变体,已降低了毒性特征,但尚未在更广泛的患者群体中诱导出有意义的抗肿瘤活性。
我们设计了INBRX-120,一种靶向CD8α的Cisleukin™分子,由亲和力调谐的IL-2(IL2-x)通过效应沉默Fc结构域连接两个高亲和力CD8α特异性单域抗体组成。为证明这种大的亲和力差异使得定向IL-2顺式信号传导仅发生在表达CD8α的杀肿瘤效应细胞群体上,我们在体外测试了INBRX-120对靶细胞扩增、激活和抗肿瘤活性的影响。在同基因小鼠模型中单独或与程序性细胞死亡蛋白-1(PD-1)阻断联合评估了体内抗肿瘤疗效。在非人灵长类动物中进行了临床前安全性以及药效学(PD)和PK分析。
INBRX-120在体外和体内有效扩增并增强了CD8 T细胞和NK 细胞对肿瘤细胞的细胞毒性能力,而不影响调节性T细胞。在同系小鼠模型中,INBRX-120替代物单独使用以及与PD-1阻断联合使用均显示出安全、强效且持久的抗肿瘤疗效。在非人灵长类动物中,INBRX-120扩增并激活了表达CD8α的效应细胞,显示出良好的PK特征,并且在高达1 mg/kg的剂量下耐受良好。
As a major driver of lymphocyte proliferation and activation interleukin 2 (IL-2) is a crucial mediator for antitumor responses. Despite promising activity in a subset of patients, wider therapeutic utility of IL-2 (aldesleukin) has been hampered by severe dose-limiting toxicities, the expansion of immunosuppressive regulatory T cells and a poor pharmacokinetic (PK) profile. Recent engineering efforts, including non-α IL-2 variants, have lowered the toxicity profile, but have yet to induce meaningful antitumor activity in a wider patient population.
We engineered INBRX-120, a CD8α-targeted Cisleukin™ molecule consisting of an affinity tuned IL-2 (IL2-x) connected to two high affinity CD8α-specific single domain antibodies via an effector-silenced Fc domain. To show that this large affinity differential enables directed IL-2 cis-signaling exclusively on CD8α-expressing tumoricidal effector cell populations, INBRX-120 effects on target cell expansion, activation and antitumor activity were tested in vitro. In vivo antitumor efficacy was evaluated in syngeneic mouse models alone or in combination with programmed cell death protein-1 (PD-1) blockade. Preclinical safety, as well as pharmacodynamic (PD) and PK profiling was carried out in non-human primates.
INBRX-120 effectively expanded and enhanced the cytotoxic capacity of CD8 T cells and natural killer cells towards tumor cells without affecting regulatory T cells in vitro and in vivo. In syngeneic mouse models, INBRX-120 surrogate showed safe, potent, and durable antitumor efficacy alone and in combination with PD-1 blockade. In non-human primates, INBRX-120 expanded and activated CD8α-expressing effector cells, showed a favorable PK profile, and was well tolerated up to a dose of 1 mg/kg.
Through its unique cis-signaling activity on CD8α-expressing effector cells, INBRX-120 overcomes the major limitations of IL-2-based therapy and effectively harnesses IL-2's potent intrinsic antitumor activity. This novel therapeutic strategy promises safer clinical activity that could induce meaningful antitumor efficacy in a wider set of patients with various cancer indications.
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