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:Discovery of a Conditionally Activated IL-2 that Promotes Antitumor Immunity and Induces Tumor Regression.
Discovery of a Conditionally Activated IL-2 that Promotes Antitumor Immunity and Induces Tumor Regression.
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IL-2是一种临床上获批用于治疗黑色素瘤和肾细胞癌的细胞因子。遗憾的是,其临床效用受到该细胞因子全身性活性所驱动的严重副作用的制约。
在此,我们描述了一种条件性激活的IL-2前药WTX-124的设计与表征,该前药利用了肿瘤中失调的蛋白酶环境。WTX-124被设计为单一分子,包含一个失活结构域和一个半衰期延长结构域,二者通过蛋白酶可切割的连接子与完全活性的IL-2相连。
我们证明,失活结构域阻止了IL-2在非肿瘤组织中与其受体结合,从而最大限度地减少了与全身暴露于IL-2相关的毒性。半衰期延长元件改善了WTX-124相对于游离IL-2的药代动力学特征,允许更大的暴露量。WTX-124在肿瘤组织中优先被肿瘤相关蛋白酶激活,在肿瘤微环境中释放活性IL-2。体外实验证实WTX-124的活性依赖于蛋白水解激活,而体内WTX-124治疗以切割依赖的方式导致已建立肿瘤的完全排斥。在机制上,WTX-124治疗触发了T细胞和自然杀伤(NK)细胞的激活,并显著改变了肿瘤微环境的免疫激活特征,从而在同系肿瘤模型中显著抑制了肿瘤生长。
总体而言,这些数据表明WTX-124最大限度地降低了IL-2治疗在外周的毒性,同时在肿瘤微环境中保留了IL-2的完整药理学活性,支持其作为癌症免疫治疗药物的进一步开发。参见Silva撰写的相关Spotlight,第544页。
IL-2 is a cytokine clinically approved for the treatment of melanoma and renal cell carcinoma. Unfortunately, its clinical utility is hindered by serious side effects driven by the systemic activity of the cytokine.
Here, we describe the design and characterization of a conditionally activated IL-2 prodrug, WTX-124, that takes advantage of the dysregulated protease milieu of tumors. WTX-124 was engineered as a single molecule containing an inactivation domain and a half-life extension domain that are tethered to a fully active IL-2 by protease-cleavable linkers.
We show that the inactivation domain prevented IL-2 from binding to its receptors in nontumor tissues, thereby minimizing the toxicity associated with systemic exposure to IL-2. The half-life extension element improves the pharmacokinetic profile of WTX-124 over free IL-2, allowing for greater exposure.
WTX-124 was preferentially activated in tumor tissue by tumor-associated proteases, releasing active IL-2 in the tumor microenvironment. In vitro assays confirmed that the activity of WTX-124 was dependent on proteolytic activation, and in vivo WTX-124 treatment resulted in complete rejection of established tumors in a cleavage-dependent manner.
Mechanistically, WTX-124 treatment triggered the activation of T cells and natural killer (NK) cells, and markedly shifted the immune activation profile of the tumor microenvironment, resulting in significant inhibition of tumor growth in syngeneic tumor models. Collectively, these data demonstrate that WTX-124 minimizes the toxicity of IL-2 treatment in the periphery while retaining the full pharmacology of IL-2 in the tumor microenvironment, supporting its further development as a cancer immunotherapy treatment. See related Spotlight by Silva, p. 544.
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