CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:WTX-124, a Conditionally Activated Wild-Type IL2, Maximizes the Therapeutic Index of IL2, Unlike "Non-Alpha" Muteins.
WTX-124, a Conditionally Activated Wild-Type IL2, Maximizes the Therapeutic Index of IL2, Unlike "Non-Alpha" Muteins.
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高剂量白细胞介素2(HD IL-2)可使晚期癌症患者获得持久应答,但血管渗漏综合征(VLS)等危及生命的毒性限制其应用。为改善IL-2治疗指数,研究者开发了一类不与高亲和力IL-2受体α亚基(CD25)结合的IL-2分子。尽管这些“非α”突变体不引起VLS,但仍有其他剂量限制性毒性,且尚未显示与HD IL-2相当的抗肿瘤活性。
因此,研究者评估肿瘤激活型野生型IL-2分子WTX-124能否在不损害疗效的情况下提高IL-2耐受性。在小鼠模型中,野生型IL-2与CD25结合是充分激活肿瘤特异性CD8阳性T细胞并产生抗肿瘤疗效所必需的。
此外,即使存在FoxP3阳性调节性T细胞,野生型IL-2活化人原代TIL(肿瘤浸润淋巴细胞)的效力仍接近非α IL-2的100倍。药代动力学—受体占有率(PK/RO)模型显示,通过在外周遮蔽野生型IL-2,WTX-124可使TIL受体占有率较高、外周淋巴细胞受体占有率较低,而非α IL-2则不同。
因此,研究确定条件性激活野生型IL-2是一种有前景的工程策略,有望在不损害抗肿瘤活性的前提下提高IL-2耐受性。
High-dose interleukin 2 (HD IL2) produces durable responses in patients with advanced cancer, but its use is limited by life-threatening toxicities such as vascular leak syndrome (VLS). To improve the therapeutic index for IL2, a class of IL2 molecules has been engineered to not bind the alpha subunit (CD25) of the high-affinity IL2 receptor. Although these "non-alpha" muteins do not cause VLS, they have other dose-limiting toxicities and have yet to demonstrate antitumor activity comparable with HD IL2.
We therefore investigated the potential of a tumor-activated, wild-type IL2 molecule (WTX-124) to improve IL2 tolerability without compromising its efficacy. In mouse models, CD25 engagement by wild-type IL2 was required for optimal activation of tumor-specific CD8+ T cells and for antitumor efficacy.
Furthermore, wild-type IL2 was nearly 100-fold more potent than non-alpha IL2 in activating primary human tumor-infiltrating lymphocytes (TIL), even with FoxP3+ regulatory T cells present. Pharmacokinetic-receptor occupancy (PK/RO) modeling showed that by masking wild-type IL2 in the periphery, WTX-124 produces high RO on TILs but low RO on peripheral lymphocytes, unlike non-alpha IL2s.
These findings therefore identify the conditional activation of wild-type IL2 as a promising engineering strategy to improve IL2 tolerability without compromising its antitumor activity.
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