研究概要
高剂量白细胞介素-2(IL-2)已用于治疗黑色素瘤和肾细胞癌,但该疗法疗效有限,应答率约为15%。
中文摘要
高剂量白细胞介素-2(IL-2)已被用于治疗黑色素瘤和肾细胞癌,但该疗法疗效有限,应答率约为15%。值得注意的是,7%-9%的患者可获得完全缓解或持久缓解。许多接受IL-2治疗的患者出现了调节性T细胞(Tregs)的扩增,特别是ICOS+高抑制性Tregs的扩增,这与较差的临床结局相关。这种部分疗效以及与该疗法相关的高毒性限制了基于IL-2的治疗的使用。考虑到对IL-2结构、信号传导和体内功能的认识,目前正在研究一些改善该细胞因子特性的尝试。在前期工作中,我们描述了一种IL-2突变蛋白(mutein),其抗肿瘤活性高于wtIL-2且毒性更低。该突变蛋白通过计算机模拟设计,旨在丧失与CD25的结合能力,并优先刺激效应细胞CD8+和NK细胞而非Tregs。该突变蛋白诱导的抗转移效果高于wtIL-2,但其体内抗肿瘤活性的程度仍未被探索。在本研究中,结果显示该突变蛋白在四种原发肿瘤模型中诱导了强效抗肿瘤作用,即使在wtIL-2无效的模型中仍然有效。此外,该突变蛋白可在健康小鼠和荷瘤小鼠中改变Tregs与T CD8+记忆/活化细胞之间的体内平衡,使其向免疫激活方向倾斜。这种变化可到达肿瘤微环境,似乎是对该突变蛋白体内疗效的主要解释。
展开英文摘要原文
High doses of interleukin-2 (IL-2) have been used for the treatment of melanoma and renal cell carcinoma, but this therapy has limited efficacy, with a ~15% response rate. Remarkably, 7%-9% of patients achieve complete or long-lasting responses. Many patients treated with IL-2 experienced an expansion of regulatory T cells (Tregs), specifically the expansion of ICOS + highly suppressive Tregs, which correlate with worse clinical outcomes. This partial efficacy together with the high toxicity associated with the therapy has limited the use of IL-2-based therapy. Taking into account the understanding of IL-2 structure, signaling, and in vivo functions, some efforts to improve the cytokine properties are currently under study. In previous work, we described an IL-2 mutein with higher antitumor activity and less toxicity than wtIL-2. Mutein was in silico designed for losing the binding capacity to CD25 and for preferential stimulation of effector cells CD8 + and NK cells but not Tregs. Mutein induces a higher anti-metastatic effect than wtIL-2, but the extent of the in vivo antitumor activity was still unexplored. In this work, it is shown that mutein induces a strong antitumor effect on four primary tumor models, being effective even in those models where wtIL-2 does not work. Furthermore, mutein can change the in vivo balance between Tregs and T CD8 + memory/activated cells toward immune activation, in both healthy and tumor-bearing mice. This change reaches the tumor microenvironment and seems to be the major explanation for mutein efficacy in vivo .
论文信息
- 作者
- Carmenate T、Montalvo G、Lozada SL、Rodriguez Y、Ortiz Y、Díaz C、Avellanet J、Kim J
- 单位
- Immune Regulation Department, Centro de Inmunología Molecular, Havana, Cuba.Cuba
- 文献类型
- 非美国政府资助研究
- 期刊
- Frontiers in immunology2022