CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Modeling Combination Therapies and T Cell Exhaustion Dynamics in the Tumor Under Immune Checkpoint Blockade.
Modeling Combination Therapies and T Cell Exhaustion Dynamics in the Tumor Under Immune Checkpoint Blockade.
分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。
肿瘤微环境中的慢性抗原暴露驱动 CD8+ T 细胞耗竭,其特征是抑制性受体增加和效应功能减弱。免疫检查点阻断旨在预防或逆转耗竭,但其成功依赖于肿瘤浸润 T 细胞的预先存在状态。为了研究这一点,我们建立了一个数学模型,探讨:(1) T 细胞耗竭如何破坏肿瘤-免疫平衡,(2) anti-PD-L1 在不同耗竭状态下的疗效,以及 (3) 下一代疗法(如 IFNα-anti-PD-L1、PD1-IL2v)的疗效。稳定性分析和模拟揭示,肿瘤 PD-L1 表达对免疫动力学具有关键影响,尤其是无瘤状态与荷瘤状态的双稳态。高 PD-1 表达和耗竭率与肿瘤生长及耗竭程度较低的 CD8+ T 细胞扩增受损相关。虽然 anti-PD-L1 的疗效取决于基线耗竭程度,但严重耗竭会导致免疫逃逸。增强细胞毒性并维持耗竭程度较低 T 细胞群体的下一代疗法显示出更好的肿瘤控制,提示联合策略可能克服耐药。
Chronic antigen exposure in the tumor microenvironment drives CD 8 + T cell exhaustion, marked by increased inhibitory receptors and diminished effector functions. Immune checkpoint blockade seeks to prevent or reverse exhaustion, but its success relies on the pre-existing state of tumor-infiltrating T cells. To investigate this, we developed a mathematical model examining: (1) how T cell exhaustion disrupts tumor-immune equilibrium, (2) anti-PD-L1 efficacy across exhaustion states, and (3) efficacy of next-generation therapies (e. g. , IFN α -anti-PD-L1, PD1-IL2v).
Stability analysis and simulations reveal that tumor PD-L1 expression critically influences immune dynamics, particularly the bistability of tumor-free and tumorous states. High PD-1 expression and exhaustion rates correlate with growth of tumor and impaired expansion of less-exhausted CD 8 + T cells.
While anti-PD-L1 efficacy depends on baseline exhaustion, severe exhaustion enables immune escape. Next-generation therapies enhancing cytotoxicity and sustaining less-exhausted T cell populations show improved tumor control, suggesting combination strategies may overcome resistance.
MEMBER ACCOUNT
登录成功会直接打开下一页。