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首页> 外文期刊>European Physical Journal Plus >An optimal control approach for the interaction of immune checkpoints, immune system, and BCG in the treatment of superficial bladder cancer
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An optimal control approach for the interaction of immune checkpoints, immune system, and BCG in the treatment of superficial bladder cancer

机译:免疫检查点,免疫系统和BCG在浅表膀胱癌中相互作用的最佳控制方法

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One of the major setbacks in BCG immunotherapy of bladder cancer is the action of immune checkpoints on the immune system. They suppress the activated immune cells from spreading, detecting and attacking cancer cells. Moreover, the excessive side effects and toxicity of the BCG to normal cells are quite alarming. We propose a mathematical model that studies this dynamics and uses an optimal control approach to suggest the optimal BCG dose required to minimize the cancer cells and action of the immune checkpoints, as well as maximizing the number of immune and normal cells in the bladder. Numerical simulations of the controlled system reveal that the optimal BCG dosage (control function) shows that the number of immune cells rises, the cancer cells are eliminated, the activities of the checkpoints are reduced, and normal cells stay high maintaining the threshold level.
机译:BCG膀胱癌的BCG免疫疗法的主要挫折之一是免疫检查点对免疫系统的作用。 它们抑制活化的免疫细胞扩散,检测和攻击癌细胞。 此外,BCG对正常细胞的过度副作用和毒性是非常惊人的。 我们提出了一种研究这种动态的数学模型,并使用最佳的控制方法来提出最佳的BCG剂量,以最小化癌细胞和免疫检查点的作用,以及最大化膀胱中的免疫和正常细胞的数量。 受控系统的数值模拟表明,最佳BCG剂量(对照功能)表明免疫细胞的数量上升,消除了癌细胞,减少了检查点的活性,并且正常细胞保持高保持阈值水平。

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