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Novel mathematical models for cell-mediated cytotoxicity assays without applying enzyme kinetics but with combinations and probability: Bystanders in bulk effector cells influence results of cell-mediated cytotoxicity assays

机译:用于细胞介导的细胞毒性测定的新型数学模型,无需应用酶动力学,但具有组合和可能性:大量效应细胞中的旁观者会影响细胞介导的细胞毒性测定的结果

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摘要

Cell-mediated cytotoxicity assays are widely implemented to evaluate cell-mediated cytotoxic activity, and some assays are analyzed using the analogy of enzyme kinetics. In the analogy, the effector cell is regarded as the enzyme, the target cell as the substrate, the effector cell-target cell conjugate as the enzyme-substrate complex and the dead target cell as the product. However, the assumptions analogous to those of enzyme kinetics are not always true in cell-mediated cytotoxicity assays, and the parameter analogous to the Michaelis-Menten constant is not constant but is dependent on the number of effector cells. Therefore I present novel mathematical models for cell-mediated cytotoxicity assays without applying enzyme kinetics. I instead use combinations and probability, because analysis of cell-mediated cytotoxicity assays by applying enzyme kinetics seems controversial. With my original models, I demonstrate simulations of the data in previously published papers. The results are exhibited in the same forms as the corresponding data. Comparing the simulation results with the published data, the results seem to agree well with the data. From simulations of cytotoxic assays with bulk effector cells, it appears that bystanders in bulk effector cells increase both the cytotoxic activity and the motility of effector cells.
机译:细胞介导的细胞毒性测定法被广泛实施以评估细胞介导的细胞毒性活性,并且使用酶动力学的类比来分析某些测定法。类似地,将效应细胞视为酶,将靶细胞视为底物,将效应细胞-靶细胞结合物视为酶-底物复合物,将死亡靶细胞视为产物。但是,类似于酶动力学的假设在细胞介导的细胞毒性试验中并不总是正确的,并且与米氏(Michaelis-Menten)常数相似的参数不是恒定的,而是取决于效应细胞的数量。因此,我提出了在不应用酶动力学的情况下用于细胞介导的细胞毒性测定的新型数学模型。我改用组合和概率,因为通过应用酶动力学分析细胞介导的细胞毒性分析似乎是有争议的。使用原始模型,我在以前发表的论文中演示了数据模拟。结果以与相应数据相同的形式显示。将模拟结果与已发布的数据进行比较,结果似乎与数据非常吻合。从用大量效应细胞进行细胞毒性试验的模拟中,似乎效应细胞中的旁观者增加了细胞毒性活性和效应细胞的运动性。

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