Grimm E A, Thoma J A, Bonavida B
J Immunol. 1979 Dec;123(6):2870-7.
The kinetics and rate of T cell-mediated cytolysis was assessed by measuring the times required for lysis of isolated target cells by single cytotoxic lymphocytes. Single target cell lysis was determined microscopically by observing trypan blue uptake as a function of time of incubation of effector-target conjugates in agarose. Lysis of EL-4 target cells by alloimmune peritoneal exudate lymphocytes was initiated without a lag and was essentially complete at 2 hr. Both zero-order and first-order kinetics equations were analyzed for fit to the 0 to 2 hr lysis values. Statistically, the zero-order kinetic function could be rejected (p greater than 0.05), but the first-order kinetics function (p less than 0.01) could not. This strong evidence for first-order kinetics of T cell-mediated cytolysis implies that within each CTL-target cell population, cytolysis occurs exponentially as a random decay process and that one event in the entire process of cytolysis is rate limiting. The first-order equation was then applied to measurements of the rate of cytolysis in many different individual effector-target cell combinations. Significant differences in the lytic rate were apparent when either the effector or target cell were varied, with the rate constants spanning a 5-fold range. The heterogeneity of lytic rates is consistent with the hypothesis that lytic efficiency is a function of both the effector and target cells used.
通过测量单个细胞毒性淋巴细胞裂解分离的靶细胞所需的时间,评估T细胞介导的细胞溶解的动力学和速率。通过在显微镜下观察锥虫蓝摄取情况来确定单个靶细胞的裂解,这是效应细胞与靶细胞结合物在琼脂糖中孵育时间的函数。同种异体免疫腹膜渗出淋巴细胞对EL-4靶细胞的裂解没有延迟地开始,并且在2小时时基本完成。分析了零级和一级动力学方程与0至2小时裂解值的拟合情况。从统计学上看,零级动力学函数可以被拒绝(p大于0.05),但一级动力学函数(p小于0.01)不能被拒绝。T细胞介导的细胞溶解的一级动力学的这一有力证据表明,在每个CTL-靶细胞群体中,细胞溶解作为一个随机衰变过程呈指数发生,并且细胞溶解整个过程中的一个事件是限速的。然后将一级方程应用于许多不同的单个效应细胞-靶细胞组合的细胞溶解速率测量。当效应细胞或靶细胞发生变化时,裂解速率存在显著差异,速率常数范围跨越5倍。裂解速率的异质性与裂解效率是所用效应细胞和靶细胞两者的函数这一假设一致。