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A novel multiparametric flow cytometry-based cytotoxicity assay simultaneously immunophenotypes effector cells: Comparisons to a 4 h 51Cr-release assay

机译:一种新型的基于多参数流式细胞术的细胞毒性分析同时免疫表型效应细胞:与4 h 51Cr释放分析的比较

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摘要

Natural killer (NK) cell- or T cell-mediated cytotoxicity traditionally is measured in 4-16h 51Cr-release assays (CRA). A new four-color flow cytometry-based cytotoxicity assay (FCC) was developed to simultaneously measure NK cell cytotoxicity and NK cell phenotype (CD3CD16+CD56+). Target cells, K562 or Daudi, were labeled with Cell Tracker Orange (CTO) prior to the addition of effector cells. Following co-incubation, 7 amino-actinomycin D (7-AAD) was added to measure death of target cells. The phenotype of effectors, viability of targets, the formation of tumor-effector cell conjugates and absolute numbers of all cells were measured based on light scatter (FSC/SSC), double discrimination of the fluorescence peak integral and height, and fluorescence intensity. Kinetic studies (0.5 and 1 to 4h) at different effector to target (E:T) cell ratios (50, 25, 12, and 6) confirmed that the 3h incubation was optimal. The FCC assay is more sensitive than the CRA, has a coefficient of variation (CV) 8–13% and reliably measures NK cell- or lymphokine-activated killer (LAK) cell-mediated killing of target cells in normal controls and subjects with cancer. The FCC assay can be used to study a range of phenotypic attributes, in addition to lytic activity of various subsets of effector cells, without radioactive tracers and thus, it is relatively inexpensive. The FCC assay has a potential for providing information about molecular interactions underlying target cell lysis and thus becoming a major tool for studies of disease pathogenesis as well as development of novel immune therapies.
机译:传统上,自然杀伤(NK)或T细胞介导的细胞毒性是在4-16h 51 Cr释放测定(CRA)中进行测量的。开发了一种新的基于四色流式细胞术的细胞毒性测定法(FCC),以同时测量NK细胞的细胞毒性和NK细胞表型(CD3 - CD16 + CD56 + )。在添加效应细胞之前,用Cell Tracker Orange(CTO)标记目标细胞K562或Daudi。共孵育后,添加7个氨基放线菌素D(7-AAD)以测量靶细胞的死亡。基于光散射(FSC / SSC),荧光峰积分和高度的双重判别以及荧光强度,测量了效应物的表型,靶标的存活力,肿瘤效应细胞结合物的形成以及所有细胞的绝对数量。在不同的效应子与靶标(E:T)细胞比例(50、25、12和6)下进行的动力学研究(0.5和1-4h)证实了3h孵育是最佳的。 FCC分析比CRA更为灵敏,变异系数(CV)为8–13%,并且可以可靠地测量NK细胞或淋巴因子激活的杀手(LAK)细胞介导的正常对照和癌症患者对靶细胞的杀伤。除了没有放射性示踪剂外,FCC分析还可以用于研究各种表型属性以及效应细胞各个亚群的裂解活性,因此相对便宜。 FCC分析具有提供有关靶细胞裂解基础分子相互作用的信息的潜力,因此成为研究疾病发病机理以及开发新型免疫疗法的主要工具。

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