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首页> 外文期刊>Journal of Immunological Methods >Determination of human gamma delta T cell-mediated cytotoxicity using a non-radioactive assay system
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Determination of human gamma delta T cell-mediated cytotoxicity using a non-radioactive assay system

机译:使用非放射性测定系统测定人γδT细胞介导的细胞毒性

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The adoptive transfer of immune effector cells, such as CD8(+) killer alpha beta T cells, gamma delta T cells, NK (natural killer) cells, and genetically-modified T cells, has been receiving increasing attention. It is essential to determine cellular cytotoxicity so as to monitor the function and quality of ex vivo-expanded immune effector cells before infusion. The most common method is the [Cr-51]-sodium chromate release assay. It is, however, preferable to avoid the use of radioactive materials in clinical laboratories. In order to establish a non-radioactive alternative to the standard radioactive assay, we previously synthesized a chelate-forming prodrug (BM-HT) and demonstrated that a combination of BM-HT and europium (Eu3+) was useful to determine NK cell-mediated cytotoxicity. In the present study, we examined whether or not this improved assay system could be used to determine the cellular cytotoxicity exhibited by V gamma 2V delta 2(+) gamma delta T cells. In addition, we compared Eu3+ and terbium (Tb3+) in the measurement of cellular cytotoxicity. Our assay system using BM-HT could be used successfully for the analysis of both gamma delta T cell receptor (TCR)- and CD16-mediated cytotoxicity. When the intensity of fluorescence was compared between Eu3+ and Tb3+, Tb3+ chelate was more sensitive than Eu3+ chelate, suggesting that the detection system using Tb3+ is superior to Eu3+ when tumor cells are not efficiently labeled with BM-HT. The method established herein is expected to promote the development of novel adoptive cell therapies for cancer.
机译:免疫效应细胞的通过转移,例如CD8(+)杀手αβT细胞,γδT细胞,NK(天然杀伤剂)细胞和遗传修饰的T细胞一直受到越来越关注。确定细胞毒性至关重要,以监测输注前的emVivo-膨胀的免疫效应细胞的功能和质量。最常见的方法是[Cr-51] - 铬酸钠释放测定。然而,优选避免在临床实验室中使用放射性物质。为了建立标准放射性测定的非放射性替代品,我们先前合成了一种形成的螯合形成的前药(BM-HT)并证明了BM-HT和铕(EU3 +)的组合可用于确定NK细胞介导的细胞毒性。在本研究中,我们检查了这种改进的测定系统是否可用于确定Vγ2VDelta 2(+)γδT细胞表现出的细胞细胞毒性。此外,我们在测量细胞细胞毒性的测量中比较了EU3 +和铽(TB3 +)。我们的测定系统可以成功地用于分析γδT细胞受体(TCR)和CD16介导的细胞毒性的分析。当在EU3 +和Tb3 +之间比较荧光强度时,Tb3 +螯合物比Eu3 +螯合物更敏感,表明使用Tb3 +的检测系统优于Eu3 +当肿瘤细胞没有用BM-HT有效标记时。预计本文建立的方法将促进癌症新型养护细胞疗法的发展。

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