CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Tumor cell spheroid-induced suppression of primary human cytotoxic T cells as a scalable in vitro model of exhaustion.
Tumor cell spheroid-induced suppression of primary human cytotoxic T cells as a scalable in vitro model of exhaustion.
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对体外原代人 CTL 表型(包括抑制状态)的这一全面表征,应有助于其在基础研究中的应用、靶向 CTL 疗法的开发及其作用机制的确定。
细胞毒性T淋巴细胞(CTL)是抗肿瘤免疫应答中的关键效应细胞。然而,其功能在肿瘤中通常以耗竭CTL的形式受到抑制。理解抑制机制以及克服抑制的治疗方法具有重要的基础和转化意义,但由于在体外难以获得大量耗竭CTL而受到阻碍。
我们利用三维组织培养生成功能受抑制的原代人CTL。通过功能实验、21种抗体流式细胞术组合以及钙信号测定和CTL肿瘤细胞偶联维持的检测,我们对其表型进行了表征。
我们表明,这些细胞与来自肿瘤的耗竭 CTL 高度相似。为了更好地理解体外人类原代 CTL 作为治疗开发中的关键工具,在诱导抑制前后,我们确定了 CTL 功能对生成方法、抗原剂量以及两种 T 细胞受体和多种肿瘤细胞系间亲和力的依赖性。作为对其表型的进一步确定,我们研究了 CTL 的形态和亚细胞 F-actin 分布,这些是效应功能的关键调节因素。人类原代 CTL 即使在缺乏抗原的情况下也能与肿瘤靶细胞形成细胞偶联。然而,这种细胞偶联的逐渐稳定与 CTL 效应功能的增加相关。诱导抑制显著降低了 CTL 肿瘤细胞偶联的稳定性。
Cytotoxic T lymphocytes (CTL) are key effectors in the antitumor immune response. However, their function is commonly suppressed in tumors in the form of exhausted CTL. Understanding mechanisms of suppression and of therapeutics to overcome them is of substantial basic and translational importance yet hindered by limited access to large numbers of exhausted CTL in vitro.
Here we use three-dimensional tissue culture to generate primary human CTL with suppressed function. Using functional assays, a 21-antibody flow cytometry panel and determination of calcium signaling and CTL tumor cell couple maintenance, we have characterized their phenotype.
We show that these cells closely resemble exhausted CTL from tumors. For a better understanding of in vitro human primary CTL as key tools in therapeutic development, before and after induction of suppression, we have determined the dependence of CTL function on methodology of generation, antigen dose, and affinity across two T-cell receptors and multiple tumor cell lines. As a further determination of their phenotype, we have investigated the morphology and subcellular F-actin distributions of CTL as key regulators of effector function. Primary human CTL formed cell couples with tumor target cells even in the absence of antigen. Yet, the gradual stabilization of such cell couples was associated with increasing CTL effector function. Induction of suppression substantially destabilized CTL tumor cell couples.
This comprehensive characterization of the phenotype of in vitro primary human CTL, including a suppressed state, should facilitate their use in basic research, the development of CTL-targeting therapeutics and the determination of their mechanism of action.
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