Lee Joanne H, Shao Shuai, Kim Michelle, Fernandes Stacey M, Brown Jennifer R, Kam Lance C
Department of Biomedical Engineering, Columbia University, New York, NY, United States.
Department of Medical Oncology, Harvard Medical School, Dana-Farber Cancer Institute, Boston, MA, United States.
Front Cell Dev Biol. 2021 Apr 9;9:648925. doi: 10.3389/fcell.2021.648925. eCollection 2021.
Expansion of an initial population of T cells is essential for cellular immunotherapy. In Chronic Lymphocytic Leukemia (CLL), expansion is often complicated by lack of T cell proliferation, as these cells frequently show signs of exhaustion. This report seeks to identify specific biomarkers or measures of cell function that capture the proliferative potential of a starting population of cells. Mixed CD4+/CD8+ T cells from healthy donors and individuals previously treated for CLL were characterized on the basis of proliferative potential and cellular functions. Single-factor analysis found little correlation between the number of populations doublings reached during expansion and either Rai stage (a clinical measure of CLL spread) or PD-1 expression. However, inclusion of IL-2 secretion and the propensity of cells to align onto micropatterned features of activating proteins as factors identified three distinct groups of donors. Notably, these group assignments provided an elegant separation of donors with regards to proliferative potential. Furthermore, these groups exhibited different motility characteristics, suggesting a mechanism that underlies changes in proliferative potential. This study describes a new set of functional readouts that augment surface marker panels to better predict expansion outcomes and clinical prognosis.
初始T细胞群体的扩增对于细胞免疫治疗至关重要。在慢性淋巴细胞白血病(CLL)中,扩增常常因T细胞增殖缺乏而变得复杂,因为这些细胞经常表现出耗竭的迹象。本报告旨在确定能够反映起始细胞群体增殖潜力的特定生物标志物或细胞功能指标。对来自健康供体和先前接受过CLL治疗的个体的混合CD4+/CD8+ T细胞,根据其增殖潜力和细胞功能进行了表征。单因素分析发现,扩增过程中达到的群体倍增数与Rai分期(CLL扩散的临床指标)或PD-1表达之间几乎没有相关性。然而,将IL-2分泌以及细胞附着于激活蛋白微图案特征的倾向作为因素纳入分析后,确定了三组不同的供体。值得注意的是,这些分组在增殖潜力方面对供体进行了很好的区分。此外,这些组表现出不同的运动特征,提示了一种增殖潜力变化背后的机制。本研究描述了一组新的功能读数,可补充表面标志物面板,以更好地预测扩增结果和临床预后。