CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Transient-resting culture after activation enhances the generation of CD8(+) stem cell-like memory T cells from peripheral blood mononuclear cells.
Transient-resting culture after activation enhances the generation of CD8(+) stem cell-like memory T cells from peripheral blood mononuclear cells.
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过继性细胞治疗(ACT)已经彻底改变了癌症患者的治疗格局。ACT 的疗效在很大程度上取决于转移 T 细胞的状态,尤其是其具有干细胞样特性的低分化状态,这种状态可增强 ACT 的有效性。干细胞样记忆 T(T SCM)细胞表现出类似于多能干细胞的持续自我更新和多向分化能力。T SCM 细胞是癌症免疫治疗中有前景的候选细胞,但在转移前维持更接近干细胞样的状态仍具有挑战性。
在此,我们建立了一种从外周血单个核细胞(PBMC)中高效生成 CD8 + T SCM 细胞的方案。该过程包括使用抗 CD3 单克隆抗体和 RetroNectin 激活 PBMC,随后进行短暂静息培养期(24 h),并在白细胞介素-2 存在下进行后续长期体外扩增。
我们报告,与传统培养方法相比,这种激活后的短暂静息培养可将 CD8 + T 细胞维持在干细胞记忆表型(CD95 + CD45RA + CCR7 +)。
此外,与传统培养方法相比,即使在长期培养后,该方法仍可降低 T 细胞免疫球蛋白黏蛋白-3(一种耗竭标志物)的表达,并增加 T 细胞因子-1(干细胞性的主调控因子)的表达。
总之,我们的研究提出了一种简化且具有成本效益的体外生成和扩增 CD8 + T SCM 细胞的方法。该方法简化了利用 ACT 优化癌症免疫治疗的流程。
Adoptive cell therapy (ACT) has revolutionized the treatment of patients with cancer. The success of ACT depends largely on transferred T cell status, particularly their less-differentiated state with stem cell-like properties, which enhances ACT effectiveness. Stem cell-like memory T (T SCM ) cells exhibit continuous self-renewal and multilineage differentiation similar to pluripotent stem cells. T SCM cells are promising candidates for cancer immunotherapies, whereas maintenance of a more stem-cell-like state before transfer is challenging.
Here, we established a highly efficient protocol for generating CD8 + T SCM cells from peripheral blood mononuclear cells (PBMCs). The process involved activating PBMCs using anti-CD3 monoclonal antibody and RetroNectin, followed by a transient-resting culture period (24 h) and subsequent long-term expansion in vitro with interlukien-2.
We report that this transient-resting culture after activation preserves CD8 + T cells in a stem memory phenotype (CD95 + CD45RA + CCR7 + ) compared to the conventional culture method.
Further, this approach reduces the expression of T cell immunoglobulin mucin-3, an exhaustion marker, and increases the expression of T cell factor-1, a master regulator of stemness even after long-term culture compared to the conventional culture method.
In conclusion, our study presents a simplified and cost-effective method for generating and expanding CD8 + T SCM cells ex vivo. This approach streamlines the optimization of cancer immunotherapy using ACT.
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