CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Fluorescence tracking CD8 T cells from tumor-draining lymph nodes to irradiated tumors and their activation in the tumor environment.
Fluorescence tracking CD8 T cells from tumor-draining lymph nodes to irradiated tumors and their activation in the tumor environment.
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放射治疗是一种有效的针对癌细胞的定点细胞毒性疗法。在临床前模型中,CD8 T 细胞对于放射治疗实现最佳肿瘤控制至关重要,然而 CD8 T 细胞对辐射敏感,会在治疗野内被清除。受照射的肿瘤可以被治疗时位于照射野之外的 T 细胞重新填充。
我们使用 Kaede 光转换小鼠模型追踪了来源于肿瘤引流淋巴结并在放射治疗后进入肿瘤的 CD8 T 细胞。我们发现,放射治疗诱导新浸润到肿瘤内的 CD8 T 细胞表达 CD69;然而,这种激活并非抗原特异性激活,而是由放射治疗后释放的 I 型干扰素所介导。这种效应具有放射剂量依赖性,并且需要癌细胞中 cGAS 的表达。数学建模表明,放射治疗导致治疗后存活的 CD8 T 细胞在肿瘤环境中的滞留增加。通过追踪肿瘤抗原特异性 CD8 T 细胞从肿瘤引流淋巴结向肿瘤的移动,我们可以观察到这些细胞在肿瘤环境中迅速表达耗竭标志物。这些事件发生在放射治疗介导的肿瘤引流淋巴结中抗原特异性 T 细胞扩增之前。这些数据明确证明了 CD8 T 细胞从肿瘤引流淋巴结向受照射肿瘤的移动,并鉴定了一种固有炎症介导的 T 细胞激活机制,该机制可能影响 T 细胞滞留并加速受照射肿瘤的重新填充。
Radiation is an effective site-specific cytotoxic therapy for cancer cells. In preclinical models, CD8 T cells are essential for optimum tumor control by radiation therapy, yet CD8 T cells are radiosensitive and depleted within the treatment field. Irradiated tumors can be refilled with T cells that were outside the field at the time of treatment. Using the Kaede photoconvertible mouse model we tracked CD8 T cells that originated in the tumor-draining lymph node and entered the tumor following radiation therapy.
We show that radiation induces CD69 expression in newly infiltrating CD8 T cells within the tumor; however, this activation is not antigen-specific activation, but rather ois mediated by type I interferon released following radiation therapy. This effect is radiation dose dependent and requires cGAS expression in the cancer cells. Mathematical modeling demonstrates that radiation results in increased retention of surviving CD8 T cells in the tumor environment following treatment.
By tracking the movement of tumor antigen-specific CD8 T cells from the tumor-draining lymph node to the tumor, we can observe that these cells rapidly express exhaustion markers in the tumor environment. These events occur in advance of radiation-mediated antigen-specific T cell expansion in the tumor-draining lymph node.
These data formally demonstrate movement of CD8 T cells from the tumor-draining lymph node to the irradiated tumor and identify a mechanism of innate inflammation-mediated T cell activation that may impact T cell retention and accelerates refilling of the irradiated tumor.
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