免疫检查点阻断通过扩增效应 CD8⁺ T 细胞克隆增强淋巴细胞清除性化疗诱导的抗肿瘤免疫
Immune Checkpoint Blockade Augments Lymphodepleting Chemotherapy-Induced Antitumor Immunity by Expanding Effector CD8+ T-cell Clones.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:CCR7(+) dendritic cells sorted by binding of CCL19 show enhanced Ag-presenting capacity and antitumor potency.
CCR7(+) dendritic cells sorted by binding of CCL19 show enhanced Ag-presenting capacity and antitumor potency.
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树突状细胞治疗已成为癌症现有治疗选择中的有前景补充,应用逾20年,但尚未取得突破。要成功启动免疫应答,树突状细胞必须进入淋巴结;截至目前的治疗性树突状细胞给药经验显示,这一过程往往效率极低。趋化因子受体CCR7是调控树突状细胞迁移至淋巴结的主要因子,而体外生成的树突状细胞通常呈现异质性CCR7表达。
本研究显示,使用化学合成配体CCL19对CCR7阳性树突状细胞亚群进行阳性筛选,可富集淋巴结迁移和抗原呈递能力更强的细胞,其趋化因子表达特征也提示其与T细胞相互作用改善。与含有相同数量CCR7阳性细胞的未分选树突状细胞群相比,富集的CCR7阳性细胞具有更强的淋巴结归巢能力。这表明,要增强CCR7阳性细胞向淋巴结迁移,需要将其与CCR7阴性细胞分离,而非仅进行CCL19暴露。在皮下和转移性黑色素瘤模型中,经CCR7表达分选的树突状细胞可诱发更强的CD8 T细胞驱动抗肿瘤免疫应答,并与肿瘤负荷降低和生存增加相关。
最后,研究显示,该方法可利用相同试剂及临床级流式分选直接转化至人类树突状细胞治疗。
Dendritic cell therapy has been a promising addition to the current armory of therapeutic options in cancer for more than 20 years but has not yet achieved breakthrough success. To successfully initiate immunity, dendritic cells have to enter the lymph nodes.
However, experience to date of therapeutic dendritic cell administration indicates that this is frequently an extremely inefficient process. The major regulator of dendritic cell migration to the lymph nodes is the chemokine receptor CCR7 and in vitro generated dendritic cells typically display heterogeneous expression of this receptor.
Here we demonstrate that positive selection for the dendritic cell subpopulation expressing CCR7, using a chemically-synthesized ligand:CCL19, enriches for cells with enhanced lymph node migration and Ag presentation competence as well as a chemokine expression profile indicative of improved interactions with T cells. This enhanced lymph node homing capacity of enriched CCR7+ cells is seen in comparison to a population of unsorted dendritic cells containing an equivalent number of CCR7+ dendritic cells.
Importantly, this indicates that separating the CCR7+ dendritic cells from the CCR7- cells, rather than simple CCL19 exposure, is required to affect the enhanced lymph node migration of the CCR7+ cells. In models of both subcutaneous and metastatic melanoma, we demonstrate that the dendritic cells sorted for CCR7 expression trigger enhanced CD8 T-cell driven antitumor immune responses which correlate with reduced tumor burden and increased survival.
Finally, we demonstrate that this approach is directly translatable to human dendritic cell therapy using the same reagents coupled with clinical-grade flow-cytometric sorting.
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