γδ T 细胞调节小细胞肺癌中的抗肿瘤免疫
γδ T cells modulate anti-tumor immunity in small cell lung cancer.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Breast Cancer Stem Cell-Derived Tumors Escape from γδ T-cell Immunosurveillance In Vivo by Modulating γδ T-cell Ligands.
Breast Cancer Stem Cell-Derived Tumors Escape from γδ T-cell Immunosurveillance In Vivo by Modulating γδ T-cell Ligands.
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目前尚无针对三阴性乳腺癌(TNBC)患者的靶向疗法。TNBC中富含乳腺癌干细胞(BCSC),后者在转移、化疗耐药、复发和死亡率中发挥关键作用。γδ T细胞在抗肿瘤免疫治疗中具有巨大潜力,可能为治疗性靶向TNBC提供一种途径。γδ T细胞通常被观察到浸润实体瘤,并具有广泛的肿瘤感知机制,能够识别转化细胞上的应激诱导分子和磷酸抗原(pAgs)。
在此,我们证明,患者来源的三阴性BCSC可被来自健康供体的体外扩增γδ T细胞有效识别并杀伤。然而,原位异种移植的BCSC对γδ T细胞免疫治疗无应答。
我们揭示了协同分化和免疫逃逸机制:异种移植的BCSC失去了干性、γδ T细胞配体、黏附分子和pAgs的表达,从而逃避γδ T细胞的免疫识别。事实上,无论是促迁移工程化γδ T细胞,还是抗PD-1检查点阻断,均未显著延长荷瘤小鼠的总生存期。BCSC免疫逃逸独立于γδ T细胞施加的免疫压力,并可通过唑来膦酸或IFNα治疗在药理学上逆转。这些结果为TNBC的新型联合免疫疗法铺平了道路。
There are no targeted therapies for patients with triple-negative breast cancer (TNBC). TNBC is enriched in breast cancer stem cells (BCSC), which play a key role in metastasis, chemoresistance, relapse, and mortality. γδ T cells hold great potential in immunotherapy against cancer and might provide an approach to therapeutically target TNBC. γδ T cells are commonly observed to infiltrate solid tumors and have an extensive repertoire of tumor-sensing mechanisms, recognizing stress-induced molecules and phosphoantigens (pAgs) on transformed cells.
Herein, we show that patient-derived triple-negative BCSCs are efficiently recognized and killed by ex vivo expanded γδ T cells from healthy donors. Orthotopically xenografted BCSCs, however, were refractory to γδ T-cell immunotherapy.
We unraveled concerted differentiation and immune escape mechanisms: xenografted BCSCs lost stemness, expression of γδ T-cell ligands, adhesion molecules, and pAgs, thereby evading immune recognition by γδ T cells. Indeed, neither promigratory engineered γδ T cells, nor anti-PD-1 checkpoint blockade, significantly prolonged overall survival of tumor-bearing mice.
BCSC immune escape was independent of the immune pressure exerted by the γδ T cells and could be pharmacologically reverted by zoledronate or IFNα treatment. These results pave the way for novel combinatorial immunotherapies for TNBC.
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