下一代肿瘤不可知靶点即将出现
Next-generation tumor-agnostic targets on the horizon.
肿瘤不可知药物开发将肿瘤学重新聚焦于共享的分子依赖性而非组织来源,从而能够针对跨肿瘤的罕见可操作驱动因素进行高效开发。
英文原题:A comprehensive profiling of the immune microenvironment of breast cancer brain metastases.
我们的结果突出了BCBM免疫微环境中与亚型相关的差异,并确定了两个潜在的治疗靶点:HER2-中的M2小胶质细胞/巨噬细胞极化以及HER2+ BCBM中的PD-1/PD-L1相互作用,值得在未来临床试验中进一步探索。
尽管具有潜在的临床意义,但乳腺癌(BC)脑转移(BM)免疫微环境的复杂性仍知之甚少。通过多重免疫荧光,我们在此描述了BCBM免疫微环境的主要特征(密度和空间分布),并评估了其预后影响。
对2003年至2018年间在三个机构接受神经外科手术的患者的60例BCBM进行了全面评估,使用两个多重免疫荧光panel(CD4、CD8、Granzyme B、FoxP3、CD68、pan-cytokeratin、DAPI;CD3、PD-1、PD-L1、LAG-3、TIM-3、CD163、pan-cytokeratin、DAPI)。评估了免疫亚群和细胞间空间相互作用的预后影响。
观察到BCBM免疫微环境存在亚型相关差异及其预后影响。在HR-/HER2- BM和HER2+ BM中,较高的瘤内CD8+淋巴细胞密度与显著更长的OS相关(HR分别为0.16和0.20),而在HR+/HER2- BCBM中,基质中较高的CD4+FoxP3+/CD8+细胞比值与更差的OS相关(HR 5.4)。此外,在HR-/HER2-和HR+/HER2- BCBM中,BCBM内较高的瘤内CD163+ M2极化小胶质细胞/巨噬细胞密度与显著更差的OS相关(HR分别为6.56和4.68),但在HER2+ BCBM中则不然。在HER2+ BCBM中,多重免疫荧光突出了PD-1/PD-L1相互作用的负面预后作用:PD-L1+细胞与PD-1+细胞在空间上相互作用(20 µm半径内)百分比较高的患者表现出显著更差的OS(HR 4.60)。
BACKGROUND: Despite potential clinical implications, the complexity of breast cancer (BC) brain metastases (BM) immune microenvironment is poorly understood. Through multiplex immunofluorescence, we here describe the main features of BCBM immune microenvironment (density and spatial distribution) and evaluate its prognostic impact. METHODS: Sixty BCBM from patients undergoing neurosurgery at three institutions (2003-2018) were comprehensively assessed using two multiplex immunofluorescence panels (CD4, CD8, Granzyme B, FoxP3, CD68, pan-cytokeratin, DAPI; CD3, PD-1, PD-L1, LAG-3, TIM-3, CD163, pan-cytokeratin, DAPI). The prognostic impact of immune subpopulations and cell-to-cell spatial interactions was evaluated. RESULTS: Subtype-related differences in BCBM immune microenvironment and its prognostic impact were observed. While in HR-/HER2- BM and HER2+ BM, higher densities of intra-tumoral CD8+ lymphocytes were associated with significantly longer OS (HR 0.16 and 0.20, respectively), in HR+/HER2- BCBMs a higher CD4+FoxP3+/CD8+ cell ratio in the stroma was associated with worse OS (HR 5.4). Moreover, a higher density of intra-tumoral CD163+ M2-polarized microglia/macrophages in BCBMs was significantly associated with worse OS in HR-/HER2- and HR+/HER2- BCBMs (HR 6.56 and 4.68, respectively), but not in HER2+ BCBMs. In HER2+ BCBMs, multiplex immunofluorescence highlighted a negative prognostic role of PD-1/PD-L1 interaction: patients with a higher percentage of PD-L1+ cells spatially interacting with (within a 20 µm radius) PD-1+ cells presented a significantly worse OS (HR 4.60). CONCLUSIONS: Our results highlight subtype-related differences in BCBM immune microenvironment and identify two potential therapeutic targets, M2 microglia/macrophage polarization in HER2- and PD-1/PD-L1 interaction in HER2+ BCBMs, which warrant future exploration in clinical trials.
MEMBER ACCOUNT
登录成功会直接打开下一页。