RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Dynamic Changes in the NK-, Neutrophil-, and B-cell Immunophenotypes Relevant in High Metastatic Risk Post Neoadjuvant Chemotherapy-Resistant Early Breast Cancers.
Dynamic Changes in the NK-, Neutrophil-, and B-cell Immunophenotypes Relevant in High Metastatic Risk Post Neoadjuvant Chemotherapy-Resistant Early Breast Cancers.
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本研究识别了残留病中若干潜在的免疫通路,这些通路或可作为靶点使高危患者获益。
识别新辅助化疗(NAC)后耐药的三阴性乳腺癌(TNBC)和ER+HER2-乳腺癌疾病中的潜在免疫靶点。
经过病理学复核,153例患者被确定为具有残留癌症负荷(RCB)II/III期疾病(TNBC n = 80;ER+HER2-n = 73)。80例TNBC和73例ER+HER2-病例中分别有32例和36例可获得NAC前基线样本用于评估。明场苏木精和伊红评估可在所有病例中进行TIL(肿瘤浸润淋巴细胞)评估。多重免疫荧光用于识别免疫细胞亚群的丰度和分布。还量化了包括PD-1/PD-L1表达在内的检查点水平。随后利用癌症和免疫相关基因的表达谱分析对发现进行了验证。飞行时间细胞术表征了NAC过程中循环免疫细胞的动态变化。
RCB II/III TNBC和ER+HER2-乳腺癌在基线和NAC结束时免疫上均为“冷”肿瘤。尽管免疫细胞亚群在各亚型间的分布相似,但mRNA表达谱既具有亚型特异性,也具有化疗特异性。TNBC RCB II/III疾病富集与中性粒细胞脱颗粒相关的基因,并在免疫和癌症通路之间表现出强烈的相互作用。我们观察到,无论亚型如何,NAC后B细胞生物学的动态变化存在相似性。然而,NAC诱导的局部和循环肿瘤免疫微环境(TIME)变化因亚型和缓解情况而异。具体而言,在TNBC残留病灶中,我们观察到刺激性(CD40/OX40L)和抑制性(PD-L1/PD-1)受体表达下调,以及局部TIME和外周白细胞群体中NK细胞群(尤其是非细胞溶解性、耗竭的CD56dimCD16-)增加。
To identify potential immune targets in post-neoadjuvant chemotherapy (NAC)-resistant triple-negative breast cancer (TNBC) and ER+HER2- breast cancer disease. EXPERIMENTAL DESIGN: Following pathology review, 153 patients were identified as having residual cancer burden (RCB) II/III disease (TNBC n = 80; ER+HER2-n = 73). Baseline pre-NAC samples were available for evaluation for 32 of 80 TNBC and 36 of 73 ER+HER2- cases. Bright-field hematoxylin and eosin assessment allowed for tumor-infiltrating lymphocyte (TIL) evaluation in all cases. Multiplexed immunofluorescence was used to identify the abundance and distribution of immune cell subsets. Levels of checkpoints including PD-1/PD-L1 expression were also quantified. Findings were then validated using expression profiling of cancer and immune-related genes. Cytometry by time-of-flight characterized the dynamic changes in circulating immune cells with NAC.
RCB II/III TNBC and ER+HER2- breast cancer were immunologically "cold" at baseline and end of NAC. Although the distribution of immune cell subsets across subtypes was similar, the mRNA expression profiles were both subtype- and chemotherapy-specific. TNBC RCB II/III disease was enriched with genes related to neutrophil degranulation, and displayed strong interplay across immune and cancer pathways. We observed similarities in the dynamic changes in B-cell biology following NAC irrespective of subtype. However, NAC induced changes in the local and circulating tumor immune microenvironment (TIME) that varied by subtype and response. Specifically, in TNBC residual disease, we observed downregulation of stimulatory (CD40/OX40L) and inhibitory (PD-L1/PD-1) receptor expression and an increase in NK cell populations (especially non-cytolytic, exhausted CD56dimCD16-) within both the local TIME and peripheral white cell populations.
This study identifies several potential immunologic pathways in residual disease, which may be targeted to benefit high-risk patients.
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