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:Proliferative Tumor States and Immunogenic Ecosystems Predict Neoadjuvant Chemotherapy Response in Triple-Negative Breast Cancer.
Proliferative Tumor States and Immunogenic Ecosystems Predict Neoadjuvant Chemotherapy Response in Triple-Negative Breast Cancer.
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三阴性乳腺癌缺乏已确立的靶向治疗,且仅有一部分患者对新辅助化疗达到病理完全缓解。我们旨在将大样本队列与一个仅来自五名患者的探索性单细胞多组学数据集进行整合,以识别与化疗反应相关的肿瘤及免疫相关特征。
在两个公开乳腺癌队列(GSE76275和GSE25065)中进行大样本分析,以比较三阴性与非三阴性肿瘤,并将治疗前转录特征及推断的免疫浸润模式与新辅助化疗反应相关联。另外,在一个由五例三阴性乳腺癌组成的假设生成性单细胞队列中(n = 5;四例有反应者,一例无反应者),我们进行了单细胞RNA测序、T细胞和B细胞受体测序、单细胞ATAC测序以及糖基化标签分析。
在大样本数据中,与非三阴性肿瘤相比,三阴性肿瘤显示腔面型雌激素受体相关程序的缺失、更高的增殖以及CIBERSORT估计的髓系相关免疫组分富集。化疗反应与三阴性肿瘤中适度的转录变化和推断的免疫组成差异相关,而在非三阴性乳腺癌中则与更明显的上皮、基质和炎症性免疫变化相关。单细胞数据提示,应答者肿瘤中富集T细胞和NK 细胞、抗原呈递髓系细胞、扩增且多样的T细胞和B细胞克隆型,以及免疫相关糖基化信号,而非应答者样本则由上皮和成纤维细胞区室主导,具有分泌、黏附和潜在免疫逃逸程序。检查点相关分析反映了表达模式并预测了配体-受体通讯,提名TIGIT-NECTIN2作为进一步研究的候选轴。
将公开bulk队列与探索性单细胞多组学整合,支持这样一种模型:三阴性乳腺癌中的化疗敏感性与炎症性、抗原呈递微环境和可适应的抗肿瘤免疫相关,而耐药则与基质和肿瘤主导相关。这些候选生物标志物和通路需要在更大的独立队列中验证,鉴于单细胞队列的探索性,临床转化尚为时过早。
Background: Triple-negative breast cancer lacks established targeted therapies, and only a subset of patients achieves a pathologic complete response to neoadjuvant chemotherapy.
We aimed to integrate bulk cohorts with an exploratory single-cell multi-omic dataset from only five patients to identify tumor and immune-related features associated with chemotherapy response. Methods: Bulk analyses were performed in two public breast cancer cohorts (GSE76275 and GSE25065) to compare triple-negative versus non-triple-negative tumors and to relate pretreatment transcriptional and inferred immune infiltration patterns to neoadjuvant chemotherapy response. Separately, in a hypothesis-generating single-cell cohort of five triple-negative breast cancers (n = 5; four responders, one non-responder), we performed single-cell RNA sequencing, T cell and B cell receptor sequencing, single-cell ATAC sequencing, and glycosylation tag profiling. Results: In bulk data, triple-negative tumors showed a loss of luminal estrogen receptor-associated programs, higher proliferation, and CIBERSORT-estimated enrichment of myeloid-associated immune fractions compared with non-triple-negative tumors. Chemotherapy response was associated with modest transcriptional shifts and inferred immune composition differences in triple-negative tumors and more pronounced epithelial, stromal, and inflamed immune changes in non-triple-negative disease.
Single-cell data suggested that responder tumors were enriched for T and natural killer cells, antigen-presenting myeloid cells, expanded and diverse T and B cell clonotypes, and immune-associated glycosylation signals, whereas the non-responder sample was dominated by epithelial and fibroblast compartments with secretory, adhesion, and potential immune evasion programs. Checkpoint-related analyses reflected expression patterns and predicted ligand-receptor communication, nominating TIGIT-NECTIN2 as a candidate axis for further investigation.
Conclusions: Integrating public bulk cohorts with exploratory single-cell multi-omics supports a model in which chemotherapy sensitivity in triple-negative breast cancer is linked to inflamed, antigen-presenting microenvironments and adaptable antitumor immunity, whereas resistance is associated with stromal and tumor dominance. These candidate biomarkers and pathways require validation in larger independent cohorts, and clinical translation is premature given the exploratory single-cell cohort.
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