CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Spatial interplay of lymphocytes and fibroblasts in estrogen receptor-positive HER2-negative breast cancer.
Spatial interplay of lymphocytes and fibroblasts in estrogen receptor-positive HER2-negative breast cancer.
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在雌激素受体阳性、HER2阴性(ER + HER2 -)乳腺癌中,较高水平的TIL(肿瘤浸润淋巴细胞)(TILs)常与不良预后相关,而这一现象目前仍知之甚少。成纤维细胞是乳腺癌中最常见的细胞之一,并具有免疫调节能力。
在此,我们评估了ER + HER2 -乳腺癌中TILs与成纤维细胞空间模式的分子和临床影响。我们使用深度神经网络在179例ER + HER2 -乳腺肿瘤(ICGC队列)的苏木精-伊红染色切片上定位并识别肿瘤、TILs和成纤维细胞,并结合一种新的密度估计算法来测量空间模式。
我们根据肿瘤的空间模式对其进行聚类,并进行基因集富集分析以研究其分子特征。我们在第二个ER + HER2 -乳腺癌队列(N = 630,METABRIC)中独立评估了这些空间模式,并研究了其预后价值。成纤维细胞、TILs和肿瘤细胞的空间整合产生了ER + HER2 -乳腺癌的一种新的可重复的空间分类,并与炎症、成纤维细胞干扰或免疫抑制相关。TILs高的ER + HER2 -患者的总生存期并未显著改善(HR = 0.76,P = 0.212),除非她们接受过化疗(HR = 0.447)。成纤维细胞高但未显示高水平TILs的患者生存较差(HR = 1.661,P = 0.0303)。尤其是成纤维细胞与TILs的空间混合与良好预后相关(HR = 0.464,P = 0.013)。
我们的研究结果展示了一个可重复的流程,用于ER + HER2 -乳腺癌中TIL和成纤维细胞的空间分析,并表明这种空间相互作用在其癌症-免疫相互作用中起决定性作用。
In estrogen-receptor-positive, HER2-negative (ER + HER2 - ) breast cancer, higher levels of tumor infiltrating lymphocytes (TILs) are often associated with a poor prognosis and this phenomenon is still poorly understood. Fibroblasts represent one of the most frequent cells in breast cancer and harbor immunomodulatory capabilities.
Here, we evaluate the molecular and clinical impact of the spatial patterns of TILs and fibroblast in ER + HER2 - breast cancer.
We used a deep neural network to locate and identify tumor, TILs, and fibroblasts on hematoxylin and eosin-stained slides from 179 ER + HER2 - breast tumors (ICGC cohort) together with a new density estimation analysis to measure the spatial patterns.
We clustered tumors based on their spatial patterns and gene set enrichment analysis was performed to study their molecular characteristics.
We independently assessed the spatial patterns in a second cohort of ER + HER2 - breast cancer (N = 630, METABRIC) and studied their prognostic value. The spatial integration of fibroblasts, TILs, and tumor cells leads to a new reproducible spatial classification of ER + HER2 - breast cancer and is linked to inflammation, fibroblast meddling, or immunosuppression.
ER + HER2 - patients with high TIL did not have a significant improved overall survival (HR = 0. 76, P = 0. 212), except when they had received chemotherapy (HR = 0. 447). A poorer survival was observed for patients with high fibroblasts that did not show a high level of TILs (HR = 1. 661, P = 0. 0303). Especially spatial mixing of fibroblasts and TILs was associated with a good prognosis (HR = 0. 464, P = 0. 013).
Our findings demonstrate a reproducible pipeline for the spatial profiling of TILs and fibroblasts in ER + HER2 - breast cancer and suggest that this spatial interplay holds a decisive role in their cancer-immune interactions.
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