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:Single-cell RNA sequencing reveals compartment-specific immune and tumor cell states in a contiguous spinal metastasis.
Single-cell RNA sequencing reveals compartment-specific immune and tumor cell states in a contiguous spinal metastasis.
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该研究显示,单个脊柱转移灶内存在细胞和转录层面的差异,并受局部解剖结构影响。这些发现提示微环境影响免疫和肿瘤状态,为未来关于转移及治疗反应的研究提供方向。
转移性疾病通常在不同解剖部位表现出不同的治疗反应,包括内脏与骨病变之间,以及在脊柱内,骨、硬膜外和硬膜内间室之间。硬膜内脊柱转移虽然罕见,但预示着快速神经功能恶化和比硬膜外疾病更差的结局,然而这种差异行为背后的生物学机制仍知之甚少。
我们报告一例61岁女性转移性ER+/PR+乳腺癌患者,因严重胸段脊髓压迫出现双下肢无力和丧失行走能力。影像学显示硬膜外和硬膜内肿瘤进展,而骨转移保持稳定。我们对手术减压后两个部位的肿瘤样本进行了单细胞RNA测序,分析了细胞类型、免疫亚聚类、基因表达和肿瘤模块评分。
测序揭示了硬膜外和硬膜内转移灶中12个不同的细胞群体,包括肿瘤上皮细胞、神经细胞、胶质细胞、巨噬细胞、髓系细胞、细胞毒性T细胞、NK细胞和增殖细胞。虽然主要细胞类型相似,但其组成和基因表达存在差异。硬膜外细胞毒性T细胞和NK细胞表达更高水平的GZMB、PRF1、NKG7、KLRD1和GNLY。巨噬细胞分为2组:一组富含C1QA/C1QB,主要位于硬膜内区域;另一组为活化的、炎症性的、抗原呈递型,富集于硬膜外区域,表达IL1B、HLA-DRA、CD74及其他基因。肿瘤上皮细胞也存在差异:硬膜内细胞显示免疫基因表达、抗原呈递和干扰素表达增加。
Metastatic disease commonly exhibits differential treatment responses across anatomical sites, including visceral versus osseous lesions and, within the spine, osseous, epidural, and intradural compartments. Intradural spinal metastases, though rare, portend rapid neurologic deterioration and worse outcomes than epidural disease, yet the biological mechanisms underlying this differential behavior remain poorly understood.
We report a 61-year-old woman with metastatic ER+/PR+ breast cancer who developed bilateral leg weakness and loss of walking due to severe thoracic spinal cord compression. Imaging showed progressive epidural and intradural tumors, whereas osseous metastases remained stable. We performed single-cell RNA sequencing on tumor samples from both compartments after surgical decompression, analyzing cell types, immune subclustering, gene expression, and tumor module scores.
Sequencing revealed 12 distinct cell populations in both epidural and intradural metastases, including tumor epithelial, neural, glial, macrophages, myeloid, cytotoxic T, NK, and proliferating cells. While major cell types were similar, their composition and gene expression differed. Epidural cytotoxic T and NK cells expressed higher levels of GZMB, PRF1, NKG7, KLRD1, and GNLY. Macrophages split into 2 groups: a C1QA/C1QB-enriched subset mainly in the intradural compartment and an activated, inflammatory, antigen-presenting group enriched in the epidural compartment with IL1B, HLA-DRA, CD74, and other genes. Tumor epithelial cells also differed: intradural cells showed increased immune gene expression, antigen presentation, and interferon expression.
The study shows cellular and transcriptional differences within a single spinal metastasis, influenced by local anatomy. These findings suggest that the microenvironment impacts immune and tumor states, guiding future research on metastasis and therapy responses.
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