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:Tumor budding in colorectal cancer: partial EMT, microenvironmental remodeling, and metastatic competence.
Tumor budding in colorectal cancer: partial EMT, microenvironmental remodeling, and metastatic competence.
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肿瘤出芽(TB)是结直肠癌(CRC)浸润前沿恶性侵袭的病理学标志,为早期播散提供了一个形态学窗口。在国际肿瘤出芽共识会议(ITBCC)框架中,出芽是指单个肿瘤细胞或最多四个细胞的细胞簇,通过热点计数进行分级以支持标准化评估。来自组织病理学、单细胞图谱分析、空间分辨分析和功能模型的证据将TB与具有侵袭能力的肿瘤状态联系起来。TB通常伴随部分上皮-间质转化,表现为细胞间黏附减弱、E-cadherin丢失、β-catenin定位改变以及整合素信号激活、细胞骨架重塑和细胞外基质(ECM)降解,同时保留上皮特征。空间/轨迹分析提示,出芽富集区域集中于具有可塑性、干性样程序并偏向迁移和应激耐受的细胞,且靠近血管内渗部位。TB微环境还表现出免疫和代谢特化,包括树突状细胞成熟和抗原呈递受限、CD8+ T细胞和NK细胞活性降低或功能障碍,以及肿瘤相关巨噬细胞和其他抑制性髓系程序的富集。缺氧驱动的糖酵解、乳酸相关酸化、腺苷信号传导和髓系脂质代谢重编程可进一步稳定侵袭性表型并提高免疫控制的阈值。数字病理学和AI支持的全切片分析可提高评分一致性,并增加将TB模式与免疫背景和基质组织联系起来的空间读出。
总体而言,TB标志着侵袭性肿瘤生物学与局部微环境之间的界面,与CRC的风险分层和治疗定制直接相关。
Tumor budding (TB) is a pathological hallmark of malignant invasion at the invasive front of colorectal cancer (CRC) and provides a morphologic window into early dissemination. In the International Tumor Budding Consensus Conference (ITBCC) framework, buds are single tumor cells or clusters of up to four cells, graded by hotspot counting to support standardized evaluation. Evidence from histopathology, single-cell profiling, spatially resolved analyses, and functional models links TB to invasion-competent tumor states. TB often tracks partial epithelial-mesenchymal transition, with weakened cell-cell adhesion, E-cadherin loss, altered β-catenin localization, and activation of integrin signaling, cytoskeletal remodeling, and extracellular matrix (ECM) degradation while retaining epithelial features. Spatial/trajectory analyses suggest that budding-rich regions concentrate plastic, stem-like programs biased toward migration and stress tolerance and lie close to intravasation.
The TB niche also shows immune and metabolic specialization, with constrained dendritic-cell maturation and antigen presentation, reduced or dysfunctional CD8 + T-cell and NK-cell activity, and enrichment of tumor-associated macrophages and other suppressive myeloid programs. Hypoxia-driven glycolysis, lactate-associated acidification, adenosine signaling, and myeloid lipid-metabolic reprogramming can further stabilize invasive phenotypes and raise the threshold for immune control.
Digital pathology and AI-enabled whole-slide analysis can improve scoring consistency and add spatial readouts linking TB patterns to immune contexture and stromal organization. Collectively, TB marks an interface between invasive tumor biology and the local microenvironment with direct relevance for risk stratification and therapeutic tailoring in CRC.
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