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:Hemostasis at the edge between physiology and cancer.
Hemostasis at the edge between physiology and cancer.
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止血处于生理学与癌症的交界处,组织因子启动的凝血级联反应、凝血酶生成和纤维蛋白沉积从血管修复转向促进肿瘤。凝血与癌症之间的相互作用现已被认为是双向的,肿瘤细胞激活凝血系统,而凝血成分又反馈促进恶性肿瘤。肿瘤细胞不仅通过过表达组织因子和激活蛋白酶激活受体(PAR1/PAR2)信号来促进增殖和侵袭,还通过细胞因子(VEGF、IL-1β)、NF-κB信号和缺氧因子(HIF-1α)诱导肿瘤微环境(TME)中的内皮细胞和成纤维细胞产生凝血因子(TF、FV、凝血酶原)。生成的凝血酶和FXa驱动MAPK/PI3K通路、血管生成(VEGF上调),并通过抑制T细胞趋化因子(CXCL9/10/11)和促进M2巨噬细胞来逃避免疫。
血小板被肿瘤相关凝血激活后释放PDGF、TGF-β和VEGF,促进基质重塑并通过PD-L1转移排除细胞毒性T细胞,而纤维蛋白基质则屏蔽肿瘤并招募抑制性髓系细胞。这种双向相互作用创造了一个促肿瘤微环境,支持原发肿瘤生长和转移播散,其中循环肿瘤细胞(CTC)利用血小板包被来抵抗剪切应力和NK细胞。癌症高凝状态是一种已知状态,可升高静脉血栓栓塞风险,D-二聚体作为预后生物标志物将血栓形成与侵袭性疾病联系起来。靶向这一止血-癌症轴——通过TF抑制、抗凝或抗血小板治疗——为破坏增殖、免疫逃逸和转移提供了治疗前景。
Hemostasis lies at the edge between physiology and cancer, where the coagulation cascade-initiated by tissue factor, thrombin generation, and fibrin deposition-shifts from vascular repair to tumor promotion. The interplay between coagulation and cancer is now recognized as a two-way street, with tumor cells activating the clotting system and coagulation components feeding back to promote malignancy. Tumor cells not only foster proliferation and invasion by overexpressing tissue factor and activating Protease-Activated Receptors (PAR1/PAR2) signalling, but they also induce endothelial cells and fibroblasts in the tumor microenvironment (TME) to produce coagulation factors (TF, FV, prothrombin) through cytokines (VEGF, IL-1β), NF-κB signalling, and hypoxia factor (HIF-1α). Generated thrombin and FXa drive MAPK/PI3K pathways, angiogenesis (VEGF upregulation), and immune evasion by suppressing T-cell chemokines (CXCL9/10/11) and fostering M2 macrophages.
Platelets, activated by tumor-associated coagulation, release PDGF, TGF-β, and VEGF to promote stromal remodeling and exclude cytotoxic T cells via PD-L1 transfer, while fibrin matrices shield tumors and recruit suppressive myeloid cells. This bidirectional interplay creates a protumoral niche supporting both primary growth and metastatic dissemination, where circulating tumor cells (CTCs) exploit platelet cloaking against shear stress and NK cells.
Cancer hypercoagulability is a known state which elevates venous thromboembolism, with D-dimer as a prognostic biomarker linking thrombosis to aggressive disease. Targeting this hemostasis-cancer axis-via TF inhibition, anticoagulation, or antiplatelet therapy-offers therapeutic promise to disrupt proliferation, immune escape, and metastasis.
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