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:Heparanase blockade sensitizes pancreatic ductal adenocarcinoma cells to chemotherapy and unleashes antitumor immunity.
Heparanase blockade sensitizes pancreatic ductal adenocarcinoma cells to chemotherapy and unleashes antitumor immunity.
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促纤维增生是一种致密的纤维化反应,是胰腺导管腺癌(PDAC)的标志,并通过多种机制促进化疗耐药。在此,我们评估了乙酰肝素酶(HPSE)作为PDAC潜在靶点的价值,HPSE是一种内切糖苷酶,可重塑细胞外基质(ECM)并驱动纤维化生成。对人PDAC组织的免疫组化分析显示HPSE表达升高,同时成纤维细胞生长因子1和2(FGF1/2)水平升高,反映了它们经HPSE催化的硫酸乙酰肝素裂解而释放。这三种蛋白的高表达均与更差的总生存期和无病生存期相关。体外共培养实验显示,HPSE抑制剂PI-88抑制了PDAC细胞诱导的胰腺星状细胞(PSC)活化,并阻止了ECM硬化,且未诱导细胞毒性。在机制上,肿瘤来源的HPSE激活了ERK信号通路并促进了PSC中FGF1/2的产生,这两者均被PI-88有效抑制。在原位小鼠模型中,吉西他滨治疗上调了HPSE和FGF1/2,而吉西他滨耐药肿瘤中这些因子进一步增加,并伴有PSC活化和胶原沉积增强。
重要的是,与所有单药和双药方案相比,PI-88、吉西他滨和白蛋白结合型紫杉醇三联治疗显著抑制了肿瘤生长并延长了生存期。免疫谱分析显示,该联合方案减少了PSC活化,缩小了M2巨噬细胞和调节性T细胞群体,并扩增了M1巨噬细胞、CD8⁺ T细胞和NK细胞。
总之,这些数据强调HPSE是PDAC纤维化和化疗耐药的关键驱动因素,并支持HPSE抑制作为提高治疗疗效的有前景策略。
Desmoplasia, a dense fibrotic reaction, is a hallmark of pancreatic ductal adenocarcinoma (PDAC) and fuels chemoresistance through multiple mechanisms.
Here, we evaluated heparanase (HPSE), an endoglycosidase that remodels extracellular matrix (ECM) and drives fibrogenesis, as a potential target in PDAC. Immunohistochemical analysis of human PDAC tissues showed elevated HPSE expression, along with increased levels of fibroblast growth factors 1 and 2 (FGF1/2), reflecting their liberation by HPSE-catalyzed heparan sulfate cleavage.
High expression of all three proteins was associated with worse overall and disease-free survival. In vitro coculture assays showed that the HPSE inhibitor PI-88 suppressed PDAC cell-induced activation of pancreatic stellate cells (PSCs) and prevented ECM stiffening without inducing cytotoxicity.
Mechanistically, tumor-derived HPSE activated ERK signaling and promoted FGF1/2 production in PSCs, both of which were effectively suppressed by PI-88. In orthotopic mouse models, gemcitabine treatment upregulated HPSE and FGF1/2, whereas gemcitabine-resistant tumors exhibited further increases in these factors, accompanied by enhanced PSC activation and collagen deposition.
Importantly, triple therapy with PI-88, gemcitabine, and Abraxane significantly suppressed tumor growth and prolonged survival relative to all mono- and doublet regimens. Immune profiling revealed that this combination reduced PSC activation, contracted M2 macrophage and regulatory T cell populations, and expanded M1 macrophages, CD8⁺ T cells, and NK cells.
In conclusion, these data underscore HPSE as a key driver of fibrosis and chemoresistance in PDAC and support HPSE inhibition as a promising strategy to enhance therapeutic efficacy.
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