伦瓦提尼
癌症研究
信号转导
神经生长因子
MAPK/ERK通路
肝细胞癌
医学
酪氨酸激酶
受体酪氨酸激酶
激酶
细胞生长
原肌球蛋白受体激酶A
生物
基因敲除
细胞培养
受体
调解人
酪氨酸激酶抑制剂
生物标志物
生长因子
内科学
细胞周期
生长因子受体
索拉非尼
六氯环己烷
下调和上调
转化生长因子
作者
Minghao Xu,Yimin Zheng,Longtao Zhao,Siwei Wang,Jie Chen,Zhongchi Fu,An Ma,Bugang Liang,Yilan Huang,Haihan Xu,Yue Wang,Yingjie Ai,Haiying Zeng,Chao Gao,Jiajun Cai,Aiwu Ke,Jia Fan
标识
DOI:10.1038/s41392-026-02649-w
摘要
Resistance to lenvatinib remains a major barrier in the treatment of advanced hepatocellular carcinoma (HCC), underscoring the urgent need to elucidate the underlying mechanisms and identify actionable therapeutic targets. In this study, we identified a neurosecretory factor derived from HCC cells, Nerve Growth Factor (NGF), as a critical mediator of lenvatinib resistance. Utilizing an innovative in vivo-in vitro cross-circulated strategy, we established a phenotypically stable lenvatinib-resistant HCC cell line (LenR-cells). Through proteomic screening of conditioned media and subsequent functional validation, we demonstrated that NGF secretion progressively increases with the acquisition of resistance. Mechanistically, we uncovered that the SRPK1-SRSF1 axis drives enhanced NGF production by regulating alternative splicing of its precursor transcript, specifically promoting the expression of a shorter, translationally efficient isoform (proNGF-B). Elevated NGF subsequently activates the non-canonical MAPK pathway (MEK5-ERK5) via its high-affinity receptor TrkA, thereby sustaining tumor cell viability and proliferation under sustained tyrosine kinase inhibitor pressure. Critically, pharmacological co-targeting of TrkA with the clinically approved inhibitor larotrectinib restored lenvatinib sensitivity in both patient-derived organoids and xenograft models, producing marked synergistic anti-tumor effects without evidence of exacerbated toxicity. Clinical analyses of two independent patient cohorts further confirmed that elevated NGF expression is significantly associated with poor response to lenvatinib, shorter recurrence-free survival, and worse overall survival. Our findings unveil a critical and previously underappreciated role for tumor-derived NGF in orchestrating adaptive signaling through a precise post-transcriptional regulatory circuit and propose a readily translatable, biomarker-guided combination strategy to overcome lenvatinib resistance in HCC.
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