串扰
神经科学
免疫系统
肿瘤微环境
胰腺癌
神经系统
中枢神经系统
外周神经系统
生物
癌症
医学
神经营养素
机制(生物学)
恶性肿瘤
免疫学
免疫疗法
癌症研究
信号灯
翻译(生物学)
生物信息学
神经免疫学
转移
多发性硬化
癌变
作者
Jianguo Jin,Bin He,Xiang Wang,Yuqiang Zhang,Huiming You,Sirui Mo,Duancheng Guo,Saimeng Shi
标识
DOI:10.1016/j.bbcan.2026.189575
摘要
The nervous system functions as a central regulatory network that maintains physiological homeostasis through the coordinated actions of the central and peripheral nervous systems. The emergence of cancer neuroscience has unveiled novel mechanisms underlying bidirectional regulation among the nervous system, tumor cells, and the immune system. This review focuses on pancreatic cancer, often referred to as the "king of cancers," a malignancy characterized by aggressive behavior, early perineural invasion, and dismal prognosis. We systematically analyze the interactions within the neuro-tumor-immune microenvironment. On one hand, the peripheral and central nervous systems promote neurotropic migration of cancer cells and the formation of a tumor immunosuppressive microenvironment through neurotransmitters, neurotrophic factors, and synaptic remodeling. On the other hand, cancer cells and the immune microenvironment reshape neural structures, exacerbating immune evasion and malignant progression. Furthermore, this review integrates fundamental mechanisms with translational and clinical research, and proposes neuroscience-guided precision therapeutic strategies, including the development of neural invasion-related biomarkers and the targeting of key nodes within neuro-tumor-immune interactions. Together, these approaches add a new dimension to overcoming therapeutic bottlenecks in pancreatic cancer and facilitate the translation of mechanistic insights into clinical applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI