2026/01/18 by Yan Fu, Zhi‐Shan Ge, Qing‐Yue Cao +4 · 1 voice
Medicine · Neuroscience · #Cancer, Stress, Anesthesia, and Immune Response #Nerve injury and regeneration #Cancer Mechanisms and Therapy
paper · doi:10.1002/mco2.70594
openalex publication_date 2026/01/18 · openalex created_date 2026/01/20 · openalex updated_date 2026/08/01
Cancer neuroscience has emerged as a transformative frontier in oncology research, focusing on the interplay between cancer cells and the nervous system. Cancer cells establish tumorspecific neural networks within tumor tissues via neurotrophic hijacking. The nervous system regulates tumor initiation, progression, and metastasis either directly by regulating signal transduction in tumor cells or indirectly by modulating the tumor microenvironment (TME). The positive feedback loop between cancer cells and nerves promotes tumor progression. Deciphering the regulatory role of nerves in tumor progression may yield novel anticancer therapeutic options. In this review, the interaction between nerves and cancer cells is described, including how cancer cells hijack and remodel nervous system structure and function, and how neuron-signaling regulates cancer cell growth directly or indirectly through modulating the TME. This evidence of the critical role of nerves in the malignant phenotype of tumors indicates the potential of using neuron-signaling targeting strategies in cancer treatment. By summarizing these findings, this review aims to provide comprehensive insights into the interaction between nerves and cancer cells, paving the way for neuron-signaling-based anticancer therapies.