Huang Yan, Xiang Boqi, Manyande Anne, Xiang Hongbing, Xiong Jun
Department of Anesthesiology, Hubei Key Laboratory of Geriatric Anesthesia and Perioperative Brain Health, Wuhan Clinical Research Center for Geriatric Anesthesia, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology Wuhan, Hubei, China.
Department of Interventional Therapy, The First Affiliated Hospital of Dalian Medical University Dalian, Liaoning, China.
Am J Cancer Res. 2023 Mar 15;13(3):713-726. eCollection 2023.
With the emergence of the scientific research field of tumor microenvironment, the idea that tumor growth and propagation cannot be separated from the tumor microenvironment has become common. The autonomic nervous system is involved in the whole process of growth and development of the organism, and it is undeniable that the tumor microenvironment is equally regulated by both the autonomic nervous system and the immune system. Our research focused on the cancer-nerve crosstalk process and revealed the regulatory mechanisms between the autonomic nervous system and prostate, gastric, pancreatic ductal and breast cancers, mainly elucidating that (1) the release of neurotransmitters and their receptors by autonomic nerves may be important for solid tumor progression, and (2) in combination with the latest targeted small molecule imaging technology, we summarized the biological pathways related to neurotransmitters as small molecule tracers to track solid tumor progression. This research focused on combining targeted small molecules and imaging techniques to observe sympathetic and parasympathetic processes that promote or inhibit cancer development, providing new potential therapeutic targets for prostate, gastric, pancreatic ductal and breast cancers. It also provided cutting-edge research evidence for the development of biological small molecule drugs and targeted tracers in cancer therapy.
随着肿瘤微环境科研领域的出现,肿瘤生长和扩散离不开肿瘤微环境这一观点已变得普遍。自主神经系统参与生物体生长发育的全过程,不可否认的是,肿瘤微环境同样受到自主神经系统和免疫系统的调节。我们的研究聚焦于癌症与神经的相互作用过程,揭示了自主神经系统与前列腺癌、胃癌、胰腺导管癌和乳腺癌之间的调控机制,主要阐明了:(1)自主神经释放神经递质及其受体可能对实体瘤进展至关重要;(2)结合最新的靶向小分子成像技术,我们总结了与神经递质相关的生物途径作为小分子示踪剂来追踪实体瘤进展。本研究着重将靶向小分子与成像技术相结合,以观察促进或抑制癌症发展的交感和副交感过程,为前列腺癌、胃癌、胰腺导管癌和乳腺癌提供了新的潜在治疗靶点。它还为癌症治疗中生物小分子药物和靶向示踪剂的开发提供了前沿研究证据。