The Crosstalk between Nerves and Cancer—A Poorly Understood Phenomenon and New Possibilities

Cancers Pub Date : 2024-05-15 DOI:10.3390/cancers16101875
David Benzaquen, Yaacov R. Lawrence, D. Taussky, Daniel Zwahlen, Christoph Oehler, Ambroise Champion
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Abstract

Introduction: Crosstalk occurs between nerve and cancer cells. These interactions are important for cancer homeostasis and metabolism. Nerve cells influence the tumor microenvironment (TME) and participate in metastasis through neurogenesis, neural extension, and axonogenesis. We summarized the past and current literature on the interaction between nerves and cancer, with a special focus on pancreatic ductal adenocarcinoma (PDAC), prostate cancer (PCa), and the role of the nerve growth factor (NGF) in cancer. Materials/Methods: We reviewed PubMed and Google Scholar for the relevant literature on the relationship between nerves, neurotrophins, and cancer in general and specifically for both PCa and PDAC. Results: The NGF helped sustain cancer cell proliferation and evade immune defense. It is a neuropeptide involved in neurogenic inflammation through the activation of several cells of the immune system by several proinflammatory cytokines. Both PCa and PDAC employ different strategies to evade immune defense. The prostate is richly innervated by both the sympathetic and parasympathetic nerves, which helps in both growth control and homeostasis. Newly formed autonomic nerve fibers grow into cancer cells and contribute to cancer initiation and progression through the activation of β-adrenergic and muscarinic cholinergic signaling. Surgical or chemical sympathectomy prevents the development of prostate cancer. Beta-blockers have a high therapeutic potential for cancer, although current clinical data have been contradictory. With a better understanding of the beta-receptors, one could identify specific receptors that could have an effect on prostate cancer development or act as therapeutic agents. Conclusion: The bidirectional crosstalk between the nervous system and cancer cells has emerged as a crucial regulator of cancer and its microenvironment. Denervation has been shown to be promising in vitro and in animal models. Additionally, there is a potential relationship between cancer and psychosocial biology through neurotransmitters and neurotrophins.
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神经与癌症之间的相互影响--鲜为人知的现象和新的可能性
简介神经细胞和癌细胞之间存在着相互作用。这些相互作用对癌症的稳态和新陈代谢非常重要。神经细胞影响肿瘤微环境(TME),并通过神经发生、神经延伸和轴突生长参与转移。我们总结了过去和当前有关神经与癌症之间相互作用的文献,特别关注胰腺导管腺癌(PDAC)、前列腺癌(PCa)以及神经生长因子(NGF)在癌症中的作用。材料/方法:我们查阅了 PubMed 和 Google Scholar 上关于神经、神经营养素和癌症之间关系的相关文献,特别是 PCa 和 PDAC 的相关文献。结果NGF有助于维持癌细胞增殖并逃避免疫防御。它是一种神经肽,通过几种促炎细胞因子激活免疫系统的几种细胞,从而参与神经源性炎症。PCa 和 PDAC 都采用不同的策略来逃避免疫防御。前列腺有丰富的交感神经和副交感神经支配,有助于控制生长和维持体内平衡。新形成的自律神经纤维长入癌细胞,并通过激活β-肾上腺素能和毒蕈碱胆碱能信号来促进癌症的发生和发展。手术或化学交感神经切除术可预防前列腺癌的发生。尽管目前的临床数据相互矛盾,但β-受体阻滞剂对癌症具有很高的治疗潜力。随着对 β 受体的深入了解,人们可以找出对前列腺癌的发展有影响或可作为治疗药物的特定受体。结论神经系统与癌细胞之间的双向串扰已成为癌症及其微环境的重要调节因素。在体外和动物模型中,去神经支配已被证明是有前景的。此外,通过神经递质和神经营养素,癌症与社会心理生物学之间存在着潜在的关系。
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