探讨肿瘤生长的神经生物学机制。

IF 2.8 4区 医学 Q2 PHARMACOLOGY & PHARMACY
Md Sadique Hussain, Mudasir Maqbool, Mohit Agrawal, Amita Joshi Rana, Ayesha Sultana, Nasreen Sulthana, Ajay Singh Bisht, Gyas Khan
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引用次数: 0

摘要

越来越多的证据表明,神经系统和肿瘤生物学之间的相互作用显著影响癌症的进展、转移和治疗结果。这篇综述阐明了支持肿瘤发展的神经生物学机制,强调了肿瘤微环境(TME)中神经成分的动态作用。TME中的神经信号和结构适应刺激肿瘤发生并使癌细胞可塑性,模拟神经发育过程。星形胶质细胞释放神经营养因子,支持转移性定植,提高肿瘤细胞存活率。值得注意的是,癌细胞可以与神经元建立伪三方突触,促进增殖和侵袭。我们探讨了癌症-神经网络的相互作用,强调轴突重塑、电路重组和突触功能障碍不仅驱动肿瘤生长,而且还导致癫痫发作和慢性疼痛等相关症状。在分子上,PIK3CA等突变和神经递质信号异常揭示了神经肿瘤如何沟通和适应。此外,来自肿瘤细胞的代谢应激反应可以激活伤害性神经元,维持恶性进展。了解这些神经生物学的相互作用为新的治疗策略开辟了道路。精确神经肿瘤学可能受益于靶向神经营养信号,突触通路和神经元分化程序。神经肿瘤生物标志物研究的进展也有助于改进诊断和预后工具。通过将神经科学的见解整合到肿瘤学框架中,我们提出了一种范式转变,即阻断维持恶性肿瘤的神经回路。这种神经肿瘤学方法有望解决侵袭性癌症表型和改善患者预后。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring the Neurobiological Mechanisms of Cancer Growth.

Emerging evidence reveals that interactions between the nervous system and tumor biology significantly influence cancer progression, metastasis, and therapeutic outcomes. This review elucidates the neurobiological mechanisms that underpin tumor development, highlighting the dynamic role of neural components within the tumor microenvironment (TME). Neural signals and structural adaptations in the TME stimulate tumorigenesis and enable cancer cell plasticity, mimicking neurodevelopmental processes. Astrocytic glial cells release neurotrophic factors that support metastatic colonization and enhance tumor cell survival. Notably, cancer cells can establish pseudo-tripartite synapses with neurons, promoting both proliferation and invasion. We explore the cancer-neural network interplay, emphasizing how axonal remodeling, circuit reorganization, and synaptic dysfunction not only drive tumor growth but also contribute to associated symptoms like seizures and chronic pain. Molecularly, mutations such as in PIK3CA and abnormalities in neurotransmitter signaling reveal how neuro-tumors communicate and adapt. Furthermore, metabolic stress responses from tumor cells can activate nociceptive neurons, sustaining malignant progression. Understanding these neurobiological interactions opens avenues for novel therapeutic strategies. Precision neuro-oncology may benefit from targeting neurotrophic signaling, synaptic pathways, and neuronal differentiation programs. Advances in biomarker research from neuro-tumors also contribute to improved diagnostic and prognostic tools. By integrating neuroscience insights into oncological frameworks, we propose a paradigm shift toward therapies that intercept the neural circuitry sustaining malignancies. This neuro-oncological approach holds promise in addressing aggressive cancer phenotypes and improving patient outcomes.

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来源期刊
CiteScore
6.30
自引率
0.00%
发文量
302
审稿时长
2 months
期刊介绍: Current Pharmaceutical Design publishes timely in-depth reviews and research articles from leading pharmaceutical researchers in the field, covering all aspects of current research in rational drug design. Each issue is devoted to a single major therapeutic area guest edited by an acknowledged authority in the field. Each thematic issue of Current Pharmaceutical Design covers all subject areas of major importance to modern drug design including: medicinal chemistry, pharmacology, drug targets and disease mechanism.
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