i3S-Instituto de Investigação e Inovação em Saúde, Universidade do Porto, Rua Alfredo Allen 280, 4200-135 Porto, Portugal.
INEB-Instituto de Engenharia Biomédica, Universidade do Porto, Rua Alfredo Allen 280, 4200-135 Porto, Portugal.
Int J Mol Sci. 2022 Feb 8;23(3):1902. doi: 10.3390/ijms23031902.
Calcium (Ca) is involved as a signalling mediator in a broad variety of physiological processes. Some of the fastest responses in human body like neuronal action potential firing, to the slowest gene transcriptional regulation processes are controlled by pathways involving calcium signalling. Under pathological conditions these mechanisms are also involved in tumoral cells reprogramming, resulting in the altered expression of genes associated with cell proliferation, metastatisation and homing to the secondary metastatic site. On the other hand, calcium exerts a central function in nociception, from cues sensing in distal neurons, to signal modulation and interpretation in the central nervous system leading, in pathological conditions, to hyperalgesia, allodynia and pain chronicization. It is well known the relationship between cancer and pain when tumoral metastatic cells settle in the bones, especially in late breast cancer stage, where they alter the bone micro-environment leading to bone lesions and resulting in pain refractory to the conventional analgesic therapies. The purpose of this review is to address the Ca signalling mechanisms involved in cancer cell metastatisation as well as the function of the same signalling tools in pain regulation and transmission. Finally, the possible interactions between these two cells types cohabiting the same Ca rich environment will be further explored attempting to highlight new possible therapeutical targets.
钙(Ca)作为信号介质参与广泛的生理过程。人体最快的反应之一,如神经元动作电位的发射,到最慢的基因转录调控过程,都受涉及钙信号的途径控制。在病理条件下,这些机制也参与肿瘤细胞的重编程,导致与细胞增殖、转移和归巢到继发转移部位相关的基因表达改变。另一方面,钙在痛觉感知中起着核心作用,从远端神经元的线索感知,到中枢神经系统的信号调制和解释,在病理条件下导致痛觉过敏、感觉异常和疼痛慢性化。众所周知,癌症和疼痛之间的关系,当肿瘤转移细胞在骨骼中定居时,特别是在晚期乳腺癌阶段,它们改变了骨骼微环境,导致骨损伤,并导致对常规镇痛疗法产生抗药性。本综述的目的是探讨钙信号机制在癌细胞转移中的作用,以及相同信号工具在疼痛调节和传递中的作用。最后,将进一步探讨这两种类型的细胞在同一个富含钙的环境中共存时可能的相互作用,试图突出新的可能治疗靶点。