Alvear-Arias Juan J, Pena-Pichicoi Antonio, Carrillo Christian, Fernandez Miguel, Gonzalez Tania, Garate Jose A, Gonzalez Carlos
Centro Interdisciplinario de Neurociencia de Valparaíso, Universidad de Valparaíso, Valparaíso, Chile.
Millennium Nucleus in NanoBioPhysics, Universidad de Valparaíso, Valparaíso, Chile.
Front Pharmacol. 2023 Apr 20;14:1175702. doi: 10.3389/fphar.2023.1175702. eCollection 2023.
The acid-base characteristics of tumor cells and the other elements that compose the tumor microenvironment have been topics of scientific interest in oncological research. There is much evidence confirming that pH conditions are maintained by changes in the patterns of expression of certain proton transporters. In the past decade, the voltage-gated proton channel (Hv1) has been added to this list and is increasingly being recognized as a target with onco-therapeutic potential. The Hv1 channel is key to proton extrusion for maintaining a balanced cytosolic pH. This protein-channel is expressed in a myriad of tissues and cell lineages whose functions vary from producing bioluminescence in dinoflagellates to alkalizing spermatozoa cytoplasm for reproduction, and regulating the respiratory burst for immune system response. It is no wonder that in acidic environments such as the tumor microenvironment, an exacerbated expression and function of this channel has been reported. Indeed, multiple studies have revealed a strong relationship between pH balance, cancer development, and the overexpression of the Hv1 channel, being proposed as a marker for malignancy in cancer. In this review, we present data that supports the idea that the Hv1 channel plays a significant role in cancer by maintaining pH conditions that favor the development of malignancy features in solid tumor models. With the antecedents presented in this bibliographic report, we want to strengthen the idea that the Hv1 proton channel is an excellent therapeutic strategy to counter the development of solid tumors.
肿瘤细胞的酸碱特性以及构成肿瘤微环境的其他因素,一直是肿瘤学研究中备受科学关注的课题。有大量证据证实,pH条件是由某些质子转运体表达模式的变化来维持的。在过去十年中,电压门控质子通道(Hv1)也被列入其中,并越来越被认为是具有肿瘤治疗潜力的靶点。Hv1通道是质子排出以维持胞质pH平衡的关键。这种蛋白通道在众多组织和细胞谱系中表达,其功能各不相同,从在甲藻中产生生物发光到使精子细胞质碱化以进行繁殖,以及调节免疫系统反应中的呼吸爆发。难怪在肿瘤微环境等酸性环境中,已有报道称该通道的表达和功能会加剧。事实上,多项研究揭示了pH平衡、癌症发展与Hv1通道过表达之间存在密切关系,有人提出将其作为癌症恶性程度的标志物。在这篇综述中,我们提供的数据支持了这样一种观点,即Hv1通道通过维持有利于实体瘤模型中恶性特征发展的pH条件,在癌症中发挥着重要作用。基于本参考文献报告中呈现的前期研究,我们想强化这样一种观点,即Hv1质子通道是对抗实体瘤发展的一种极佳治疗策略。