Department of Medical Chemistry, Pomeranian Medical University, Powstańców Wlkp. 71 St., 70-111 Szczecin, Poland.
Department of Physiology and Biochemistry, Institute of Biology, University of Szczecin, Felczaka 3c St., 71-412 Szczecin, Poland.
Int J Mol Sci. 2023 Jan 13;24(2):1558. doi: 10.3390/ijms24021558.
The purpose of this review is to attempt to outline the potential role of fluoride in the pathogenesis of brain tumours, including glioblastoma (GBM). In this paper, we show for the first time that fluoride can potentially affect the generally accepted signalling pathways implicated in the formation and clinical course of GBM. Fluorine compounds easily cross the blood-brain barrier. Enhanced oxidative stress, disruption of multiple cellular pathways, and microglial activation are just a few examples of recent reports on the role of fluoride in the central nervous system (CNS). We sought to present the key mechanisms underlying the development and invasiveness of GBM, as well as evidence on the current state of knowledge about the pleiotropic, direct, or indirect involvement of fluoride in the regulation of these mechanisms in various tissues, including neural and tumour tissue. The effects of fluoride on the human body are still a matter of controversy. However, given the growing incidence of brain tumours, especially in children, and numerous reports on the effects of fluoride on the CNS, it is worth taking a closer look at these mechanisms in the context of brain tumours, including gliomas.
本文旨在探讨氟化物在脑肿瘤(包括胶质母细胞瘤)发病机制中的潜在作用。文中首次表明,氟化物可能会影响普遍公认的与胶质母细胞瘤形成和临床病程相关的信号通路。氟化物化合物容易穿过血脑屏障。增强的氧化应激、多种细胞途径的破坏以及小胶质细胞的激活,仅仅是近年来关于氟化物在中枢神经系统(CNS)中作用的少数几个报告的例子。我们试图提出胶质母细胞瘤发展和侵袭的关键机制,以及关于氟化物在调节各种组织(包括神经组织和肿瘤组织)中这些机制的多效性、直接或间接参与的当前知识状态的证据。氟化物对人体的影响仍存在争议。然而,鉴于脑肿瘤(尤其是儿童脑肿瘤)的发病率不断上升,以及大量关于氟化物对中枢神经系统影响的报告,值得在脑肿瘤(包括神经胶质瘤)的背景下仔细研究这些机制。