Department of Physics, CFisUC, University of Coimbra, Coimbra, Portugal.
Sci Rep. 2021 Jun 30;11(1):13607. doi: 10.1038/s41598-021-92951-0.
As the main theory of carcinogenesis, the Somatic Mutation Theory, increasingly presents difficulties to explain some experimental observations, different theories are being proposed. A major alternative approach is the Tissue Organization Field Theory, which explains cancer origin as a tissue regulation disease instead of having a mainly cellular origin. This work fits in the latter hypothesis, proposing the bioelectric field, in particular the cell membrane polarization state, and ionic exchange through ion channels and gap junctions, as an important mechanism of cell communication and tissue organization and regulation. Taking into account recent experimental results and proposed bioelectric models, a computational model of cancer initiation was developed, including the propagation of a cell depolarization wave in the tissue under consideration. Cell depolarization leads to a change in its state, with the activation and deactivation of several regulation pathways, increasing cell proliferation and motility, changing its epigenetic state to a more stem cell-like behavior without the requirement of genomic mutation. The intercellular communication via gap junctions leads, in certain circumstances, to a bioelectric state propagation to neighbor cells, in a chain-like reaction, till an electric discontinuity is reached. However, this is a reversible process, and it was shown experimentally that, by implementing a therapy targeted on cell ion exchange channels, it is possible to reverse the state and repolarize cells. This mechanism can be an important alternative way in cancer prevention, diagnosis and therapy, and new experiments are proposed to test the presented hypothesis.
作为癌症发生的主要理论,体细胞突变理论在解释一些实验观察结果时越来越困难,因此提出了不同的理论。一种主要的替代方法是组织形态发生场理论,该理论将癌症起源解释为组织调节疾病,而不是主要源于细胞。这项工作符合后一种假设,提出生物电场,特别是细胞膜极化状态,以及通过离子通道和缝隙连接的离子交换,作为细胞通讯和组织调节的重要机制。考虑到最近的实验结果和提出的生物电场模型,开发了一种癌症起始的计算模型,包括在所考虑的组织中传播细胞去极化波。细胞去极化导致其状态发生变化,激活和失活几个调节途径,增加细胞增殖和迁移性,将其表观遗传状态改变为更类似于干细胞的行为,而无需基因组突变。通过缝隙连接进行的细胞间通讯在某些情况下会导致生物电场状态在相邻细胞中传播,形成链式反应,直到达到电不连续性。然而,这是一个可逆的过程,实验表明,通过实施针对细胞离子交换通道的治疗,可以逆转状态并使细胞重新极化。这种机制可能是癌症预防、诊断和治疗的一种重要替代方法,并提出了新的实验来检验所提出的假设。