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The Flatworm Macrostomum lignano Is a Powerful Model Organism for Ion Channel and Stem Cell Research

机译:扁虫Macrostomum lignano是用于离子通道和干细胞研究的强大模型生物

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摘要

Bioelectrical signals generated by ion channels play crucial roles in many cellular processes in both excitable and nonexcitable cells. Some ion channels are directly implemented in chemical signaling pathways, the others are involved in regulation of cytoplasmic or vesicular ion concentrations, pH, cell volume, and membrane potentials. Together with ion transporters and gap junction complexes, ion channels form steady-state voltage gradients across the cell membranes in nonexcitable cells. These membrane potentials are involved in regulation of such processes as migration guidance, cell proliferation, and body axis patterning during development and regeneration. While the importance of membrane potential in stem cell maintenance, proliferation, and differentiation is evident, the mechanisms of this bioelectric control of stem cell activity are still not well understood, and the role of specific ion channels in these processes remains unclear. Here we introduce the flatworm Macrostomum lignano as a versatile model organism for addressing these topics. We discuss biological and experimental properties of M. lignano, provide an overview of the recently developed experimental tools for this animal model, and demonstrate how manipulation of membrane potential influences regeneration in M. lignano.
机译:离子通道产生的生物电信号在可激发和不可激发细胞的许多细胞过程中都起着至关重要的作用。一些离子通道直接在化学信号传导途径中实现,其他离子通道则参与细胞质或囊泡离子浓度,pH,细胞体积和膜电位的调节。离子通道与离子转运蛋白和间隙连接复合物一起,在不可激发的细胞中跨细胞膜形成稳态电压梯度。这些膜电位涉及在发育和再生过程中的迁移指导,细胞增殖和体轴构图等过程的调节。尽管膜电位在干细胞维持,增殖和分化中的重要性很明显,但这种对干细胞活性进行生物电控制的机制仍未得到很好的理解,具体离子通道在这些过程中的作用仍不清楚。在这里,我们介绍扁虫Macrostomum lignano作为解决这些主题的通用模型生物。我们讨论了M. lignano的生物学和实验性质,提供了针对该动物模型的最新开发实验工具的概述,并展示了膜电位的操纵如何影响M. lignano的再生。

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