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A Novel Method for Inducing Nerve Growth via Modulation of Host Resting Potential: Gap Junction-Mediated and Serotonergic Signaling Mechanisms

机译:通过调节宿主静息电位诱导神经生长的新方法:间隙连接介导和血清素能信号传导机制。

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Summary A major goal of regenerative medicine is to restore the function of damaged or missing organs through the implantation of bioengineered or donor-derived components. It is necessary to understand the signals and cues necessary for implanted structures to innervate the host, as organs devoid of neural connections provide little benefit to the patient. While developmental studies have identified neuronal pathfinding molecules required for proper patterning during embryogenesis, strategies to initiate innervation in structures transplanted at later times or alternate locations remain limited. Recent work has identified membrane resting potential of nerves as a key regulator of growth cone extension or arrest. Here, we identify a novel role of bioelectricity in the generation of axon guidance cues, showing that neurons read the electric topography of surrounding cells, and demonstrate these cues can be leveraged to initiate sensory organ transplant innervation. Grafts of fluorescently labeled embryological eye primordia were used to produce ectopic eyes in Xenopus laevis tadpoles. Depolarization of host tissues through anion channel activation or other means led to a striking hyperinnervation of the body by these ectopic eyes. A screen of possible transduction mechanisms identified serotonergic signaling to be essential for hyperinnervation to occur, and our molecular data suggest a possible model of bioelectrical control of the distribution of neurotransmitters that guides nerve growth. Together, these results identify the molecular components of bioelectrical signaling among cells that regulates axon guidance, and suggest novel biomedical and bioengineering strategies for triggering neuronal outgrowth using ion channel drugs already approved for human use. Electronic supplementary material The online version of this article (doi:10.1007/s13311-014-0317-7) contains supplementary material, which is available to authorized users.
机译:总结再生医学的主要目标是通过植入生物工程或供体来源的成分来恢复受损或缺失器官的功能。由于缺乏神经连接的器官对患者几乎没有好处,因此有必要了解植入结构神经支配宿主所必需的信号和线索。尽管发展研究已经确定了在胚胎发生过程中正确进行模式形成所需的神经元寻路分子,但在以后或其他位置移植的结构中启动神经支配的策略仍然有限。最近的工作已经将神经的膜静止潜能确定为生长锥延伸或停止的关键调节器。在这里,我们确定了生物电在轴突指导线索的产生中的新作用,表明神经元读取周围细胞的电拓扑图,并证明这些线索可以被利用来启动感觉器官移植的神经支配。荧光标记的胚胎眼原基的嫁接被用于在非洲爪蟾中产生异位眼。通过阴离子通道激活或其他方式使宿主组织去极化,导致这些异位眼对人体的过度神经支配。对可能的转导机制进行了筛选,确定了血清素能信号传导对于发生超神经支配是必不可少的,而我们的分子数据表明,可能存在生物电控制指导神经生长的神经递质分布的模型。总之,这些结果确定了调节轴突指导的细胞中生物电信号传导的分子成分,并提出了使用已经批准用于人类的离子通道药物来触发神经元生长的新型生物医学和生物工程学策略。电子补充材料本文的在线版本(doi:10.1007 / s13311-014-0317-7)包含补充材料,授权用户可以使用。

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