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Extremely Low Frequency Electromagnetic Fields Facilitate Vesicle Endocytosis by Increasing Presynaptic Calcium Channel Expression at a Central Synapse

机译:极低频电磁场通过在中央突触处增加突触前钙通道的表达来促进囊泡内吞

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摘要

Accumulating evidence suggests significant biological effects caused by extremely low frequency electromagnetic fields (ELF-EMF). Although exo-endocytosis plays crucial physical and biological roles in neuronal communication, studies on how ELF-EMF regulates this process are scarce. By directly measuring calcium currents and membrane capacitance at a large mammalian central nervous synapse, the calyx of Held, we report for the first time that ELF-EMF critically affects synaptic transmission and plasticity. Exposure to ELF-EMF for 8 to 10 days dramatically increases the calcium influx upon stimulation and facilitates all forms of vesicle endocytosis, including slow and rapid endocytosis, endocytosis overshoot and bulk endocytosis, but does not affect the RRP size and exocytosis. Exposure to ELF-EMF also potentiates PTP, a form of short-term plasticity, increasing its peak amplitude without impacting its time course. We further investigated the underlying mechanisms and found that calcium channel expression, including the P/Q, N, and R subtypes, at the presynaptic nerve terminal was enhanced, accounting for the increased calcium influx upon stimulation. Thus, we conclude that exposure to ELF-EMF facilitates vesicle endocytosis and synaptic plasticity in a calcium-dependent manner by increasing calcium channel expression at the nerve terminal.
机译:越来越多的证据表明,由极低频电磁场(ELF-EMF)引起的重大生物学效应。尽管胞吐作用在神经元沟通中起着至关重要的物理和生物学作用,但关于ELF-EMF如何调节这一过程的研究却很少。通过直接测量大型哺乳动物中枢神经突触(Held的花萼)的钙电流和膜电容,我们首次报道了ELF-EMF严重影响突触传递和可塑性。暴露于ELF-EMF 8至10天会极大地增加刺激后的钙内流,并促进各种形式的囊泡内吞作用,包括缓慢和快速的内吞作用,内吞作用过冲和大量内吞作用,但不影响RRP大小和胞吐作用。暴露于ELF-EMF还会增强PTP(一种短期可塑性),在不影响其时程的情况下增加其峰值幅度。我们进一步研究了潜在的机制,发现突触前神经末梢的钙通道表达(包括P / Q,N和R亚型)得到增强,这说明刺激后钙内流增加。因此,我们得出结论,暴露于ELF-EMF可以通过增加神经末梢的钙通道表达,以钙依赖的方式促进囊泡内吞和突触可塑性。

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