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Electrical Stimulation Promotes Peripheral Axon Regeneration By Enhanced Neuronal Neurotrophin Signaling

机译:电刺激通过增强的神经元Neurotrophin信号传导促进周围轴突再生。

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摘要

Electrical stimulation of cut peripheral nerves at the time of their surgical repair results in an enhancement of axon regeneration. Regeneration of axons through nerve allografts was used to evaluate whether this effect is due to an augmentation of cell autonomous neurotrophin signaling in the axons or signaling from neurotrophins produced in the surrounding environment. In the thy-1-YFP-H mouse, a single one hour application of electrical stimulation at the time of surgical repair of the cut common fibular nerve results in a significant increase in the proportion of YFP+ dorsal root ganglion neurons that were also immunoreactive for BDNF or trkB as well as an increase in the length of regenerating axons through allografts from wild type litter mates, both one and two weeks later. Axon growth through allografts from neurotrophin-4/5 knockout mice or grafts made acellular by repeated cycles of freezing and thawing is normally very poor, but electrical stimulation results in a growth of axons through these grafts which is similar to that observed through grafts from wild type mice after electrical stimulation. When cut nerves in NT-4/5 knockout mice were electrically stimulated, no enhancement of axon regeneration was found. Electrical stimulation thus produces a potent enhancement of the regeneration of axons in cut peripheral nerves which is independent of neurotrophin production by cells in their surrounding environment but is dependent on stimulation of trkB and its ligands in the regenerating axons themselves.
机译:切开的周围神经在进行外科手术修复时受到电刺激,从而增强了轴突的再生能力。通过神经同种异体移植的轴突再生被用来评估这种效果是由于轴突中细胞自主神经营养蛋白信号传导的增强还是周围环境中产生的神经营养因子的信号传导引起的。在thy-1-YFP-H小鼠中,在手术切除腓总神经时单小时施加电刺激会导致YFP +背根神经节神经元的比例显着增加,而YFP +背根神经节神经元对一星期和两周后,通过同种异体野生同窝同种异体移植,BDNF或trkB以及再生轴突的长度增加。通过反复冷冻和融化循环使神经营养蛋白4/5基因敲除小鼠或无细胞的同种异体移植物轴突生长通常非常差,但电刺激导致这些移植物产生轴突生长,这与通过野生移植物观察到的相似。电刺激后的小鼠。当电刺激NT-4 / 5基因敲除小鼠的神经切断时,未发现轴突再生增强。因此,电刺激可有效增强周围神经切断后轴突的再生,这与周围环境中细胞产生的神经营养蛋白无关,但依赖于再生轴突本身对trkB及其配体的刺激。

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