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Schwann Cell Autocrine and Paracrine Regulatory Mechanisms Mediated by Allopregnanolone and BDNF Modulate PKCε in Peripheral Sensory Neurons

机译:Schwann细胞自分泌和旁静脉调节机制由AllopregnOnolone和BDNF介导调节外周感觉神经元的PKCε

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摘要

Protein kinase type C-ε (PKCε) plays important roles in the sensitization of primary afferent nociceptors, such as ion channel phosphorylation, that in turn promotes mechanical hyperalgesia and pain chronification. In these neurons, PKCε is modulated through the local release of mediators by the surrounding Schwann cells (SCs). The progesterone metabolite allopregnanolone (ALLO) is endogenously synthesized by SCs, whereas it has proven to be a crucial mediator of neuron-glia interaction in peripheral nerve fibers. Biomolecular and pharmacological studies on rat primary SCs and dorsal root ganglia (DRG) neuronal cultures were aimed at investigating the hypothesis that ALLO modulates neuronal PKCε, playing a role in peripheral nociception. We found that SCs tonically release ALLO, which, in turn, autocrinally upregulated the synthesis of the growth factor brain-derived neurotrophic factor (BDNF). Subsequently, glial BDNF paracrinally activates PKCε via trkB in DRG sensory neurons. Herein, we report a novel mechanism of SCs-neuron cross-talk in the peripheral nervous system, highlighting a key role of ALLO and BDNF in nociceptor sensitization. These findings emphasize promising targets for inhibiting the development and chronification of neuropathic pain.
机译:蛋白激酶型C-ε(PKCε)在初级传入伤害者的敏化中起重要作用,例如离子通道磷酸化,反过来促进机​​械痛觉痛觉和疼痛量计量。在这些神经元中,通过周围的Schwann细胞(SCS)通过局部释放来调节PKCε。孕酮代谢物亚丙醇酮(Allo)通过SCs内源合成,而它已被证明是神经纤维中神经元胶质胶质相互作用的重要介体。对大鼠原发性SCS和背根神经节(DRG)神经元培养物的生物分子和药理研究旨在研究Allo调节神经元PKCε的假设,在外周伤害中发挥作用。我们发现在分子释放Allo的SCS,反过来,这反过来,自认生上调了生长因子脑衍生的神经营养因子(BDNF)的合成。随后,通过DRG感觉神经元的TRKB,胶质BDNF映射地激活PKCε。在此,我们在外周神经系统中报告了SCS-neuron串扰的新机制,突出了Allo和BDNF在伤害者致敏中的关键作用。这些调查结果强调有希望抑制神经病疼痛的发展和计数的目标。

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