Mechanical and chemical itch regulated by neuropeptide Y-Y1 signaling.

IF 2.8 3区 医学 Q2 NEUROSCIENCES
Sihan Chen, Junhui Chen, Dan Tang, Wen Yin, Saihong Xu, Po Gao, Yingfu Jiao, Weifeng Yu
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Abstract

Itch is a somatosensory sensation to remove potential harmful stimulation with a scratching desire, which could be divided into mechanical and chemical itch according to diverse stimuli, such as wool fiber and insect biting. It has been reported that neuropeptide Y (NPY) neurons, a population of spinal inhibitory interneurons, could gate the transmission of mechanical itch, with no effect on chemical itch. In our study, we verified that chemogenetic activation of NPY neurons could inhibit the mechanical itch as well as the chemical itch, which also attenuated the alloknesis phenomenon in the chronic dry skin model. Afterwards, intrathecal administration of NPY1R agonist, [Leu31, Pro34]-NPY (LP-NPY), showed the similar inhibition effect on mechanical itch, chemical itch and alloknesis as chemo-activation of NPY neurons. Whereas, intrathecal administration of NPY1R antagonist BIBO 3304 enhanced mechanical itch and reversed the alloknesis phenomenon inhibited by LP-NPY treatment. Moreover, selectively knocking down NPY1R by intrathecal injection of Npy1r siRNA enhanced mechanical and chemical itch behavior as well. These results indicate that NPY neurons in spinal cord regulate mechanical and chemical itch, and alloknesis in dry skin model through NPY1 receptors.

神经肽 Y-Y1 信号调控机械和化学瘙痒
痒是一种以搔抓的欲望来消除潜在有害刺激的躯体感觉,可根据不同的刺激(如羊毛纤维和昆虫叮咬)分为机械性痒和化学性痒。有报道称,脊髓抑制性中间神经元群中的神经肽Y(NPY)神经元可以控制机械性痒的传递,而对化学性痒没有影响。在我们的研究中,我们验证了化学激活 NPY 神经元不仅能抑制机械痒,还能抑制化学痒,这也减轻了慢性皮肤干燥模型中的异物感现象。随后,鞘内注射NPY1R激动剂[Leu31, Pro34]-NPY(LP-NPY)与化学激活NPY神经元对机械性瘙痒、化学性瘙痒和异物感的抑制作用相似。而鞘内注射 NPY1R 拮抗剂 BIBO 3304 则可增强机械瘙痒,并逆转 LP-NPY 治疗所抑制的失神经现象。此外,通过鞘内注射 Npy1r siRNA 选择性地敲除 NPY1R 也会增强机械痒和化学痒行为。这些结果表明,脊髓中的NPY神经元通过NPY1受体调节干性皮肤模型中的机械痒、化学痒和失神经现象。
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来源期刊
Molecular Pain
Molecular Pain 医学-神经科学
CiteScore
5.60
自引率
3.00%
发文量
56
审稿时长
6-12 weeks
期刊介绍: Molecular Pain is a peer-reviewed, open access journal that considers manuscripts in pain research at the cellular, subcellular and molecular levels. Molecular Pain provides a forum for molecular pain scientists to communicate their research findings in a targeted manner to others in this important and growing field.
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