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Absence of histamine-induced itch in the African naked mole-rat and 'rescue' by Substance P

机译:P物质P在非洲裸mole鼠中不存在组胺引起的瘙痒和“营救”

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Recent research has proposed a pathway in which sensory neurons expressing the capsaicin activated ion channel TRPV1 are required for histamine-induced itch and subsequent scratching behavior. We examined histamine-induced itch in the African naked mole-rat (Heterocephalus glaber) and found that although naked mole-rats display innate scratching behavior, histamine was unable to evoke increased scratching as is observed in most mouse strains. Using calcium imaging, we examined the histamine sensitivity of naked mole-rat dorsal root ganglia (DRG) neurons and identified a population of small diameter neurons activated by histamine, the majority of which are also capsaicin-sensitive. This suggested that naked mole-rat sensory neurons are activated by histamine, but that spinal dorsal horn processing of sensory information is not the same as in other rodents. We have previously shown that naked mole-rats naturally lack substance P (SP) in cutaneous C-fibers, but that the neurokinin-1 receptor is expressed in the superficial spinal cord. This led us to investigate if SP deficiency plays a role in the lack of histamine-induced scratching in this species. After intrathecal administration of SP into the spinal cord we observed robust scratching behavior in response to histamine injection. Our data therefore support a model in which TRPV1-expressing sensory neurons are important for histamine-induced itch. In addition, we demonstrate a requirement for active, SP-induced post-synaptic drive to enable histamine sensitive afferents to drive itch-related behavior in the naked mole-rat. These results illustrate that it is altered dorsal horn connectivity of nociceptors that underlies the lack of itch and pain-related behavior in the naked mole-rat.
机译:最近的研究提出了一条途径,其中表达辣椒素激活的离子通道TRPV1的感觉神经元对于组胺诱导的瘙痒和随后的抓挠行为是必需的。我们检查了非洲裸mole鼠(Heterocephalus glaber)中组胺引起的瘙痒,发现尽管裸mole鼠表现出先天的抓挠行为,但组胺无法像大多数小鼠品系那样引起更多的抓挠。使用钙成像,我们检查了裸mole鼠大鼠背根神经节(DRG)神经元的组胺敏感性,并鉴定了由组胺激活的小直径神经元,其中大多数也是辣椒素敏感的。这表明组胺可以激活裸鼠的大鼠的感觉神经元,但是脊髓背角对感觉信息的处理与其他啮齿动物不同。先前我们已经证明裸mole鼠自然在皮肤C纤维中缺乏P(SP)物质,但是在表层脊髓中表达了神经激肽1受体。这导致我们调查SP缺乏是否在该物种中缺乏组胺诱导的抓挠中起作用。鞘内注射SP进入脊髓后,我们观察到对组胺注射有强烈的抓挠行为。因此,我们的数据支持一个模型,其中表达TRPV1的感觉神经元对于组胺诱导的瘙痒很重要。另外,我们证明了主动的,SP诱导的突触后驱动的需求,以使组胺敏感的传入动物能够驱动裸mole鼠的瘙痒相关行为。这些结果表明,它改变了伤害感受器的背角连接性,这是赤裸裸痣鼠缺乏瘙痒和疼痛相关行为的基础。

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