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非洲裸鼹鼠(裸鼹鼠属)的选择性炎性疼痛不敏感

Selective inflammatory pain insensitivity in the African naked mole-rat (Heterocephalus glaber).

作者信息

Park Thomas J, Lu Ying, Jüttner René, Smith Ewan St J, Hu Jing, Brand Antje, Wetzel Christiane, Milenkovic Nevena, Erdmann Bettina, Heppenstall Paul A, Laurito Charles E, Wilson Steven P, Lewin Gary R

机构信息

Laboratory of Integrative Neuroscience, Department of Biological Sciences, University of Illinois at Chicago, Chicago, Illinois, United States of America.

出版信息

PLoS Biol. 2008 Jan;6(1):e13. doi: 10.1371/journal.pbio.0060013.

Abstract

In all mammals, tissue inflammation leads to pain and behavioral sensitization to thermal and mechanical stimuli called hyperalgesia. We studied pain mechanisms in the African naked mole-rat, an unusual rodent species that lacks pain-related neuropeptides (e.g., substance P) in cutaneous sensory fibers. Naked mole-rats show a unique and remarkable lack of pain-related behaviors to two potent algogens, acid and capsaicin. Furthermore, when exposed to inflammatory insults or known mediators, naked mole-rats do not display thermal hyperalgesia. In contrast, naked mole-rats do display nocifensive behaviors in the formalin test and show mechanical hyperalgesia after inflammation. Using electrophysiology, we showed that primary afferent nociceptors in naked mole-rats are insensitive to acid stimuli, consistent with the animal's lack of acid-induced behavior. Acid transduction by sensory neurons is observed in birds, amphibians, and fish, which suggests that this tranduction mechanism has been selectively disabled in the naked mole-rat in the course of its evolution. In contrast, nociceptors do respond vigorously to capsaicin, and we also show that sensory neurons express a transient receptor potential vanilloid channel-1 ion channel that is capsaicin sensitive. Nevertheless, the activation of capsaicin-sensitive sensory neurons in naked mole-rats does not produce pain-related behavior. We show that capsaicin-sensitive nociceptors in the naked mole-rat are functionally connected to superficial dorsal horn neurons as in mice. However, the same nociceptors are also functionally connected to deep dorsal horn neurons, a connectivity that is rare in mice. The pain biology of the naked mole-rat is unique among mammals, thus the study of pain mechanisms in this unusual species can provide major insights into what constitutes "normal" mammalian nociception.

摘要

在所有哺乳动物中,组织炎症会导致疼痛以及对热刺激和机械刺激的行为敏感化,即痛觉过敏。我们研究了非洲裸鼹鼠的疼痛机制,这是一种不同寻常的啮齿动物,其皮肤感觉纤维中缺乏与疼痛相关的神经肽(如P物质)。裸鼹鼠对两种强效致痛剂——酸和辣椒素——表现出独特且显著的与疼痛相关行为的缺失。此外,当受到炎症刺激或已知介质作用时,裸鼹鼠不会表现出热痛觉过敏。相比之下,裸鼹鼠在福尔马林试验中确实会表现出防御性疼痛行为,并且在炎症后会出现机械性痛觉过敏。通过电生理学方法,我们发现裸鼹鼠的初级传入伤害感受器对酸刺激不敏感,这与该动物缺乏酸诱导行为一致。在鸟类、两栖动物和鱼类中观察到感觉神经元的酸转导,这表明这种转导机制在裸鼹鼠的进化过程中被选择性地禁用了。相比之下,伤害感受器对辣椒素反应强烈,并且我们还表明感觉神经元表达一种对辣椒素敏感的瞬时受体电位香草酸亚型1离子通道。然而,裸鼹鼠中对辣椒素敏感的感觉神经元的激活并不会产生与疼痛相关的行为。我们发现,裸鼹鼠中对辣椒素敏感的伤害感受器在功能上与小鼠一样与浅表背角神经元相连。然而,同样的伤害感受器在功能上也与深部背角神经元相连,这种连接性在小鼠中很少见。裸鼹鼠的疼痛生物学在哺乳动物中是独特的,因此对这种不寻常物种的疼痛机制的研究可以为构成“正常”哺乳动物痛觉的因素提供重要见解。

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