Department of Anatomy, University of California San Francisco, San Francisco, CA 94158, USA.
J Physiol. 2013 Feb 15;591(4):1097-110. doi: 10.1113/jphysiol.2012.242115. Epub 2012 Dec 24.
We previously demonstrated that genetic and/or pharmacological ablation of the TRPV1+/peptidergic or the MrgprD+/non-peptidergic subset of nociceptors produced selective, modality-specific deficits in the behavioural responses to heat and mechanical stimuli, respectively. To assess whether this modality-specific contribution is also manifest at the level of spinal cord neuron responsiveness, here we made extracellular recordings from lumbar dorsal horn neurons of the mouse in response to graded thermal and mechanical stimulation. We found that, following intrathecal injection of capsaicin to eliminate the central terminals of TRPV1+ nociceptors, neurons in the region of laminae I and V of the spinal cord lost responsiveness to noxious heat (whether generated by a contact heat probe or diode laser), with no change in their response to noxious mechanical stimulation. In contrast, ablation of MrgprD+ afferents did not alter the response to noxious heat, but reduced the firing of superficial dorsal horn nociceptive-specific neurons in response to graded mechanical stimulation and decreased the relative number of wide dynamic range neurons that were exclusively mechanosensitive. Neither ablation procedure reduced the number of dorsal horn neurons that responded to noxious cold. These findings support the conclusion that TRPV1+ nociceptors are necessary and probably sufficient for noxious heat activation of dorsal horn neurons and that, despite their polymodal properties, TRPV1+ and MrgprD+ nociceptors provide modality-specific contributions to the response properties of spinal cord neurons.
我们之前已经证明,TRPV1+/肽能或 MrgprD+/非肽能伤害感受器的遗传和/或药理学缺失分别导致对热和机械刺激的行为反应产生选择性的、模态特异性缺陷。为了评估这种模态特异性贡献是否也表现在脊髓神经元反应水平上,我们在这里对小鼠的腰骶部背角神经元进行了体外记录,以响应分级热和机械刺激。我们发现,在鞘内注射辣椒素来消除 TRPV1+伤害感受器的中枢末端后,脊髓 I 层和 V 层区域的神经元对有害热(无论是由接触热探针还是二极管激光产生的)失去了反应性,而对有害机械刺激的反应没有改变。相比之下,MrgprD+传入纤维的缺失并没有改变对有害热的反应,但减少了对分级机械刺激的浅层背角伤害感受特异性神经元的放电,并减少了专门对机械刺激敏感的宽动态范围神经元的相对数量。两种缺失程序都没有减少对有害冷有反应的背角神经元的数量。这些发现支持这样的结论,即 TRPV1+伤害感受器是有害热激活背角神经元所必需的,并且可能是充分的,并且尽管 TRPV1+和 MrgprD+伤害感受器具有多模态特性,但它们对脊髓神经元的反应特性提供了模态特异性贡献。