Department of Pharmacology, Ribeirão Preto Medical School, University of São Paulo, Bandeirantes Avenue, 3900, Ribeirão Preto, São Paulo, 14049-900, Brazil.
Wolfson Centre for Age-Related Diseases, King's College London, Guy's Campus, London, UK.
Mol Neurobiol. 2019 Aug;56(8):5715-5728. doi: 10.1007/s12035-019-1494-5. Epub 2019 Jan 23.
Small nerve fibers that bind the isolectin B4 (IB4 C-fibers) are a subpopulation of primary afferent neurons that are involved in nociceptive sensory transduction and do not express the neuropeptides substance P and calcitonin-gene related peptide (CGRP). Several studies have attempted to elucidate the functional role of IB4-nociceptors in different models of pain. However, a functional characterization of the non-peptidergic nociceptors in mediating mechanical inflammatory hypersensitivity in mice is still lacking. To this end, in the present study, the neurotoxin IB4-Saporin (IB4-Sap) was employed to ablate non-peptidergic C-fibers. Firstly, we showed that intrathecal (i.t.) administration of IB4-Sap in mice depleted non-peptidergic C-fibers, since it decreased the expression of purinoceptor 3 (P2X) and transient receptor potential cation channel subfamily V member 1 (TRPV1) in the dorsal root ganglia (DRGs) as well as IB4 labelling in the spinal cord. Non-peptidergic C-fibers depletion did not alter the mechanical nociceptive threshold, but it inhibited the mechanical inflammatory hypersensitivity induced by glial cell-derived neurotrophic factor (GDNF), but not nerve growth factor (NGF). Depletion of non-peptidergic C-fibers abrogated mechanical inflammatory hypersensitivity induced by carrageenan. Finally, it was found that the inflammatory mediators PGE and epinephrine produced a mechanical inflammatory hypersensitivity that was also blocked by depletion of non-peptidergic C-fibers. These data suggest that IB4-positive nociceptive nerve fibers are not involved in normal mechanical nociception but are sensitised by inflammatory stimuli and play a crucial role in mediating mechanical inflammatory hypersensitivity.
结合 isolectin B4(IB4 C-纤维)的小神经纤维是初级传入神经元的一个亚群,参与伤害感受性感觉转导,不表达神经肽 P 物质和降钙素基因相关肽(CGRP)。几项研究试图阐明 IB4-伤害感受器在不同疼痛模型中的功能作用。然而,介导小鼠机械性炎症性超敏反应的非肽能伤害感受器的功能特征仍然缺乏。为此,在本研究中,使用神经毒素 IB4-Saporin(IB4-Sap)来破坏非肽能 C-纤维。首先,我们表明,IB4-Sap 在小鼠鞘内(i.t.)给药会耗尽非肽能 C-纤维,因为它降低了背根神经节(DRG)中嘌呤能受体 3(P2X)和瞬时受体电位阳离子通道亚家族 V 成员 1(TRPV1)的表达,以及脊髓中的 IB4 标记。非肽能 C-纤维耗竭不会改变机械性痛觉阈值,但它抑制了胶质细胞衍生神经营养因子(GDNF)诱导的机械性炎症性超敏反应,但不抑制神经生长因子(NGF)诱导的机械性炎症性超敏反应。非肽能 C-纤维耗竭消除了角叉菜胶诱导的机械性炎症性超敏反应。最后,发现炎性介质 PGE 和肾上腺素产生了机械性炎症性超敏反应,这种超敏反应也被非肽能 C-纤维耗竭所阻断。这些数据表明,IB4 阳性伤害感受神经纤维不参与正常的机械性痛觉,但被炎症刺激致敏,并在介导机械性炎症性超敏反应中发挥关键作用。