首页> 外文期刊>The journal of pain: official journal of the American Pain Society >Acid-sensing ion channel 3 expression in mouse knee joint afferents and effects of carrageenan-induced arthritis.
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Acid-sensing ion channel 3 expression in mouse knee joint afferents and effects of carrageenan-induced arthritis.

机译:酸敏感离子通道3在小鼠膝关节传入神经中的表达以及角叉菜胶诱发的关节炎的影响。

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摘要

Arthritis is associated with decreases in local pH. Of the acid-sensing ion channels (ASIC), ASIC3 is most sensitive to such a pH change, abundantly expressed in dorsal root ganglion (DRG), and critical for the development of secondary hyperalgesia. The purpose of this study was to investigate the upregulation of ASIC3, using an acute arthritic pain model in mice. We examined ASIC3 expression in DRG neurons innervating the knee joint with and without carrageenan-induced arthritis by means of retrograde labeling and immunohistochemistry. We also examined the difference of DRG phenotype between ASIC3+/+ and ASIC3-/- mice. ASIC3 immunoreactivity was present in 31% of knee joint afferents and dominantly in small cells. After joint inflammation, ASIC3-immunoreactive neurons significantly increased in number by 50%. Calcitonin gene-related peptide (CGRP) increased similarly in both ASIC3+/+ and ASIC3-/- mice. Soma size distribution of ASIC3-immunoreactive neurons without CGRP expression was shifted to smaller-diameter neurons. Our results suggest that ASIC3 plays an important role in acute arthritic pain. Specifically, we propose that ASIC3 upregulation along with CGRP and phenotypic change in ASIC3-immunoreactive neurons without CGRP are responsible for the development of secondary hyperalgesia after carrageenan-induced arthritis. PERSPECTIVE: This article shows that ASIC3 is upregulated along with CGRP in knee joint afferents and that there is a phenotypic change in ASIC3-immunoreactive nonpeptidergic neurons in an animal model of acute arthritis. Understanding the basic neurobiology after acute arthritis could lead to future new pharmacological management of arthritis.
机译:关节炎与局部pH降低有关。在酸敏感离子通道(ASIC)中,ASIC3对这种pH变化最敏感,在背根神经节(DRG)中大量表达,对继发性痛觉过敏的发展至关重要。这项研究的目的是使用小鼠的急性关节炎疼痛模型来研究ASIC3的上调。我们通过逆行标记和免疫组织化学检查了在有或没有角叉菜胶诱发的关节炎的神经支配的DRG神经元中的ASIC3表达。我们还检查了ASIC3 + / +和ASIC3-​​/-小鼠之间DRG表型的差异。 ASIC3免疫反应性存在于31%的膝关节传入神经中,主要存在于小细胞中。关节发炎后,ASIC3免疫反应性神经元的数量显着增加了50%。降钙素基因相关肽(CGRP)在ASIC3 + / +和ASIC3-​​/-小鼠中相似地增加。没有CGRP表达的ASIC3免疫反应神经元的胞体大小分布转移到了较小直径的神经元。我们的结果表明,ASIC3在急性关节炎性疼痛中起重要作用。具体来说,我们建议,无CGRP的ASIC3上调以及CGRP和ASIC3免疫反应性神经元的表型变化是造成角叉菜胶诱发的关节炎后继发性痛觉过敏的原因。观点:本文显示,在急性关节炎的动物模型中,ASIC3与CGRP一起在膝关节传入神经中被上调,并且ASIC3免疫反应性非肽能神经元发生表型改变。了解急性关节炎后的基本神经生物学可能会导致将来对关节炎的新药理学治疗。

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