首页> 外文OA文献 >Involvement of TRPM2 in Peripheral Nerve Injury-Induced Infiltration of Peripheral Immune Cells into the Spinal Cord in Mouse Neuropathic Pain Model.
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Involvement of TRPM2 in Peripheral Nerve Injury-Induced Infiltration of Peripheral Immune Cells into the Spinal Cord in Mouse Neuropathic Pain Model.

机译:在小鼠神经性疼痛模型中,TRPM2参与周围神经损伤诱导的周围免疫细胞向脊髓的浸润。

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摘要

Recent evidence suggests that transient receptor potential melastatin 2 (TRPM2) expressed in immune cells plays an important role in immune and inflammatory responses. We recently reported that TRPM2 expressed in macrophages and spinal microglia contributes to the pathogenesis of inflammatory and neuropathic pain aggravating peripheral and central pronociceptive inflammatory responses in mice. To further elucidate the contribution of TRPM2 expressed by peripheral immune cells to neuropathic pain, we examined the development of peripheral nerve injury-induced neuropathic pain and the infiltration of immune cells (particularly macrophages) into the injured nerve and spinal cord by using bone marrow (BM) chimeric mice by crossing wildtype (WT) and TRPM2-knockout (TRPM2-KO) mice. Four types of BM chimeric mice were prepared, in which irradiated WT or TRPM2-KO recipient mice were transplanted with either WT-or TRPM2-KO donor mouse-derived green fluorescence protein-positive (GFP(+)) BM cells (TRPM2(BM+/Rec+), TRPM2(BM-/Rec+), TRPM2(BM+/Rec-), and TRPM2(BM-/Rec-) mice). Mechanical allodynia induced by partial sciatic nerve ligation observed in TRPM2(BM+/Rec+) mice was attenuated in TRPM2(BM-/Rec+), TRPM2(BM+/Rec-), and TRPM2(BM-/Rec-) mice. The numbers of GFP(+) BM-derived cells and Iba1/GFP double-positive macrophages in the injured sciatic nerve did not differ among chimeric mice 14 days after the nerve injury. In the spinal cord, the number of GFP(+) BM-derived cells, particularly GFP/Iba1 double-positive macrophages, was significantly decreased in the three TRPM2-KO chimeric mouse groups compared with TRPM2(BM+/Rec+) mice. However, the numbers of GFP(-)/Iba1(+) resident microglia did not differ among chimeric mice. These results suggest that TRPM2 plays an important role in the infiltration of peripheral immune cells, particularly macrophages, into the spinal cord, rather than the infiltration of peripheral immune cells into the injured nerves and activation of spinal-resident microglia. The spinal infiltration of macrophages mediated by TRPM2 may contribute to the pathogenesis of neuropathic pain.
机译:最近的证据表明,免疫细胞中表达的瞬时受体电位褪黑素2(TRPM2)在免疫和炎症反应中起重要作用。我们最近报道,巨噬细胞和脊髓小胶质细胞中表达的TRPM2有助于炎症和神经性疼痛的发病机理,加重了小鼠的外周和中枢痛感受性炎症反应。为了进一步阐明外周免疫细胞表达的TRPM2对神经性疼痛的作用,我们通过使用骨髓( BM)嵌合小鼠,将野生型(WT)和TRPM2-敲除(TRPM2-KO)小鼠杂交。制备了四种类型的BM嵌合体小鼠,其中将WT或TRPM2-KO供体小鼠来源的绿色荧光蛋白阳性(GFP(+))BM细胞(TRPM2(BM + / Rec +),TRPM2(BM- / Rec +),TRPM2(BM + / Rec-)和TRPM2(BM- / Rec-)小鼠)。在TRPM2(BM- / Rec +),TRPM2(BM + / Rec-)和TRPM2(BM- / Rec-)小鼠中观察到在TRPM2(BM + / Rec +)小鼠中观察到的部分坐骨神经结扎引起的机械异常性疼痛。坐骨神经损伤后14天,在坐骨神经中,GFP(+)BM来源的细胞和Iba1 / GFP双阳性巨噬细胞的数量没有差异。在脊髓中,与TRPM2(BM + / Rec +)小鼠相比,三个TRPM2-KO嵌合小鼠组中GFP(+)BM衍生的细胞,特别是GFP / Iba1双阳性巨噬细胞的数量显着减少。但是,GFP(-)/ Iba1(+)驻留小胶质细胞的数量在嵌合小鼠之间没有差异。这些结果表明,TRPM2在外周免疫细胞特别是巨噬细胞向脊髓的浸润中起着重要的作用,而不是外周免疫细胞向受伤的神经的浸润和脊髓驻留小胶质细胞的活化起着重要的作用。 TRPM2介导的巨噬细胞的脊髓浸润可能有助于神经性疼痛的发病机理。

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