首页> 美国卫生研究院文献>The Journal of Neuroscience >Truncated TrkB.T1-Mediated Astrocyte Dysfunction Contributes to Impaired Motor Function and Neuropathic Pain after Spinal Cord Injury
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Truncated TrkB.T1-Mediated Astrocyte Dysfunction Contributes to Impaired Motor Function and Neuropathic Pain after Spinal Cord Injury

机译:截断的TrkB.T1介导的星形胶质细胞功能障碍导致脊髓损伤后运动功能受损和神经性疼痛。

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摘要

Following spinal cord injury (SCI), astrocytes demonstrate long-lasting reactive changes, which are associated with the persistence of neuropathic pain and motor dysfunction. We previously demonstrated that upregulation of trkB.T1, a truncated isoform of the brain-derived neurotrophic factor receptor (BDNF), contributes to gliosis after SCI, but little is known about the effects of trkB.T1 on the function of astrocytes. As trkB.T1 is the sole isoform of trkB receptors expressed on astrocytes, we examined the function of trkB.T1-driven astrocytes in vitro and in vivo. Immunohistochemistry showed that trkB.T1+ cells were significantly upregulated 7 d after injury, with sustained elevation in white matter through 8 weeks. The latter increase was predominantly found in astrocytes. TrkB.T1 was also highly expressed by neurons and microglia/macrophages at 7 d after injury and declined by 8 weeks. RNA sequencing of cultured astrocytes derived from trkB.T1+/+ (WT) and trkB.T1−/− (KO) mice revealed downregulation of migration and proliferation pathways in KO astrocytes. KO astrocytes also exhibited slower migration/proliferation in vitro in response to FBS or BDNF compared with WT astrocytes. Reduced proliferation of astrocytes was also confirmed after SCI in astrocyte-specific trkB.T1 KO mice; using mechanical allodynia and pain-related measurements on the CatWalk, these animals also showed reduced hyperpathic responses, along with improved motor coordination. Together, our data indicate that trkB.T1 in astrocytes contributes to neuropathic pain and neurological dysfunction following SCI, suggesting that trkB.T1 may provide a novel therapeutic target for SCI.>SIGNIFICANCE STATEMENT Neuropathic pain after spinal cord injury (SCI) may in part be caused by upregulation of the brain-derived neurotrophic factor (BDNF) receptor trkB.T1, a truncated isoform of BDNF. TrkB.T1 is the only isoform of tropomyosin-related receptor kinase type B (trkB) receptors expressed on astrocytes. Here, we showed that trkB.T1 is significantly increased in the injured mouse spinal cord, where it is predominantly found in astrocytes. RNA sequencing of cultured astrocytes demonstrated downregulation of migration and proliferation pathways in trkB.T1 KO astrocytes. This was validated in vivo, where deletion of trkB.T1 in astrocytes reduced cell proliferation and migration. After SCI, astrocyte-specific trkB.T1 KO mice showed reduced hyperpathic responses and improved motor coordination. Therefore, the trkB.T1 receptor plays a significant pathophysiological role after SCI, and may provide a novel therapeutic target for SCI.
机译:脊髓损伤(SCI)后,星形胶质细胞显示出持久的反应性变化,这与神经性疼痛和运动功能障碍的持续存在有关。我们以前证明过,trkB.T1(一种脑源性神经营养因子受体(BDNF)的截短的同种型)的上调会导致SCI后神经胶质细胞增生,但对trkB.T1对星形胶质细胞功能的影响知之甚少。由于trkB.T1是星形胶质细胞上表达的trkB受体的唯一同工型,因此我们在体外和体内检查了trkB.T1驱动的星形胶质细胞的功能。免疫组织化学显示,损伤后7 d,trkB.T1 + 细胞显着上调,白质持续升高至8周。后者的增加主要在星形胶质细胞中发现。 TrkB.T1在损伤后第7天也由神经元和小胶质细胞/巨噬细胞高表达,并在8周后下降。来自trkB.T1 + / + (WT)和trkB.T1 -/-(KO)小鼠的星形胶质细胞的RNA测序揭示了KO中迁移和增殖途径的下调星形胶质细胞。与野生型星形胶质细胞相比,KO星形胶质细胞在体外对FBS或BDNF的反应也较慢。在星形胶质细胞特异性的trkB.T1 KO小鼠中,SCI后也证实了星形胶质细胞增殖的减少。在CatWalk上使用机械性异常性疼痛和与疼痛有关的测量结果,这些动物还显示出减少的高反应性反应以及改善的运动协调性。在一起,我们的数据表明星形胶质细胞中的trkB.T1导致SCI后的神经性疼痛和神经功能障碍,这表明trkB.T1可能为SCI提供了新的治疗靶点。>意义声明脊髓损伤后的神经性疼痛(SCI)可能部分是由于脑源性神经营养因子(BDNF)受体trkB.T1(BDNF的截短亚型)的上调引起的。 TrkB.T1是星形胶质细胞上表达的原肌球蛋白相关的受体激酶B型(trkB)受体的唯一同工型。在这里,我们显示出trkB.T1在受伤的小鼠脊髓中显着增加,而在星形胶质细胞中则最常见。培养的星形胶质细胞的RNA测序证明trkB.T1 KO星形胶质细胞中迁移和增殖途径的下调。这在体内得到证实,其中星形胶质细胞中trkB.T1的缺失减少了细胞的增殖和迁移。 SCI后,星形胶质细胞特异的trkB.T1 KO小鼠表现出减少的高病理反应和改善的运动协调性。因此,trkB.T1受体在脊髓损伤后起重要的病理生理作用,并可能为脊髓损伤提供新的治疗靶点。

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