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Lysophosphatidic acid receptor type 2 activation contributes to secondary damage after spinal cord injury in mice

溶血磷脂酸 小胶质细胞 脊髓损伤 髓鞘 少突胶质细胞 脊髓 星形胶质细胞 细胞生物学 中枢神经系统 生物 受体 神经科学 医学 免疫学 炎症 生物化学
作者
Clara López-Serrano,Eva Santos-Nogueira,Isaac Francos-Quijorna,Marina Coll-Miró,Jerold Chun,Rubèn López‐Vales
出处
期刊:Brain Behavior and Immunity [Elsevier BV]
卷期号:76: 258-267 被引量:28
标识
DOI:10.1016/j.bbi.2018.12.007
摘要

Lysophosphatidic acid (LPA) is an extracellular lipid mediator involved in many physiological functions by signaling through six known G-protein-coupled receptors (LPA1-LPA6). In the central nervous system (CNS), LPA mediates a wide range of effects, including neural progenitor cell physiology, astrocyte and microglia activation, neuronal cell death, axonal retraction, and contributions to pain, schizophrenia and hydrocephalus. We recently reported that LPA-LPA1 signaling mediates functional deficits and myelin loss after spinal cord injury (SCI). Here, we provide clear evidence on the deleterious contribution of another LPA receptor, LPA2, to myelin loss after SCI. We found that LPA2 is constitutively expressed in the spinal cord parenchyma and its transcripts were up-regulated after contusion injury, in part, by microglial cells. We also found that the demyelinating lesion triggered by intraspinal injection of LPA into the undamaged spinal cord was markedly reduced in the lack of LPA2. Similarly, LPA2 deficient mice showed enhanced motor skills and myelin sparing after SCI. To gain insights into the detrimental actions of LPA2 in spinal cord we performed cell culture studies. These experiments revealed that, similar to LPA1, activation of microglia LPA2 led to oligodendrocyte cell death. Moreover, we also found that the cytotoxic effects underlaying microglial LPA-LPA2 axis were mediated by the release of purines by microglia and the activation of P2X7 receptor on oligodendrocytes. Overall, this study provides new mechanistic insights into how LPA contributes to SCI physiopathology, and suggest that targeting LPA2 could be a novel therapeutic approach for the treatment of acute SCI.

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