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首页> 外文期刊>The FASEB Journal >Conditional Lpar1 gene targeting identifies cell types mediating neuropathic pain
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Conditional Lpar1 gene targeting identifies cell types mediating neuropathic pain

机译:条件<斜视> LPAR1 基因靶向鉴定介导神经病疼痛的细胞类型

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摘要

LPA _(1) is one of six known receptors (LPA _(1‐6)) for lysophosphatidic acid (LPA). Constitutive Lpar1 null mutant mice have been instrumental in identifying roles for LPA‐LPA _(1) signaling in neurobiological processes, brain development, and behavior, as well as modeling human neurological diseases like neuropathic pain. Constitutive Lpar1 null mutant mice are protected from partial sciatic nerve ligation (PSNL)‐induced neuropathic pain, however, the cell types that are functionally responsible for mediating this protective effect are unknown. Here, we report the generation of an Lpar1 ~(flox/flox) conditional null mutant mouse that allows for cre‐mediated conditional deletion, combined with a PSNL pain model. Lpar1 ~(flox/flox) mice were crossed with cre transgenic lines driven by neural gene promoters for nestin (all neural cells), synapsin (neurons), or P0 (Schwann cells). CD11b ‐ cre transgenic mice were also used to delete Lpar1 in microglia. PSNL‐initiated pain responses were reduced following cre‐mediated Lpar1 deletion with all three neural promoters as well as the CD11b promoter, supporting involvement of Schwann cells, central and/or peripheral neurons, and microglia in mediating pain. Interestingly, rescue responses were nonidentical, implicating distinct roles for Lpar1 ‐expressing cell types. Our results with a new Lpar1 conditional mouse mutant expand an understanding of LPA _(1) signaling in the PSNL model of neuropathic pain.
机译:LPA _(1)是六磷脂酸(LPA)的六种已知的受体(LPA _(1-6))中的一种。组成型LPAR1无突变突变小鼠一直在鉴定神经生物学过程中LPA-LPA _(1)信号传导,脑发育和行为中的发信号,以及造型人类神经疾病,如神经性疼痛。构成型LPAR1无突变突变小鼠免受部分坐骨神经连接(PSN1) - 诱导的神经性疼痛,然而,功能载于介导这种保护效果的细胞类型是未知的。在这里,我们报告了允许CRE介导的条件缺失的LPAR1〜(FLOX / FLOX)条件突变突变小鼠的产生,与PSNL疼痛模型相结合。 LPAR1〜(FLOX / FLOX)小鼠与由Nestin(全神经细胞),Synapsin(神经元)或P0(Schwann细胞)驱动的CRE转基因株式会团。 CD11b - CRE转基因小鼠也用于删除MICRIGLIA中的LPAR1。通过所有三种神经启动子以及CD11B启动子以及CD11b启动子,支持施甘细胞,中枢和/或外周神经元的涉及,介于介导疼痛的疼痛,PSN1-介导的LPAR1缺失。有趣的是,救援反应是非识别的,对LPAR1 -Expressing细胞类型表示不同的作用。我们的结果具有新的LPAR1条件鼠标突变体扩大了对神经病疼痛的PSNL模型中LPA _(1)信号传导的理解。

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