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Intracellular phospholipase A2 group IVA and group VIA play important roles in Wallerian degeneration and axon regeneration after peripheral nerve injury

机译:细胞内磷脂酶A2组IVA和VIA组在周围神经损伤后的Wallerian变性和轴突再生中起重要作用

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摘要

We provide evidence that two members of the intracellular phospholipase A2 family, namely calcium-dependent group IVA (cPLA2 GIVA) and calcium-independent group VIA (iPLA2 GVIA) may play important roles in Wallerian degeneration in the mouse sciatic nerve. We assessed the roles of these PLA2s in cPLA2 GIVA−/− mice, and mice treated with a selective inhibitor of iPLA2 GVIA (FKGK11). Additionally, the effects of both these PLA2s were assessed by treating cPLA2 GIVA−/− mice with the iPLA2 inhibitor. Our data suggest that iPLA2 GVIA may play more of a role in the early stages of myelin breakdown, while cPLA2 GIVA may play a greater role in myelin clearance by macrophages. Our results also show that the delayed myelin clearance and Wallerian degeneration after sciatic nerve crush injury in mice lacking cPLA2 and iPLA2 activities is accompanied by a delay in axon regeneration, target re-innervation and functional recovery. These results indicate that the intracellular PLA2s (cPLA2 GIVA and iPLA2 GVIA) contribute significantly to various aspects of Wallerian degeneration in injured peripheral nerves, which is then essential for successful axon regeneration. This work has implications for injury responses and recovery after peripheral nerve injuries in humans, as well as for understanding the slow clearance of myelin after CNS injury and its potential consequences for axon regeneration.
机译:我们提供的证据,细胞内磷脂酶A2家族的两个成员,即钙依赖性IVA组(cPLA2 GIVA)和钙非依赖性VIA组(iPLA2 GVIA)可能在小鼠坐骨神经的Wallerian变性中起重要作用。我们评估了这些PLA2在cPLA2 GIVA-/-小鼠以及用iPLA2 GVIA(FKGK11)选择性抑制剂治疗的小鼠中的作用。另外,通过用iPLA2抑制剂治疗cPLA2 GIVA-/-小鼠评估了这两种PLA2的作用。我们的数据表明,iPLA2 GVIA在髓磷脂分解的早期阶段可能发挥更大的作用,而cPLA2 GIVA在巨噬细胞清除髓鞘的过程中可能发挥更大的作用。我们的研究结果还表明,缺乏cPLA2和iPLA2活性的小鼠坐骨神经挤压伤后,髓鞘清除延迟和Wallerian变性伴有轴突再生,靶标重新神经支配和功能恢复的延迟。这些结果表明,细胞内PLA2(cPLA2 GIVA和iPLA2 GVIA)在受伤的周围神经的沃勒变性的各个方面均起重要作用,这对于成功的轴突再生至关重要。这项工作对人类周围神经损伤后的损伤反应和恢复,以及中枢神经系统损伤后髓磷脂的缓慢清除及其对轴突再生的潜在影响具有重要意义。

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