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首页> 外文期刊>Experimental Neurology >Modest enhancement of sensory axon regeneration in the sciatic nerve with conditional co-deletion of PTEN and SOCS3 in the dorsal root ganglia of adult mice
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Modest enhancement of sensory axon regeneration in the sciatic nerve with conditional co-deletion of PTEN and SOCS3 in the dorsal root ganglia of adult mice

机译:在成人小鼠的背根神经细胞中有条件共缺乏PTEN和SOCS3的坐骨神经中的感觉轴突再生的适度增强

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摘要

Axons within the peripheral nervous system are capable of regeneration, but full functional recovery is rare. Recent work has shown that conditional deletion of two key signaling inhibitors of the PI3K and Jak/Stat pathways-phosphatase and tensin homolog (PTEN) and suppressor of cytokine signaling-3 (SOCS3), respectively-promotes regeneration of normally non-regenerative central nervous system axons. Moreover, in studies of optic nerve regeneration, co-deletion of both PTEN and SOCS3 has an even greater effect. Here, we test the hypotheses (1) that PTEN deletion enhances axon regeneration following sciatic nerve crush and (2) that PTEN/SOCS3 co-deletion further promotes regeneration. PTENfl/fl and PTEN/SOCS3(fl/fl) mice received direct injections of AAV-Cre into the fourth and fifth lumbar dorsal root ganglia (DRG) two weeks prior to sciatic nerve crush. Western blot analysis of whole cell lysates from DRG using phospho-specific antibodies revealed that PTEN deletion did not enhance or prolong PI3K signaling following sciatic nerve crush. However, PTEN/SOCS3 co-deletion activated PI3K for at least 7 days post-injury in contrast to controls, where activation peaked at 3 days. Quantification of SCG10-expressing regenerating sensory axons in the sciatic nerve after crush injury revealed longer distance regeneration at 3 days post-injury with both PTEN and PTEN/SOCS3 co-deletion. Additionally, analysis of noxious thermosensation and mechanosensation with PTEN/SOCS3 co-deletion revealed enhanced sensation at 14 and 21 days after crush, respectively, after which all treatment groups reached the same functional plateau. These findings indicate that co-deletion of PTEN and SOCS3 results in modest but measureable enhancement of early regeneration of DRG axons following crush injury.
机译:外周神经系统内的轴突能够再生,但功能恢复全功能恢复是罕见的。最近的工作表明,PI3K和JAK / STAT途径 - 磷酸酶和三素同源物(PTEN)和细胞因子信号传导-3(SOCS3)的抑制剂的条件缺失分别 - 促进了通常非再生中枢神经的再生系统轴突。此外,在研究视神经再生的研究中,PTEN和SOCS3的共缺失具有更大的效果。在这里,我们测试PTEN缺失增强的假设(1)在坐骨神经粉碎后增强轴突再生,并且PTEN / SOCS3共缺失进一步促进再生。 PTENFL / FL和PTEN / SOCS3(FL / FL)小鼠在坐骨神经挤压之前两周接受了直接注射AAV-CRE进入第四和第五腰背根神经节(DRG)。使用磷酸特异性抗体从DRG的全细胞裂解物的Western印迹分析显示,PTEN缺失不增强或延长坐骨神经挤压后的PI3K信号传导。然而,PTEN / SOCS3与对照组相比,PTEN / SOCS3共缺失至少7天损伤后损伤后至少7天,其中激活在3天时达到峰值。在粉碎损伤后坐骨神经中表达SCG10的再生感觉轴突的定量显示,在损伤后3天延长距离再生,PTEN和PTEN / SOCS3共缺失。另外,分别在PTEN / SOCS3共缺失的有毒热呼解和机械化分析,分别在粉碎后14和21天显示出增强的感觉,之后所有治疗组达到相同的功能高原。这些发现表明,PTEN和SOCS3的共同缺失导致挤压损伤后DRG轴突早期再生的适度但可测量的增强。

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