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Sonic Hedgehog Is Neuroprotective in the Cavernous Nerve with Crush Injury

机译:声波刺猬对挤压伤的海绵状神经具有神经保护作用

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Introduction. The cavernous nerve (CN) is commonly injured during prostatectomy, resulting in erectile dysfunction (ED). Although peripheral nerves have a limited ability to regenerate, a return of function typically does not occur due to irreversible down stream morphological changes in the penis that result from CN injury. We have shown in previous studies that sonic hedgehog (SHH) is critical for CN regeneration and improves erectile function after crush injury. Aims. Examine a new direction, to determine if SHH is neuroprotective to the pelvic ganglia (PG)/CN after crush injury. A secondary focus is to examine if SHH signaling decreases with age in the PG/CN. Methods. Sprague-Dawley rats underwent bilateral CN crush and SHH and glial fibrillary acidic protein were quantified by western analysis of the PG/CN (N=6 rats at each time point) at 1, 2, 4, 7, and 14days, and the apoptotic index was measured in the penis. SHH was quantified by western in the PG/CN with blockade of anterograde transport (N=4 rats) in comparison to mouse IgG (N=4 rats). If SHH is neuroprotective was examined at 4 (N=14 rats) and 7days (N=16 rats) of treatment after CN crush. SHH protein was quantified in aging (P200-300, N=5 rats) PG/CN in comparison to normal adult (P115-120, N=3 rats) PG/CN. Main Outcome Measures. SHH pathway was examined in PG via immunohistochemistry, in situ, western, and terminal deoxynucleotidyl transferase dUTP nick end labeling (TUNEL). Results. SHH is neuroprotective in the PG/CN with injury. SHH localization in the PG/CN suggests SHH interaction in neuronal/glial signaling. SHH protein is significantly decreased in the PG/CN after crush injury and in the aged PG/CN. Signals from the PG are required to maintain SHH in the CN. Conclusions. There is a window of opportunity immediately after nerve insult in which manipulation of SHH signaling in the nerve microenvironment can affect long-term regeneration outcome.
机译:介绍。前列腺切除术通常会损伤海绵状神经(CN),从而导致勃起功能障碍(ED)。尽管周围神经的再生能力有限,但由于CN损伤导致阴茎不可逆的下游形态变化,通常不会发生功能恢复。我们在先前的研究中表明,声波刺猬(SHH)对于CN再生至关重要,并可以改善挤压伤后的勃起功能。目的检查一个新的方向,以确定在挤压伤后SHH是否对骨盆神经节(PG)/ CN具有神经保护作用。第二个重点是检查SHH信号在PG / CN中是否随着年龄的增长而减少。方法。 Sprague-Dawley大鼠在1、2、4、7和14天通过PG / CN的Western分析(每个时间点N = 6只大鼠)定量分析了双侧CN压迫和SHH和神经胶质纤维酸性蛋白。在阴茎中测量指数。与小鼠IgG(N = 4只大鼠)相比,SHH通过PG / CN中的Western定量分析,阻断了顺行转运(N = 4只大鼠)。在CN压迫后第4天(N = 14只大鼠)和7天(N = 16只大鼠)检查SHH是否具有神经保护作用。与正常成年(P115-120,N = 3只大鼠)PG / CN相比,SHH蛋白在衰老(P200-300,N = 5只大鼠)PG / CN中定量。主要观察指标。通过免疫组化,原位,蛋白质和末端脱氧核苷酸转移酶dUTP缺口末端标记(TUNEL)在PG中检查了SHH途径。结果。 SHH在PG / CN中具有损伤性神经保护作用。 PG / CN中的SHH定位提示神经元/神经胶质信号传导中的SHH相互作用。挤压伤后PG / CN和衰老的PG / CN中SHH蛋白显着降低。从PG发出的信号需要在CN中保持SHH。结论。神经损伤后有一个机会之窗,其中在神经微环境中操纵SHH信号会影响长期再生结果。

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