首页> 外文期刊>European urology >Recruitment of intracavernously injected adipose-derived stem cells to the major pelvic ganglion improves erectile function in a rat model of cavernous nerve injury
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Recruitment of intracavernously injected adipose-derived stem cells to the major pelvic ganglion improves erectile function in a rat model of cavernous nerve injury

机译:海绵体内注射脂肪来源干细胞招募至主要骨盆神经节可改善大鼠海绵状神经损伤模型的勃起功能

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Background: Intracavernous (IC) injection of stem cells has been shown to ameliorate cavernous-nerve (CN) injury-induced erectile dysfunction (ED). However, the mechanisms of action of adipose-derived stem cells (ADSC) remain unclear. Objectives: To investigate the mechanism of action and fate of IC injected ADSC in a rat model of CN crush injury. Design, setting, and participants: Sprague-Dawley rats (n = 110) were randomly divided into five groups. Thirty-five rats underwent sham surgery and IC injection of ADSC (n = 25) or vehicle (n = 10). Another 75 rats underwent bilateral CN crush injury and were treated with vehicle or ADSC injected either IC or in the dorsal penile perineural space. At 1, 3, 7 (n = 5), and 28 d (n = 10) postsurgery, penile tissues and major pelvic ganglia (MPG) were harvested for histology. ADSC were labeled with 5-ethynyl-2-deoxyuridine (EdU) before treatment. Rats in the 28-d groups were examined for erectile function prior to tissue harvest. Measurements: IC pressure recording on CN electrostimulation, immunohistochemistry of the penis and the MPG, and number of EdU-positive (EdU+) cells in the injection site and the MPG. Results and limitations: IC, but not perineural, injection of ADSC resulted in significantly improved erectile function. Significantly more EdU+ ADSC appeared in the MPG of animals with CN injury and IC injection of ADSC compared with those injected perineurally and those in the sham group. One day after crush injury, stromal cell-derived factor-1 (SDF-1) was upregulated in the MPG, providing an incentive for ADSC recruitment toward the MPG. Neuroregeneration was observed in the group that underwent IC injection of ADSC, and IC ADSC treatment had beneficial effects on the smooth muscle/collagen ratio in the corpus cavernosum. Conclusions: CN injury upregulates SDF-1 expression in the MPG and thereby attracts intracavernously injected ADSC. At the MPG, ADSC exert neuroregenerative effects on the cell bodies of injured nerves, resulting in enhanced erectile response.
机译:背景:海绵内注射干细胞已被证明可改善海绵状神经损伤引起的勃起功能障碍。但是,脂肪干细胞(ADSC)的作用机制仍不清楚。目的:探讨IC注射的ADSC在CN挤压伤大鼠模型中的作用机制和命运。设计,环境和参与者:Sprague-Dawley大鼠(n = 110)随机分为五组。 35只大鼠接受了假手术和ICSC注射ADSC(n = 25)或载体(n = 10)。另外75只大鼠遭受双侧CN挤压伤,并用媒介物或ADSC注射IC或在阴茎背神经周围间隙中治疗。在术后1、3、7(n = 5)和28 d(n = 10)时,收集阴茎组织和主要骨盆神经节(MPG)进行组织学检查。治疗前用5-乙炔基-2-脱氧尿苷(EdU)标记ADSC。在收集组织之前,对28天组的大鼠进行勃起功能检查。测量:CN电刺激的IC压力记录,阴茎和MPG的免疫组织化学,以及注射部位和MPG中EdU阳性(EdU +)细胞的数量。结果与局限性:IC注射但不经神经周注射ADSC导致勃起功能明显改善。与经神经鞘内注射和假手术组相比,CN损伤和IC注射ADSC的动物的MPG中出现的EdU + ADSC明显更多。挤压伤后一天,MPG中的基质细胞衍生因子1(SDF-1)上调,这为ADSC募集MPG提供了诱因。在接受ICSC注射ADSC的组中观察到神经再生,并且IC ADSC治疗对海绵体中平滑肌/胶原比例具有有益作用。结论:CN损伤可上调MPG中SDF-1的表达,从而吸引海绵体内注射的ADSC。在MPG,ADSC对受伤的神经细胞体产生神经再生作用,从而导致勃起反应增强。

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