大鼠阴茎感觉通路端侧背根神经吻合修复。

The Journal of Spinal Cord Medicine Pub Date : 2022-03-01 Epub Date: 2020-06-16 DOI:10.1080/10790268.2020.1778353
Hao Zhang, Shuaishuai Chai, Qiufeng Pan, Bing Li
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引用次数: 0

摘要

目的:脊髓损伤常导致阴茎感觉丧失,严重影响个体性功能。本研究旨在通过大鼠阴茎端侧背根(DR)神经移植修复阴茎感觉通路,并初步验证该手术的可行性。设计:40只雄性成年Sprague-Dawley大鼠分为三组。模型组(n = 20)和切除组(n = 10)分别横切右侧L6 DR、S1 DR和阴茎背神经对侧支(DNP)。然后将模型组L6 DR远端残端与完整的L4 DR吻合。假手术组(n = 10)不受神经损伤。4个月后,行逆行和跨节神经标记、形态学检查、免疫荧光(IF)和超微结构观察,检测传入通路的重建情况。通过检测DNP刺激引起的海绵内压力来评估反射性勃起(RE)。结果:神经标记试验显示重建的阴茎传入通路完整。形态学、IF、超微结构观察显示,模型组L6轴突再生明显优于切除组;然而,它还没有达到假手术组的水平。假手术组大鼠DNP刺激后出现典型的RE,而模型组和切除组均为阴性。结论:我们的研究证明了端侧DR神经移植修复大鼠阴茎感觉通路的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Restoration of the penile sensory pathway through end-to-side dorsal root neurorrhaphy in rats.

Restoration of the penile sensory pathway through end-to-side dorsal root neurorrhaphy in rats.
Objective: Spinal cord injury often leads to the loss of penile sensation, and severely affects the individual’s sexual function. The present study aimed to restore the penile sensory pathway through end-to-side dorsal root (DR) transfer neurorrhaphy in rats, and preliminarily verified the feasibility of the operation. Design: 40 male adult Sprague–Dawley rats were divided into three groups. In the model (n = 20) and resection (n = 10) groups, the right L6 DR, S1 DR, and the contralateral branch of the dorsal nerve of the penis (DNP) were transected. The distal stump of L6 DR in the model group was then anastomosed to the intact L4 DR. The sham group (n = 10) was not subjected to neural damage. Four months later, retrograde and transganglionic neural labeling, morphological examination, immunofluorescence (IF), and ultrastructural observation were carried out to test the reconstruction of the afferent pathway. Reflective erection (RE) was assessed by detecting the intracavernous pressure elicited by DNP stimulation. Results: The neural labeling tests indicated the integrity of the entire rebuilt penile afferent pathway. The morphological studies, IF, and ultrastructural observation showed that the regeneration of L6 axons in the model group was significantly better than that in the resection group; however, it had not reached the level of the sham group. The sham group rats exhibited typical RE following DNP stimulation, while the model and resection groups produced negative results. Conclusion: Our studies demonstrated the feasibility of end-to-side DR transfer neurorrhaphy for restoring the penile sensory pathway in rats.
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