May F, Weidner N, Matiasek K, Vroemen M, Mrva T, Caspers C, Henke J, Brill T, Lehmer A, Blesch A, Erhardt W, Gänsbacher B, Hartung R
Urologische Universitätsklinik und Poliklinik, Technische Universität München.
Urologe A. 2004 Oct;43(10):1242-8. doi: 10.1007/s00120-004-0692-5.
Dissection of the cavernous nerves eliminates spontaneous erections and may lead to irreversible erectile dysfunction due to degeneration of cavernous tissue. Novel procedures to reconstruct penile innervation include cavernous nerve interposition grafting and neurotrophic treatments to revitalize penile neural input, evaluated thus far in various preclinical models of cavernous nerve injury. Schwann cells crucially contribute to successful axonal regeneration by mechanical and paracrine mechanisms in the injured nerve, and Schwann cells seeded into guidance channels have been successfully employed to support regeneration in animal models of cavernous nerve injury. Gene therapy, tissue engineering, and reconstructive techniques have been combined to deliver neurotrophic factors and recover erectile function.
海绵体神经离断会消除自发性勃起,并可能因海绵体组织退变导致不可逆的勃起功能障碍。重建阴茎神经支配的新方法包括海绵体神经移植和神经营养治疗以恢复阴茎神经输入,目前已在多种海绵体神经损伤的临床前模型中进行了评估。雪旺细胞通过损伤神经中的机械和旁分泌机制对轴突的成功再生起着关键作用,并且接种到引导通道中的雪旺细胞已成功用于支持海绵体神经损伤动物模型中的再生。基因治疗、组织工程和重建技术已结合起来以递送神经营养因子并恢复勃起功能。