Shen Joel, Overland Maya, Sinclair Adriane, Cao Mei, Yue Xuan, Cunha Gerald, Baskin Laurence
UCSF Benioff Children's Hospital, Division of Pediatric Urology.
Department of Urology, University of California San Francisco, 400 Parnassus Avenue, Box A610, San Francisco, CA 94143.
Differentiation. 2016 Oct-Nov;92(4):169-182. doi: 10.1016/j.diff.2016.06.003. Epub 2016 Jul 5.
We recently described a two-step process of urethral plate canalization and urethral fold fusion to form the human penile urethra. Canalization ("opening zipper") opens the solid urethral plate into a groove, and fusion ("closing zipper") closes the urethral groove to form the penile urethra. We hypothesize that failure of canalization and/or fusion during human urethral formation can lead to hypospadias. Herein, we use scanning electron microscopy (SEM) and analysis of transverse serial sections to better characterize development of the human fetal penile urethra as contrasted to the development of the human fetal clitoris. Eighteen 7-13 week human fetal external genitalia specimens were analyzed by SEM, and fifteen additional human fetal specimens were sectioned for histologic analysis. SEM images demonstrate canalization of the urethral/vestibular plate in the developing male and female external genitalia, respectively, followed by proximal to distal fusion of the urethral folds in males only. The fusion process during penile development occurs sequentially in multiple layers and through the interlacing of epidermal "cords". Complex epithelial organization is also noted at the site of active canalization. The demarcation between the epidermis of the shaft and the glans becomes distinct during development, and the epithelial tag at the distal tip of the penile and clitoral glans regresses as development progresses. In summary, SEM analysis of human fetal specimens supports the two-zipper hypothesis of formation of the penile urethra. The opening zipper progresses from proximal to distal along the shaft of the penis and clitoris into the glans in identical fashion in both sexes. The closing zipper mechanism is active only in males and is not a single process but rather a series of layered fusion events, uniquely different from the simple fusion of two epithelial surfaces as occurs in formation of the palate and neural tube.
我们最近描述了一个两步过程,即尿道板管化和尿道褶融合以形成人类阴茎尿道。管化(“拉开拉链”)将坚实的尿道板打开形成一条沟,而融合(“拉上拉链”)则闭合尿道沟以形成阴茎尿道。我们推测,人类尿道形成过程中管化和/或融合失败可导致尿道下裂。在此,我们使用扫描电子显微镜(SEM)和横向连续切片分析,以更好地描述人类胎儿阴茎尿道的发育情况,并与人类胎儿阴蒂的发育进行对比。对18个7 - 13周的人类胎儿外生殖器标本进行了SEM分析,另外15个人类胎儿标本进行了切片以进行组织学分析。SEM图像显示,在发育中的男性和女性外生殖器中,尿道/前庭板分别发生管化,随后仅在男性中尿道褶从近端向远端融合。阴茎发育过程中的融合过程依次在多层中发生,并通过表皮“索”的交织进行。在活跃管化部位还观察到复杂的上皮组织。在发育过程中,阴茎体部和龟头的表皮分界变得明显,并且随着发育进展,阴茎和阴蒂龟头远端尖端的上皮标签会退化。总之,对人类胎儿标本的SEM分析支持了阴茎尿道形成的双拉链假说。拉开拉链的过程在两性中均以相同方式从阴茎和阴蒂体部的近端向远端延伸至龟头。拉上拉链的机制仅在男性中活跃,并且不是一个单一过程,而是一系列分层的融合事件,与腭和神经管形成过程中两个上皮表面的简单融合截然不同。