Vizza E, Correr S, Goranova V, Heyn R, Angelucci P A, Forleo R, Motta P M
Department of Anatomy, Faculty of Medicine, University of Rome La Sapienza, Italy.
Reprod Fertil Dev. 1996;8(5):885-94. doi: 10.1071/rd9960885.
The organization of the collagen fibrils in the human umbilical cord at term is directly visualized by means of a scanning electron microscopy cell maceration method. This technique clearly reveals that there is a much more extensive collagen fibrillar architecture within the umbilical cord than that reported in the classical histological descriptions. The Wharton's jelly, in fact, appears as a spongy network of interlacing collagen fibres and small woven bundles apparently arranged at random and forming a continuous soft skeleton that encases the umbilical vessels. The collagen fibrillar network shows the presence of a wide system of interconnected cavities consisting of canalicular-like structures as well as cavernous and perivascular spaces. This system of cavities might play a mechanical role allowing the storing of the ground substance of the jelly and its diffusion during twisting or compression. Furthermore, it may have an important role facilitating the diffusion throughout the jelly of diffused materials (i.e. water and trophic metabolites) either from or to the umbilical vessels and the amniotic cavity, thus overcoming the lace of a proper vasculature with the jelly.
通过扫描电子显微镜细胞浸渍法可以直接观察足月时人脐带中胶原纤维的组织结构。这项技术清楚地表明,脐带内的胶原纤维结构比经典组织学描述中所报道的要广泛得多。事实上,华通胶呈现为一个由交错的胶原纤维和小编织束组成的海绵状网络,这些纤维和束显然随机排列,形成一个连续的软骨架,包裹着脐血管。胶原纤维网络显示存在一个由管状结构以及海绵状和血管周围间隙组成的广泛的相互连接的腔系统。这个腔系统可能起到机械作用,允许储存胶状物的基质并在扭转或压缩过程中使其扩散。此外,它可能在促进扩散物质(即水和营养代谢物)在整个胶状物中从脐血管或向脐血管以及羊膜腔扩散方面发挥重要作用,从而克服了胶状物缺乏适当血管系统的问题。