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人胎盘的显微注射。II:生物学应用。

Microinjection of human placenta. II: Biological application.

作者信息

Gaunt M, Ockleford C D

出版信息

Placenta. 1986 Jul-Aug;7(4):325-31. doi: 10.1016/s0143-4004(86)80150-3.

Abstract

Using microinjection of probes detectable by epifluorescence light microscopy and electron microscopy we have provided direct evidence that syncytiotrophoblast is a true syncytium. We have investigated the freedom of movement of probes injected into the syncytiotrophoblast. These probes appear to move relatively extensively within the cytosolic compartment which forms a 'maze' through the membrane-bounded organelles and reticula of the syncytium. Thus mathematical models of certain forms of transepithelial transport based on simple mean and harmonic mean histologically measured thickness of epithelia are unlikely to describe the transepithelial transport pathway of at least some larger molecules, particulates and organelles with great accuracy. Microinjection of probes directly into the mesenchymal core of chorionic villi has been used to demonstrate extensive freedom of movement in that compartment which is the region where exchange with elements contained in the fetal vascular tree takes place.

摘要

通过使用可通过落射荧光显微镜和电子显微镜检测到的探针进行显微注射,我们提供了直接证据,证明合体滋养层是真正的合体。我们研究了注入合体滋养层的探针的移动自由度。这些探针似乎在细胞质区室中相对广泛地移动,该细胞质区室通过合体的膜结合细胞器和网状结构形成一个“迷宫”。因此,基于组织学测量的上皮简单平均厚度和谐波平均厚度的某些形式的跨上皮运输数学模型,不太可能非常准确地描述至少一些较大分子、颗粒和细胞器的跨上皮运输途径。将探针直接显微注射到绒毛膜绒毛的间充质核心已被用于证明在该区域有广泛的移动自由度,该区域是与胎儿血管树中所含元素进行交换的部位。

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