Hemangioblastic foci in human first trimester placenta: distribution and gestational profile

Aplin, JD, Whittaker, H, Swietlik, S, Charnock, Jayne and Jones, C J (2015) Hemangioblastic foci in human first trimester placenta: distribution and gestational profile. Placenta, 36 (10). pp. 1069-1077. ISSN 0143-4004 DOI https://doi.org/10.1016/j.placenta.2015.08.005

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Abstract

INTRODUCTION: The human placenta is a site of both hematopoiesis and vasculogenesis. There are reports of hemangioblastic foci (HAF) in the first trimester placenta, but little published information about their spatiotemporal incidence. METHODS: We have used semi-thin sections and whole mount staining techniques on archival early pregnancy hysterectomy material as well as freshly-collected termination tissue. RESULTS: We report a description of the distribution of HAF, their gestational profile, and some characteristics of the constituent cells. We show crypt-shaped HAF are present in villi at different levels from 4 to 11 weeks and in the chorionic plate from 4 to 9 weeks. In the villous placenta, the foci often approach closely at one end to the trophoblast basement membrane. Morphologically they show remarkable similarity to those found in the yolk sac at similar stages. In some crypts, all cells are CD34+, but CD34 and nestin progressively segregate into the endothelial lineage. Brachyury is present in less differentiated cells. The erythroid lineage is dominant, as shown by the widespread expression of CD235a/glycophorin and characteristic erythroid morphologies, indicating various degrees of differentiation. However, CD41 is also present in non-endothelial cells. Initially a discontinuous UEA-1/CD31-positive endothelium forms at the periphery of the foci. These cells appear to become integrated into the developing vasculogenic/angiogenic vessel network. We also demonstrate that, independent of HAF, vasculogenesis occurs near the tips of growing villi during the first trimester. DISCUSSION: We suggest HAF interface with the developing vascular network, producing communication channels that allow erythrocytes to enter the placental-embryonic circulation. We speculate that the erythroid cells act as oxygen reservoirs during the period before flow of maternal blood through the intervillous space of the placenta, allowing a slow feed of oxygen-rich cells to the developing embryo.

Item Type: Article
Subjects: Q Science > QH Natural history > QH301 Biology
Divisions: Biology
Date Deposited: 08 Sep 2017 10:31
URI: http://repository.edgehill.ac.uk/id/eprint/9504

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