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内皮细胞的包绕启动了禽类原始生殖细胞向血管组织的迁移。

Envelopment by endothelial cells initiates translocation of avian primordial germ cell into vascular tissue.

作者信息

Murai Hidetaka, Shibuya Minami, Kishita Ryohei, Sunase Chihiro, Tamura Koji, Saito Daisuke

机构信息

Frontier Research Institute for Interdisciplinary Sciences (FRIS), Tohoku University, Sendai, Japan.

Department of Developmental Biology and Neurosciences, Graduate School of Life Sciences, Tohoku University, Sendai, Japan.

出版信息

Dev Dyn. 2021 Oct;250(10):1410-1419. doi: 10.1002/dvdy.332. Epub 2021 Mar 25.

Abstract

BACKGROUND

In avian species, primordial germ cells (PGCs) migrate to the gonadal primordium through the vascular system. Because this mode of migration is reminiscent of cancer metastasis, it would be useful to elucidate the mechanisms underlying PGC migration via the bloodstream. Here, we sought to determine when, where, and how PGCs enter the vascular network by double visualization of PGCs and endothelial cells (ECs) in tie1:H2B-eYFP transgenic quails.

RESULTS

In the left and right lateral germinal crescent regions corresponding to the anterior-most area vasculosa, more than 60% of PGCs were enveloped by differentiating ECs forming blood islands prior to vascular network formation. Cell morphology analysis suggested that the PGC-EC interaction was instructed by differentiating ECs. At a later developmental stage, ECs anastomosed to form a vascular network with a lumen that retained PGCs within it. As a consequence, many PGCs localized within the luminal space of the mature vascular network at later stages.

CONCLUSIONS

Our findings demonstrate that the major type of avian PGC translocation into vascular tissue is not a typical intravasation, as performed by types of metastatic cancer cells, but rather a passive translocation (envelopment) mediated by differentiating ECs during early vasculogenesis.

摘要

背景

在鸟类物种中,原始生殖细胞(PGCs)通过血管系统迁移至性腺原基。由于这种迁移方式类似于癌症转移,阐明PGCs通过血流迁移的潜在机制将很有帮助。在此,我们试图通过在tie1:H2B-eYFP转基因鹌鹑中对PGCs和内皮细胞(ECs)进行双重可视化,来确定PGCs何时、何地以及如何进入血管网络。

结果

在对应于最前端血管区的左右外侧生殖新月区域,超过60%的PGCs在血管网络形成之前被分化形成血岛的ECs所包裹。细胞形态分析表明,PGC-EC相互作用是由分化的ECs引导的。在随后的发育阶段,ECs相互吻合形成具有管腔的血管网络,PGCs保留在其中。结果,许多PGCs在后期定位于成熟血管网络的管腔内空间。

结论

我们的研究结果表明,鸟类PGCs转移到血管组织的主要类型并非像某些转移性癌细胞那样的典型内渗,而是在早期血管生成过程中由分化的ECs介导的被动转移(包裹)。

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