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Measles Virus-Induced Block of Transendothelial Migration of T Lymphocytes and Infection-Mediated Virus Spread across Endothelial Cell Barriers▿

机译:麻疹病毒诱导的T淋巴细胞跨内皮迁移阻滞和感染介导的病毒跨内皮细胞屏障传播▿

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摘要

In order to analyze whether measles virus (MV) is transported via transmigrating leukocytes across endothelial barriers or whether virus spreads via infection of endothelial cells and basolateral release, we investigated the migratory behavior of infected human primary T lymphocytes across polarized cell layers of human brain microvascular endothelial cells. We found that the capacity of lymphocytes to migrate through filter pores was only slightly affected by wild-type MV infection, whereas their capacity to migrate through endothelial barriers was drastically reduced. MV infection stimulated the expression and activation of the leukocyte integrins LFA-1 and VLA-4, mediating a strong adherence to the surface of endothelial cells. Furthermore, the formation of engulfing membrane protrusions by endothelial cells, so-called transmigratory cups, was induced, but transmigration was impaired. As a consequence of this close cell-cell contact, MV infection was transmitted from lymphocytes to the endothelium. MV envelope proteins were expressed on the apical and basolateral surfaces of infected polarized endothelial cells, and virus was released from both sides. Wild-type MV infection did not induce the formation of syncytia, suggesting virus spread from cell to cell via cell processes and contacts. Our data indicate that transendothelial migration of infected T cells is strongly inhibited, whereas virus can cross endothelial barriers by productive infection of the endothelium and subsequent bipolar virus release.
机译:为了分析麻疹病毒(MV)是通过跨白细胞的转运白细胞转运还是通过感染内皮细胞和基底外侧释放而传播,我们调查了感染的人原代T淋巴细胞在人脑微血管极化细胞层的迁移行为内皮细胞。我们发现,淋巴细胞通过滤膜孔迁移的能力仅受到野生型MV感染的轻微影响,而其通过内皮屏障迁移的能力却大大降低。 MV感染刺激白细胞整合素LFA-1和VLA-4的表达和活化,介导对内皮细胞表面的强粘附。此外,诱导了内皮细胞吞噬膜突起的形成,即所谓的转移杯,但损害了转移。由于这种紧密的细胞-细胞接触,MV感染从淋巴细胞传播到内皮。 MV包膜蛋白在感染的极化内皮细胞的顶表面和基底外侧表面表达,病毒从两侧释放。野生型MV感染未诱导合胞体形成,表明病毒通过细胞过程和接触在细胞之间传播。我们的数据表明,感染的T细胞的跨内皮迁移受到了强烈抑制,而病毒可以通过生产性感染内皮和随后的双极性病毒释放而越过内皮屏障。

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