Polar Infection of Echovirus-30 Causes Differential Barrier Affection and Gene Regulation at the Blood–Cerebrospinal Fluid Barrier release_p5les5wbxjgk5dv44ryfywaq2q

by Marie Wiatr, Ricardo Mamede Figueiredo, Carolin Stump-Guthier, Peter Winter, Hiroshi Ishikawa, Ortwin Adams, Christian Schwerk, Horst Schroten, Henriette Rudolph, Tobias Tenenbaum

Published in International Journal of Molecular Sciences by MDPI AG.

2020   Volume 21, Issue 17, p6268

Abstract

Echovirus-30 (E-30) is responsible for the extensive global outbreaks of meningitis in children. To gain access to the central nervous system, E-30 first has to cross the epithelial blood–cerebrospinal fluid barrier. Several meningitis causing bacteria preferentially infect human choroid plexus papilloma (HIBCPP) cells in a polar fashion from the basolateral cell side. Here, we investigated the polar infection of HIBCPP cells with E-30. Both apical and basolateral infections caused a significant decrease in the transepithelial electrical resistance of HIBCPP cells. However, to reach the same impact on the barrier properties, the multiplicity of infection of the apical side had to be higher than that of the basolateral infection. Furthermore, the number of infected cells at respective time-points after basolateral infection was significantly higher compared to apical infection. Cytotoxic effects of E-30 on HIBCPP cells during basolateral infection were observed following prolonged infection and appeared more drastically compared to the apical infection. Gene expression profiles determined by massive analysis of cDNA ends revealed distinct regulation of specific genes depending on the side of HIBCPP cells' infection. Altogether, our data highlights the polar effects of E-30 infection in a human in vitro model of the blood–cerebrospinal fluid barrier leading to central nervous system inflammation.
In application/xml+jats format

Archived Files and Locations

application/pdf   5.1 MB
file_vfnsqw63kbdgbhzsj3h63zpfnq
res.mdpi.com (publisher)
web.archive.org (webarchive)

Web Captures

https://www.mdpi.com/1422-0067/21/17/6268/htm
2022-07-18 16:43:04 | 56 resources
webcapture_lcnspels4nbnhaqmubijdk27cm
web.archive.org (webarchive)
Read Archived PDF
Preserved and Accessible
Type  article-journal
Stage   published
Date   2020-08-29
Language   en ?
Journal Metadata
Open Access Publication
In DOAJ
In ISSN ROAD
In Keepers Registry
ISSN-L:  1422-0067
Work Entity
access all versions, variants, and formats of this works (eg, pre-prints)
Catalog Record
Revision: ff43458e-cde2-49e2-af5a-0b3c62a58e80
API URL: JSON