Volatile anesthetics influence blood-brain barrier integrity by modulation of tight junction protein expression in traumatic brain injury


Autoria(s): Thal, Serge C.; Luh, Clara; Schaible, Eva-Verena; Timaru-Kast, Ralph; Hedrich, Jana; Luhmann, Heiko J.; Engelhard, Kristin; Zehendner, Christoph M.
Data(s)

2012

Resumo

Disruption of the blood-brain barrier (BBB) results in cerebral edema formation, which is a major cause for high mortalityrnafter traumatic brain injury (TBI). As anesthetic care is mandatory in patients suffering from severe TBI it may be importantrnto elucidate the effect of different anesthetics on cerebral edema formation. Tight junction proteins (TJ) such as zonularnoccludens-1 (ZO-1) and claudin-5 (cl5) play a central role for BBB stability. First, the influence of the volatile anestheticsrnsevoflurane and isoflurane on in-vitro BBB integrity was investigated by quantification of the electrical resistance (TEER) inrnmurine brain endothelial monolayers and neurovascular co-cultures of the BBB. Secondly brain edema and TJ expression ofrnZO-1 and cl5 were measured in-vivo after exposure towards volatile anesthetics in native mice and after controlled corticalrnimpact (CCI). In in-vitro endothelial monocultures, both anesthetics significantly reduced TEER within 24 hours afterrnexposure. In BBB co-cultures mimicking the neurovascular unit (NVU) volatile anesthetics had no impact on TEER. In healthyrnmice, anesthesia did not influence brain water content and TJ expression, while 24 hours after CCI brain water contentrnincreased significantly stronger with isoflurane compared to sevoflurane. In line with the brain edema data, ZO-1 expressionrnwas significantly higher in sevoflurane compared to isoflurane exposed CCI animals. Immunohistochemical analysesrnrevealed disruption of ZO-1 at the cerebrovascular level, while cl5 was less affected in the pericontusional area. The studyrndemonstrates that anesthetics influence brain edema formation after experimental TBI. This effect may be attributed tornmodulation of BBB permeability by differential TJ protein expression. Therefore, selection of anesthetics may influence thernbarrier function and introduce a strong bias in experimental research on pathophysiology of BBB dysfunction. Futurernresearch is required to investigate adverse or beneficial effects of volatile anesthetics on patients at risk for cerebral edema.

Formato

application/pdf

Identificador

urn:nbn:de:hebis:77-33080

http://ubm.opus.hbz-nrw.de/volltexte/2013/3308/

Idioma(s)

eng

Publicador

04: Medizin. 04: Medizin

Direitos

http://ubm.opus.hbz-nrw.de/doku/urheberrecht.php

Fonte

PLoS ONE 2012, Bd. 7(12), S. e50752. doi:10.1371/journal.pone.0050752

Palavras-Chave #Volatile Anesthetics, Tight Junction Proteins, Blood-Brain Barrier, Traumatic Brain Injury, Brain Edema #Medical sciences Medicine
Tipo

Msc