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Adenosine A1 receptors contribute to immune regulation after neonatal hypoxic ischemic brain injury.


ABSTRACT: Neonatal brain hypoxic ischemia (HI) often results in long-term motor and cognitive impairments. Post-ischemic inflammation greatly effects outcome and adenosine receptor signaling modulates both HI and immune cell function. Here, we investigated the influence of adenosine A1 receptor deficiency (A1R(-/-)) on key immune cell populations in a neonatal brain HI model. Ten-day-old mice were subjected to HI. Functional outcome was assessed by open locomotion and beam walking test and infarction size evaluated. Flow cytometry was performed on brain-infiltrating cells, and semi-automated analysis of flow cytometric data was applied. A1R(-/-) mice displayed larger infarctions (+33%, p?

SUBMITTER: Winerdal M 

PROVIDER: S-EPMC4749537 | biostudies-other | 2016 Mar

REPOSITORIES: biostudies-other

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Adenosine A1 receptors contribute to immune regulation after neonatal hypoxic ischemic brain injury.

Winerdal Max M   Winerdal Malin E ME   Wang Ying-Qing YQ   Fredholm Bertil B BB   Winqvist Ola O   Ådén Ulrika U  

Purinergic signalling 20151125 1


Neonatal brain hypoxic ischemia (HI) often results in long-term motor and cognitive impairments. Post-ischemic inflammation greatly effects outcome and adenosine receptor signaling modulates both HI and immune cell function. Here, we investigated the influence of adenosine A1 receptor deficiency (A1R(-/-)) on key immune cell populations in a neonatal brain HI model. Ten-day-old mice were subjected to HI. Functional outcome was assessed by open locomotion and beam walking test and infarction size  ...[more]

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