Interleukin-6 Enhances Expression of Adenosine A1 Receptor mRNA and Signaling in Cultured Rat Cortical Astrocytes and Brain Slices

被引:0
作者
Knut Biber
Beate Lubrich
Bernd L Fiebich
Hendrikus WGM Boddeke
Dietrich van Calker
机构
[1] University of Freiburg,Department of Psychiatry
[2] University of Groningen,Department of Medical Physiology
来源
Neuropsychopharmacology | 2001年 / 24卷
关键词
Adenosine A; -receptor; Interleukin-6; Neuroprotection; Astrocytes; Organotypic brain slices;
D O I
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中图分类号
学科分类号
摘要
The inhibitory neuromodulator adenosine is released in the brain in high concentrations under conditions of exaggerated neuronal activity such as ischemia and seizures, or electroconvulsive treatment. By inhibiting neural overactivity, adenosine counteracts seizure activity and promotes neuronal survival. Since stimulation of adenosine A2b receptors on astrocytes induces increased synthesis and release of interleukin-6, which also exerts neuroprotective effects, we hypothesized that the effects of interleukin-6 and of adenosine might be related. We report here that stimulation with interleukin-6 of cultured astrocytes, of cultured organotypic brain slices from newborn rat cortex, and of freshly prepared brain slices from rat cortex induces a concentration- and time-dependent upregulation of adenosine A1 receptor mRNA. This increased adenosine A1 receptor mRNA expression is accompanied in astrocytes by an increase in adenosine A1 receptor-mediated signaling via the phosphoinositide-dependent pathway. Since upregulation of adenosine A1 receptors leads to increased neuroprotective effects of adenosine, we suggest that the neuroprotective actions of interleukin-6 and adenosine are related and might be mediated at least in part through upregulation of adenosine A1 receptors. These results may be of relevance for a better understanding of neuroprotection in brain damage but also point to a potential impact of neuroprotection in the mechanisms of the antidepressive effects of chronic carbamazepine, electroconvulsive therapy, and sleep deprivation, which are all accompanied by adenosine A1 receptor upregulation.
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页码:86 / 96
页数:10
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共 259 条
[61]  
Dux E(1978)Expression of interleukin 6 in the rat striatum following stereotaxic injection of quinolinic acid Nature 276 839-1005
[62]  
Fastbom J(1979)Cellular localization of interleukin 6 mRNA and interleukin 6 receptor mRNA in rat brain J Neurochem 33 999-290
[63]  
Ungerstedt U(1991)Protective mechanism of adenosine in neurones and glial cells Eur J Pharmacol 206 285-180
[64]  
Rudolphi KA(1994)Stimulation of interleukin-6 secretion and gene transcription in primary astrocytes by adenosine Brain Res 643 173-364
[65]  
Fredholm BB(1987)The effects of caffeine on ischemic neuronal injury as determined by magnetic resonance imaging and histopathology Brain Res 402 362-undefined
[66]  
Fiebich BL(undefined)Local infusion of interleukin-6 attenuates the neurotoxic effects of NMDA on rat striatal cholinergic neurones undefined undefined undefined-undefined
[67]  
Biber K(undefined)Adenosine inhibits the accumulation of cyclic AMP in cultured brain cells undefined undefined undefined-undefined
[68]  
Gyufko K(undefined)Adenosine regulates via two different types of receptors the accumulation of cyclic AMP in cultured brain cells undefined undefined undefined-undefined
[69]  
Berger M(undefined)Carbamazepine distinguishes between adenosine receptor subtypes that mediate, respectively, regulation of cyclic AMP formation and inhibition of inositolphosphate formation undefined undefined undefined-undefined
[70]  
Bauer J(undefined)Interleukin-6 protects cultured rat hippocampal neurones against glutamate-induced cell death undefined undefined undefined-undefined