Enhanced astroglial Ca2+ signaling increases excitatory synaptic strength in the epileptic brain

被引:55
作者
Alvarez-Ferradas, Carla [1 ]
Carlos Morales, Juan [1 ]
Wellmann, Mario [1 ]
Nualart, Francisco [2 ]
Roncagliolo, Manuel [1 ]
Fuenzalida, Marco [1 ]
Bonansco, Christian [1 ]
机构
[1] Univ Valparaiso, Fac Ciencias, Inst Fisiol, Ctr Neurobiol & Plasticidad Cerebral CNPC, Valparaiso, Chile
[2] Univ Concepcion, Fac Ciencias Biol, Dept Biol Celular, Ctr Microscopia Avanzada CMA BIOBIO, Concepcion, Chile
关键词
epilepsy; gliotransmission; astrocyte; kindling; neurotransmission; hippocampus; UP-REGULATION; ASTROCYTIC GLUTAMATE; NEURONAL-ACTIVITY; GLIA; ACTIVATION; SEIZURES; RELEASE; GLIOTRANSMISSION; HEMICHANNELS; EXCITABILITY;
D O I
10.1002/glia.22817
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The fine-tuning of synaptic transmission by astrocyte signaling is crucial to CNS physiology. However, how exactly astroglial excitability and gliotransmission are affected in several neuropathologies, including epilepsy, remains unclear. Here, using a chronic model of temporal lobe epilepsy (TLE) in rats, we found that astrocytes from astrogliotic hippocampal slices displayed an augmented incidence of TTX-insensitive spontaneous slow Ca2+ transients (STs), suggesting a hyperexcitable pattern of astroglial activity. As a consequence, elevated glutamate-mediated gliotransmission, observed as increased slow inward current (SICs) frequency, up-regulates the probability of neurotransmitter release in CA3-CA1 synapses. Selective blockade of spontaneous astroglial Ca2+ elevations as well as the inhibition of purinergic P2Y1 or mGluR5 receptors relieves the abnormal enhancement of synaptic strength. Moreover, mGluR5 blockade eliminates any synaptic effects induced by P2Y1R inhibition alone, suggesting that the Pr modulation via mGluR occurs downstream of P2Y1R-mediated Ca2+-dependent glutamate release from astrocyte. Our findings show that elevated Ca2+-dependent glutamate gliotransmission from hyperexcitable astrocytes up-regulates excitatory neurotransmission in epileptic hippocampus, suggesting that gliotransmission should be considered as a novel functional key in a broad spectrum of neuropathological conditions. GLIA 2015;63:1507-1521
引用
收藏
页码:1507 / 1521
页数:15
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