4.7 Article

Glial cell inhibition of neurons by release of ATP

期刊

JOURNAL OF NEUROSCIENCE
卷 23, 期 5, 页码 1659-1666

出版社

SOC NEUROSCIENCE
DOI: 10.1523/jneurosci.23-05-01659.2003

关键词

astrocyte; Muller cell; glial cell; ganglion cell; retina; ATP; adenosine; modulation; inhibition

资金

  1. NEI NIH HHS [R01 EY004077-23, EY04077, R01 EY004077] Funding Source: Medline

向作者/读者索取更多资源

ATP is released by neurons and functions as a neurotransmitter and modulator in the CNS. Here I show that ATP released from glial cells can also serve as a potent neuromodulator, inhibiting neurons in the retina of the rat. Activation of glial cells by focal ejection of ATP, ATPgammaS, dopamine, thrombin, or lysophosphatidic acid or by mechanical stimulation evoked hyperpolarizing responses and outward currents in a subset of retinal ganglion cells by increasing a Ba2+-sensitive K+ conductance in the neurons. This glia-evoked inhibition reduced the firing rate of those neurons that displayed spontaneous spike activity. The inhibition was abolished by the A 1 adenosine receptor antagonist DPCPX (8-cyclopentyl-1,3-dipropylxanthine) (10 nM) and was reduced by the ecto-ATPase inhibitor ARL-67156 (6-N, N-diethyl-D-beta, gamma-dibromomethyleneATP) (50 muM) and by the ectonucleotidase inhibitor AOPCP[adenosine-5'-O-(alpha, beta-methylene) diphosphonate] (250 muM). Selective activation of retinal glial cells demonstrated that Muller cells, but not astrocytes, mediate the inhibition. ATP release from Muller cells into the inner plexiform layer of the retina was shown using the luciferin-luciferase chemiluminescence assay. These findings demonstrate that activated glial cells can inhibit neurons in the retina by the release of ATP, which is converted to adenosine by ectoenzymes and subsequently activates neuronal adenosine receptors. The results lend support to the hypothesis that glial cells play an active role in information processing in the CNS.

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