Abstract
Glial cells, which outnumber neurones in the central nervous system, have traditionally been considered to be electrically inexcitable and to play only a passive role in the electrical activity of the brain. Recent reports have demonstrated, however, that certain glial cells, when maintained in primary culture, possess voltage-dependent ion channels. It remains to be demonstrated whether these channels are also present in glial cells in vivo. I show here that Müller cells, the principal glial cells of the vertebrate retina, can generate 'Ca2+ spikes' in freshly excised slices of retinal tissue. In addition, voltage-clamp studies of enzymatically dissociated Müller cells demonstrate the presence of four types of voltage-dependent ion channels: a Ca2+ channel, a Ca2+-activated K+ channel, a fast-inactivating (type A) K+ channel and an inward-rectifying K+ channel. Currents generated by these voltage-dependent channels may enhance the ability of Müller cells to regulate extracellular K+ levels in the retina and may be involved in the generation of the electroretinogram.
MeSH Terms
Ambystoma
Animals
Calcium/metabolism
Cell Membrane/metabolism
Cell Separation
Electric Conductivity
Ion Channels/metabolism
Neuroglia/cytology,metabolism
Potassium/metabolism
Retina/cytology,metabolism
Chemicals
Ion Channels
Potassium
Calcium
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Newman E A
References (18)
18 references, click to expand
-
Neuroglial cells: physiological properties and a potassium mediated effect of neuronal activity on the glial membrane potential.
Proc R Soc Lond B Biol Sci. 1967 Jun 6;168(1010):1-21
PMID: 4382871
-
Voltage clamp studies of a transient outward membrane current in gastropod neural somata.
J Physiol. 1971 Feb;213(1):21-30
PMID: 5575340
-
Müller cell function during spreading depression in frog retina.
Proc Natl Acad Sci U S A. 1976 Apr;73(4):1351-4
PMID: 1083528
-
Potassium current and the effect of cesium on this current during anomalous rectification of the egg cell membrane of a starfish.
J Gen Physiol. 1976 Jun;67(6):621-38
PMID: 945323
-
Three pharmacologically distinct potassium channels in molluscan neurones.
J Physiol. 1977 Feb;265(2):465-88
PMID: 850203
-
Specific pharmacology of calcium in myocardium, cardiac pacemakers, and vascular smooth muscle.
Annu Rev Pharmacol Toxicol. 1977;17:149-66
PMID: 326161
-
Calcium-dependent potassium activation in nervous tissues.
Annu Rev Biophys Bioeng. 1978;7:1-18
PMID: 352237
-
Generation of b-wave currents in the skate retina.
Proc Natl Acad Sci U S A. 1978 Nov;75(11):5727-31
PMID: 281719
-
Improved patch-clamp techniques for high-resolution current recording from cells and cell-free membrane patches.
Pflugers Arch. 1981 Aug;391(2):85-100
PMID: 6270629
-
Studies of calcium channels in rat clonal pituitary cells with patch electrode voltage clamp.
J Physiol. 1982 Oct;331:231-52
PMID: 6296367
-
Regional specialization of retinal glial cell membrane.
Nature. 1984 May 10-16;309(5964):155-7
PMID: 6717594
-
Neuronal-type Na+ and K+ channels in rabbit cultured Schwann cells.
Nature. 1984 Sep 13-19;311(5982):156-7
PMID: 6088996
-
Control of extracellular potassium levels by retinal glial cell K+ siphoning.
Science. 1984 Sep 14;225(4667):1174-5
PMID: 6474173
-
Voltage-dependent calcium channels in glial cells.
Science. 1984 Dec 14;226(4680):1345-7
PMID: 6095454
-
Voltage-dependent potassium currents in cultured astrocytes.
Nature. 1985 May 16-22;315(6016):229-32
PMID: 2582263
-
Permeation and interaction of divalent cations in calcium channels of snail neurons.
J Gen Physiol. 1985 Apr;85(4):491-518
PMID: 2409216
-
Membrane physiology of retinal glial (Müller) cells.
J Neurosci. 1985 Aug;5(8):2225-39
PMID: 3874934
-
Ionic and electrophysiological properties of retinal Müller (glial) cells of the turtle.
J Physiol. 1985 May;362:79-92
PMID: 2410604