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Review
. 2004 Aug 15;47(3):209-216.
doi: 10.1002/glia.20082.

Role for glia in synaptogenesis

Affiliations
Review

Role for glia in synaptogenesis

Erik M Ullian et al. Glia. .

Abstract

Nearly one-half of the cells in a human brain are astrocytes, but the function of these little cells remains a great mystery. Astrocytes form an intimate association with synapses throughout the adult CNS, where they help regulate ion and neurotransmitter concentrations. Recent in vitro studies, however, have found that astrocytes also exert powerful control over the number of CNS synapses that form, are essential for postsynaptic function, and are required for synaptic stability and maintenance. Moreover, recent studies increasingly implicate astrocytes in vivo as participants in activity-dependent structural and functional synaptic changes throughout the nervous system. Taken together, these data force us to rethink the role of glia. We propose that astrocytes should not be viewed primarily as support cells, but rather as cells that actively control the structural and functional plasticity of synapses in developing and adult organisms.

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References

REFERENCES

    1. Beattie EC, Stellwagen D, Morishita W, Bresnahan JC, Ha BK, Von Zastrow M, Beattie MS, Malenka RC. 2002. Control of synaptic strength by glial TNFalpha. Science 295: 2282-2285.
    1. Bergles DE, Dzubay JA, Jahr CE. 1997. Glutamate transporter currents in Bergmann glial cells follow the time course of extrasynaptic glutamate. Proc Natl Acad Sci USA 94: 14821-14825.
    1. Boehning D, Snyder SH. 2003. Novel neural modulators. Annu Rev Neurosci 26: 105-131.
    1. Bordey A, Sontheimer H. 2003. Modulation of glutamatergic transmission by Bergmann glial cells in rat cerebellum in situ. J Neurophysiol 89: 979-988.
    1. Bushong EA, Martone ME, Ellisman MH. 2003. Examination of the relationship between astrocyte morphology and laminar boundaries in the molecular layer of adult dentate gyrus. J Comp Neurol 462: 241-251.

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