Prostaglandins stimulate calcium-dependent glutamate release in astrocytes (original) (raw)

References

  1. Dani, J. W., Chernjavski, A. & Smith, S. J. Neuronal activity triggers calcium waves in hippocampal astrocyte networks. Neuron 8, 429–440 (1992).
    Article CAS Google Scholar
  2. Porter, J. T. & McCarthy, K. D. Hippocampal astrocytes in situ respond to glutamate released from synaptic terminals. J. Neurosci. 16, 5073–5081 (1996).
    Article CAS Google Scholar
  3. Nedergaard, M. Direct signaling from astrocytes to neurons in cultures of mammalian brain cells. Science 263, 1768–1771 (1994).
    Article ADS CAS Google Scholar
  4. Parpura, V. et al. Glutamate-mediated astrocyte-neuron signalling. Nature 369, 744–747 (1994).
    Article ADS CAS Google Scholar
  5. Hassinger, T. D. et al. Evidence for glutamate-mediated activation of hippocampal neurons by glial calcium waves. J. Neurobiol. 28, 159–170 (1995).
    Article CAS Google Scholar
  6. Nicholls, D. G., Sihra, T. S. & Sanchez-Prieto, J. Calcium-dependent and -independent release of glutamate from synaptosomes monitored by continuous fluorometry. J. Neurochem. 49, 50–57 (1987).
    Article CAS Google Scholar
  7. Steinhäuser, C. & Gallo, V. News on glutamate receptors in glial cells. Trends Neurosci. 19, 339–345 (1996).
    Article Google Scholar
  8. Szatkowski, M., Barbour, B. & Attwell, D. Non-vesicular release of glutamate from glial cells by reversed electrogenic glutamate uptake. Nature 348, 443–447 (1990).
    Article ADS CAS Google Scholar
  9. Kimelberg, H. K., Goderie, S. K., Higman, S., Pang, S. & Waniewski, R. A. Swelling-induced release of glutamate, aspartate and taurine from astrocyte cultures. J. Neurosci. 10, 1583–1591 (1990).
    Article CAS Google Scholar
  10. Vesce, S., Bezzi, P., Rossi, D., Meldolesi, J. & Volterra, A. HIV-1 gp120 glycoprotein affects the astrocyte control of extracellular glutamate by both inhibiting the uptake and stimulating the release of the amino acid. FEBS Lett. 411, 107–109 (1997).
    Article CAS Google Scholar
  11. Volterra, A. et al. The competitive transport inhibitor L-trans-pyrrolidine-2,4-dicarboxylate triggers excitotoxicity in rat cortical neuron-astrocyte co-coltures via glutamate release rather than uptake inhibition. Eur. J. Neurosci. 8, 2019–2028 (1996).
    Article CAS Google Scholar
  12. Eriksson, P. S., Nilsson, M., Wågberg, M., Rönnbäck, L. & Hansson, E. Volume regulation of single astroglial cells in primary culture. Neurosci. Lett. 143, 195–199 (1992).
    Article CAS Google Scholar
  13. Jeftinija, S. D., Jeftinija, K. V. & Stefanovic, G. Cultured astrocytes express proteins involved in vesicular glutamate release. Brain Res. 750, 41–47 (1997).
    Article CAS Google Scholar
  14. Schiavo, G. et al. Tetanus and botulinum-B neurotoxins block neurotransmitter release by proteolytic cleavage of synaptobrevin. Nature 359, 832–835 (1992).
    Article ADS CAS Google Scholar
  15. Jeftinija, S. D., Jeftinija, K. V., Stefanovic, G. & Liu, F. Neuroligand-evoked calcium-dependent release of excitatory amino acids from cultured astrocytes. J. Neurochem. 66, 674–684 (1996).
    Google Scholar
  16. Dumuis, A., Pin, J. P., Oomagari, K., Sebben, M. & Bockaert, J. Arachidonic acid released from striatal neurons by joint stimulation of ionotropic and metabotropic quisqualate receptors. Nature 347, 182–184 (1990).
    Article ADS CAS Google Scholar
  17. Piomelli, D. Eicosanoids in synaptic transmission. Crit. Rev. Neurobiol. 8, 65–83 (1994).
    CAS PubMed Google Scholar
  18. Oomagari, K., Buisson, B., Dumuis, A., Bockaert, J. & Pin, J.-P. Effect of glutamate and ionomycin on the release of arachidonic acid, prostaglandins and HETEs from cultured neurons and astrocytes. Eur. J. Neurosci. 3, 928–939 (1991).
    Article Google Scholar
  19. Grynkiewicz, G., Poenie, M. & Tsien, R. Y. Anew generation of Ca2+ indicators with greatly improved fluorescence properties. J. Biol. Chem. 260, 3440–3450 (1985).
    CAS PubMed Google Scholar
  20. Calabresi, P., Benedetti, M., Mercuri, N. B. & Bernardi, G. Selective depression of synaptic transmission by tetanus toxin: a comparative study on hippocampal and neostriatal slices. Neuroscience 30, 663–670 (1989).
    Article CAS Google Scholar
  21. Mennerick, S., Benz, A. & Zorumski, C. F. Components of glial responses to exogenous and synaptic glutamate in rat hippocampal microcultures. J. Neurosci. 16, 55–64 (1996).
    Article CAS Google Scholar
  22. Pasti, L., Volterra, A., Pozzan, T. & Carmignoto, G. Intracellular calcium oscillations in astrocytes: a highly plastic, bidirectional form of communication between neurons and astrocytes in situ. J. Neurosci. 17, 7817–7830 (1997).
    Article CAS Google Scholar
  23. Baran, H., Heldt, R. & Hertting, G. Increased prostaglandin formation in rat brain following systemic application of kainic acid. Brain Res. 404, 107–112 (1987).
    Article CAS Google Scholar
  24. Malmberg, A. B. & Yaksh, T. L. Hyperalgesia mediated by spinal glutamate or substance P receptor blocked by spinal cyclooxygenase inhibition. Science 257, 1276–1279 (1992).
    Article ADS CAS Google Scholar
  25. Collaco-Moraes, Y., Asprey, B., Harrison, M. & de Belleroche, J. Cyclo-oxygenase-2 messenger RNA induction in focal cerebral ischemia. J. Cereb. Blood Flow Metab. 16, 1366–1372 (1996).
    Article CAS Google Scholar
  26. O'Banion, M. K., Miller, J. C., Chang, J. W., Kaplan, M. D. & Coleman, P. D. Interleukin-1 β induces prostaglandin G/H synthase 2 (cyclooxygenase-2) in primary murine astrocyte cultures. J. Neurochem. 66, 2532–2540 (1996).
    Article CAS Google Scholar
  27. Carmignoto, G. & Vicini, S. Activity-dependent decrease in NMDA receptor responses during development of the visual cortex. Science 258, 1007–1011 (1992).
    Article ADS CAS Google Scholar
  28. Stella, N., Tencé, M., Glowinski, J. & Prémont, J. Glutamate-evoked release of arachidonic acid from mouse brain astrocytes. J. Neurosci. 14, 568–575 (1994).
    Article CAS Google Scholar
  29. Edwards, F. A., Konnerth, A., Sakmann, B. & Takahashi, T. Athin slice preparation for patch clamp recordings from synaptically connected neurons of the mammalian central nervous system. Pflügers Arch. 414, 600–612 (1989).
    Article CAS Google Scholar

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