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January 26, 1990Science1,857 citations

Glutamate Induces Calcium Waves in Cultured Astrocytes: Long-Range Glial Signaling

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ACAnn Cornell-BellBoston UniversitySFSteven FinkbeinerGladstone InstitutesMCMark S. CooperAssumption University

Key Points

  • The research aims to explore the signaling role of astrocytes and how they respond to glutamate through calcium dynamics.
  • Cultured hippocampal astrocytes were exposed to glutamate and monitored for changes in cytoplasmic free calcium using fluo-3 indicator.
  • The response involved two types of glutamate receptors, one releasing intracellular calcium and another promoting calcium influx from the membrane.
  • Astrocytes exhibited an oscillatory elevation in cytoplasmic calcium following glutamate exposure.
  • Calcium increases often propagated as waves between neighboring astrocytes, indicating a long-range signaling mechanism.
  • Two receptor types contributed to calcium responses: one preferentially for quisqualate, and the other for kainate.

Abstract

The finding that astrocytes possess glutamate-sensitive ion channels hinted at a previously unrecognized signaling role for these cells. Now it is reported that cultured hippocampal astrocytes can respond to glutamate with a prompt and oscillatory elevation of cytoplasmic free calcium, visible through use of the fluorescent calcium indicator fluo-3. Two types of glutamate receptor--one preferring quisqualate and releasing calcium from intracellular stores and the other preferring kainate and promoting surface-membrane calcium influx--appear to be involved. Moreover, glutamate-induced increases in cytoplasmic free calcium frequently propagate as waves within the cytoplasm of individual astrocytes and between adjacent astrocytes in confluent cultures. These propagating waves of calcium suggest that networks of astrocytes may constitute a long-range signaling system within the brain.

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Cite This Study

Cornell-Bell et al. (1990) studied this question.

synapsesocial.com/papers/69d98eeca1d151c65f684848https://doi.org/10.1126/science.1967852
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