Literature DB >> 29949771

Synchronized Astrocytic Ca2+ Responses in Neurovascular Coupling during Somatosensory Stimulation and for the Resting State.

Xiaochun Gu1, Wei Chen2, Nora D Volkow3, Alan P Koretsky4, Congwu Du2, Yingtian Pan5.   

Abstract

The role of astrocytes in neurovascular coupling (NVC) is unclear. Here, we applied a multimodality imaging approach to concomitantly measure synchronized neuronal or astrocytic Ca2+ and hemodynamic changes in the mouse somatosensory cortex at rest and during sensory electrical stimulation. Strikingly, we found that low-frequency stimulation (0.3-1 Hz), which consistently evokes fast neuronal Ca2+ transients (6.0 ± 2.7 ms latency) that always precede vascular responses, does not always elicit astrocytic Ca2+ transients (313 ± 65 ms latency). However, the magnitude of the hemodynamic response is increased when astrocytic transients occur, suggesting a facilitatory role of astrocytes in NVC. High-frequency stimulation (5-10 Hz) consistently evokes a large, delayed astrocytic Ca2+ accumulation (3.48 ± 0.09 s latency) that is temporarily associated with vasoconstriction, suggesting a role for astrocytes in resetting NVC. At rest, neuronal, but not astrocytic, Ca2+ fluctuations correlate with hemodynamic low-frequency oscillations. Taken together, these results support a role for astrocytes in modulating, but not triggering, NVC.
Copyright © 2018 The Authors. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  GCaMP6f; astrocyte; astrocytic Ca(2+) fluctuation; low-frequency oscillations; neuron; neurovascular coupling; resting state; somatosensory stimulation; synchronized astrocyte responses; synchronized neuronal responses

Mesh:

Substances:

Year:  2018        PMID: 29949771     DOI: 10.1016/j.celrep.2018.05.091

Source DB:  PubMed          Journal:  Cell Rep            Impact factor:   9.423


  20 in total

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