Literature DB >> 21329762

Purinergic mechanisms in gliovascular coupling.

Dale A Pelligrino1, Francesco Vetri, Hao-Liang Xu.   

Abstract

Regional elevations in cerebral blood flow (CBF) often occur in response to localized increases in cerebral neuronal activity. An ever expanding literature has linked this neurovascular coupling process to specific signaling pathways involving neuronal synapses, astrocytes and cerebral arteries and arterioles. Collectively, these structures are termed the "neurovascular unit" (NVU). Astrocytes are thought to be the cornerstone of the NVU. Thus, not only do astrocytes "detect" increased synaptic activity, they can transmit that information to proximal and remote astrocytic sites often through a Ca(2+)- and ATP-related signaling process. At the vascular end of the NVU, a Ca(2+)-dependent formation and release of vasodilators, or substances linked to vasodilation, can occur. The latter category includes ATP, which upon its appearance in the extracellular compartment, can be rapidly converted to the potent vasodilator, adenosine, via the action of ecto-nucleotidases. In the present review, we give consideration to experimental model-specific variations in purinergic influences on gliovascular signaling mechanisms, focusing on the cerebral cortex. In that discussion, we compare findings obtained using in vitro (rodent brain slice) models and multiple in vivo models (2-photon imaging; somatosensory stimulation-evoked cortical hyperemia; and sciatic nerve stimulation-evoked pial arteriolar dilation). Additional attention is given to the importance of upstream (remote) vasodilation; the key role played by extracellular ATP hydrolysis (via ecto-nucleotidases) in gliovascular coupling; and interactions among multiple signaling pathways.
Copyright © 2011 Elsevier Ltd. All rights reserved.

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Year:  2011        PMID: 21329762      PMCID: PMC3070818          DOI: 10.1016/j.semcdb.2011.02.010

Source DB:  PubMed          Journal:  Semin Cell Dev Biol        ISSN: 1084-9521            Impact factor:   7.727


  74 in total

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2.  Effect of caffeine on cerebral blood flow response to somatosensory stimulation.

Authors:  Joseph R Meno; Thien-son K Nguyen; Elise M Jensen; G Alexander West; Leonid Groysman; David K Kung; Al C Ngai; Gavin W Britz; H Richard Winn
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3.  Effect of adenosine receptor blockade on pial arteriolar dilation during sciatic nerve stimulation.

Authors:  J R Meno; A V Crum; H R Winn
Journal:  Am J Physiol Heart Circ Physiol       Date:  2001-11       Impact factor: 4.733

Review 4.  Astrocyte control of synaptic transmission and neurovascular coupling.

Authors:  Philip G Haydon; Giorgio Carmignoto
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5.  Adenosine monophosphate as a mediator of ATP effects at P1 purinoceptors.

Authors:  F M Ross; M J Brodie; T W Stone
Journal:  Br J Pharmacol       Date:  1998-06       Impact factor: 8.739

Review 6.  Caffeine and the control of cerebral hemodynamics.

Authors:  Dale A Pelligrino; Hao-Liang Xu; Francesco Vetri
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8.  Assignment of ecto-nucleoside triphosphate diphosphohydrolase-1/cd39 expression to microglia and vasculature of the brain.

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Authors:  Andrea K Hinschen; Roselyn B Rose'Meyer; John P Headrick
Journal:  J Cardiovasc Pharmacol       Date:  2003-01       Impact factor: 3.105

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  32 in total

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4.  ATP hydrolysis pathways and their contributions to pial arteriolar dilation in rats.

Authors:  Francesco Vetri; Haoliang Xu; Lizhen Mao; Chanannait Paisansathan; Dale A Pelligrino
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Review 7.  Mitochondrial mechanisms in cerebral vascular control: shared signaling pathways with preconditioning.

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Review 9.  Adenosine--a physiological or pathophysiological agent?

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10.  Central α-adrenoceptors contribute to mustard oil-induced central sensitization in the rat medullary dorsal horn.

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