4.6 Article

Purinergic glio-endothelial coupling during neuronal activity: role of P2Y1 receptors and eNOS in functional hyperemia in the mouse somatosensory cortex

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajpheart.00463.2015

关键词

astrocyte; dementia; endothelial dysfunction; endothelium; vascular cognitive impairment; endothelial nitric oxide synthase

资金

  1. American Heart Association
  2. Arkansas Claude Pepper Older Americans Independence Center at University of Arkansas Medical Center [P30 AG028718]
  3. Oklahoma Center for the Advancement of Science and Technology
  4. Bolyai Research Scholarship of the Hungarian Academy of Sciences
  5. National Center for Complementary and Alternative Medicine [R01-AT006526]
  6. National Institute on Aging [R01-AG047879, R01-AG038747, R01-NS056218, R00-AG031182, R01-AG043483]
  7. National Institute of Diabetes and Digestive and Kidney Diseases [R01-DK098656]

向作者/读者索取更多资源

Impairment of moment-tomoment adjustment of cerebral blood flow (CBF) via neurovascular coupling is thought to play a critical role in the genesis of cognitive impairment associated with aging and pathological conditions associated with accelerated cerebromicrovascular aging (e.g., hypertension, obesity). Although previous studies demonstrate that endothelial dysfunction plays a critical role in neurovascular uncoupling in these conditions, the role of endothelial NO mediation in neurovascular coupling responses is not well understood. To establish the link between endothelial function and functional hyperemia, neurovascular coupling responses were studied in mutant mice overexpressing or deficient in endothelial NO synthase (eNOS), and the role of P2Y(1) receptors in purinergic glioendothelial coupling was assessed. We found that genetic depletion of eNOS (eNOS(-/-)) and pharmacological inhibition of NO synthesis significantly decreased the CBF responses in the somatosensory cortex evoked by whisker stimulation and by administration of ATP. Overexpression of eNOS enhanced NO mediation of functional hyperemia. In control mice, the selective and potent P2Y(1) receptor antagonist MRS2179 attenuated both whisker stimulation-induced and ATP-mediated CBF responses, whereas, in eNOS(-/-) mice, the inhibitory effects of MRS2179 were blunted. Collectively, our findings provide additional evidence for purinergic glio-endothelial coupling during neuronal activity, highlighting the role of ATP-mediated activation of eNOS via P2Y(1) receptors in functional hyperemia.

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