4.4 Article

IGF1R signaling regulates astrocyte-mediated neurovascular coupling in mice: implications for brain aging

期刊

GEROSCIENCE
卷 43, 期 2, 页码 901-911

出版社

SPRINGER
DOI: 10.1007/s11357-021-00350-0

关键词

Insulin-like growth factor 1; IGF-1; Vascular cognitive impairment; VCI; Functional hyperemia; Astrocyte; Arachidonic acid metabolites; Neurovascular uncoupling; Cerebrovascular; Neurovascular aging

资金

  1. Oklahoma Center for the Advancement of Science and Technology
  2. National Institute on Aging [R01-AG047879, R01-AG055395, R0-AG068295, K99AG056662]
  3. National Institute of Neurological Disorders and Stroke (NINDS) [R01-NS100782]
  4. National Cancer Institute (NCI) [R01-CA255840-01]
  5. National Institute of General Medical Sciences Oklahoma Shared Clinical and Translational Resources (OSCTR) [GM104938]
  6. Presbyterian Health Foundation
  7. NIA-supported Geroscience Training Program in Oklahoma [T32AG052363]
  8. Oklahoma Nathan Shock Center [P30AG050911]
  9. Cellular and Molecular GeroScience CoBRE [1P20GM125528, 5337]
  10. American Federation for Aging Research (Irene/Diamond Postdoctoral Transition Award)
  11. Hungarian Center for Excellence in Molecular Medicine
  12. NKFIH

向作者/读者索取更多资源

This study found that disrupted IGF1R signaling pathway affects astrocyte responses to external stimuli, decreases the release of vasodilators, accelerates the metabolism and inactivation of EETs, leading to impaired neurovascular coupling.
Aging is associated with a significant deficiency in circulating insulin-like growth factor-1 (IGF-1), which has an important role in the pathogenesis of age-related vascular cognitive impairment (VCI). Impairment of moment-to-moment adjustment of regional cerebral blood flow via neurovascular coupling (NVC) importantly contributes to VCI. Previous studies established a causal link between circulating IGF-1 deficiency and neurovascular dysfunction. Release of vasodilator mediators from activated astrocytes plays a key role in NVC. To determine the impact of impaired IGF-1 signaling on astrocytic function, astrocyte-mediated NVC responses were studied in a novel mouse model of astrocyte-specific knockout of IGF1R (GFAP-Cre(ERT2)/Igf1r(f/f)) and accelerated neurovascular aging. We found that mice with disrupted astrocytic IGF1R signaling exhibit impaired NVC responses, decreased stimulated release of the vasodilator gliotransmitter epoxy-eicosatrienoic acids (EETs), and upregulation of soluble epoxy hydrolase (sEH), which metabolizes and inactivates EETs. Collectively, our findings provide additional evidence that IGF-1 promotes astrocyte health and maintains normal NVC, protecting cognitive health.

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