Pericytes control key neurovascular functions and neuronal phenotype in the adult brain and during brain aging.

Bell, Winkler, Sagare, Singh, LaRue et al.
Neuron 2010
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Pericytes play a key role in the development of cerebral microcirculation. The exact role of pericytes in the neurovascular unit in the adult brain and during brain aging remains, however, elusive. Using adult viable pericyte-deficient mice, we show that pericyte loss leads to brain vascular damage by two parallel pathways: (1) reduction in brain microcirculation causing diminished brain capillary perfusion, cerebral blood flow, and cerebral blood flow responses to brain activation that ultimately mediates chronic perfusion stress and hypoxia, and (2) blood-brain barrier breakdown associated with brain accumulation of serum proteins and several vasculotoxic and/or neurotoxic macromolecules ultimately leading to secondary neuronal degenerative changes. We show that age-dependent vascular damage in pericyte-deficient mice precedes neuronal degenerative changes, learning and memory impairment, and the neuroinflammatory response. Thus, pericytes control key neurovascular functions that are necessary for proper neuronal structure and function, and pericyte loss results in a progressive age-dependent vascular-mediated neurodegeneration.

10 Figures Extracted
Figure 1 Pmc_Xml
Age-Dependent Pericyte Loss and Brain Microvascular Regression in Mice with Pericyte-Specific PDGFRβ Deficient Signaling ( A Pdgfrβ +/+ Pdgfrβ +/− ( B Pdgfrβ +/+ Pdgfrβ +/− ( C Pdgfrβ +/− Pdgfrβ +/+ (...
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Figure 2 Pmc_Xml
Diminished Brain Capillary Perfusion and Changes in Cerebral Blood Flow in Pericyte-Deficient Mice ( A in vivo Pdgfrβ +/+ Pdgfrβ +/− ( B A. Pdgfrβ +/+ Pdgfrβ +/− ( C Pdgfrβ +/− Pdgfrβ +/− ( D 14 Pdgfr...
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Figure 3 Pmc_Xml
Age-Dependent Blood-Brain Barrier Disruption to Plasma Proteins in Pericyte-Deficient Mice ( A Pdgfrβ +/+ Pdgfrβ +/− ( B–C Pdgfrβ +/− Pdgfrβ +/+ B Pdgfrβ +/− Pdgfrβ +/+ C In B C Fig. S2 ( D Pdgfrβ +/...
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Figure 4 Pmc_Xml
Pathologic Accumulations in Brains of Pericyte-Deficient Mice ( A Pdgfrβ +/+ Pdgfrβ +/− ( B–C Pdgfrβ +/+ Pdgfrβ +/− B Pdgfrβ +/+ Pdgfrβ +/− C B C Fig. S2 ( D Pdgfrβ +/− Pdgfrβ +/− ( E Pdgfrβ +/− ( F (...
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Figure 5 Pmc_Xml
Blood-Brain Barrier Breakdown to Exogenous Dextran in Pericyte-Deficient Mice ( A In vivo Pdgfrβ +/+ Pdgfrβ +/− (B–C) A. Pdgfrβ +/− Pdgfrβ +/+ B Pdgfrβ +/− Pdgfrβ +/+ C ( D Pdgfrβ +/− Pdgfrβ +/− ( E P...
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Figure 6 Pmc_Xml
Age-Dependent Neurodegeneration and Impairments in Memory and Learning in Pericyte-Deficient Mice ( A–B A B Pdgfrβ +/+ Pdgfrβ +/− ( C–E C D E Pdgfrβ +/− Pdgfrβ +/+ ( F Pdgfrβ Pdgfrβ +/− ( G Pdgfrβ +/−...
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Figure 7 Pmc_Xml
Hypoxic Brain Tissue Changes in Pericyte-Deficient Mice ( A 2 Pdgfrβ +/+ Pdgfrβ +/− ( B Pdgfrβ +/+ Pdgfrβ +/− Fig. S7
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Figure 8 Pmc_Xml
Neurodegenerative Changes in Meox2 +/− ( A Pdgfrβ +/+ Meox2 +/+ Meox2 +/− ( B Pdgfrβ +/+ Meox2 +/+ Meox2 +/− ( C Pdgfrβ +/+ Meox2 +/+ Meox2 +/− ( D Pdgfrβ +/+ Meox2 +/+ Meox2 +/− In B D
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Figure 9 Pmc_Xml
Late Neuroinflammatory Response in Pericyte-Deficient Mice ( A Pdgfrβ +/+ Pdgfrβ +/− ( B Pdgfrβ +/− Pdgfrβ +/+ ( C Pdgfrβ +/+ Pdgfrβ +/− Pdgfrβ +/+ ( D Pdgfrβ +/− Pdgfrβ +/+ ( E–I (Il-1β) E (Il-6) F (...
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Figure 10 Pmc_Xml
Vascular-Mediated Neurodegeneration Following Pericyte Loss PDGFRβ deficient signaling in brain pericytes leads to a progressive age-dependent pericyte loss resulting in (1) reductions in brain microc...
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