4.7 Article

Cerebral Arterial Pulsation Drives Paravascular CSF-Interstitial Fluid Exchange in the Murine Brain

Journal

JOURNAL OF NEUROSCIENCE
Volume 33, Issue 46, Pages 18190-18199

Publisher

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.1592-13.2013

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Funding

  1. National Institutes of Health
  2. United States Department of Defense
  3. Harold and Leila Y. Mathers Charitable Foundation
  4. American Heart Association

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CSF from the subarachnoid space moves rapidly into the brain along paravascular routes surrounding penetrating cerebral arteries, exchanging with brain interstitial fluid (ISF) and facilitating the clearance of interstitial solutes, such as amyloid beta, in a pathway that we have termed the glymphatic system. Prior reports have suggested that paravascular bulk flow of CSF or ISF may be driven by arterial pulsation. However, cerebral arterial pulsation could not be directly assessed. In the present study, we use in vivo two-photon microscopy in mice to visualize vascular wall pulsatility in penetrating intracortical arteries. We observed that unilateral ligation of the internal carotid artery significantly reduced arterial pulsatility by similar to 50%, while systemic administration of the adrenergic agonist dobutamine increased pulsatility of penetrating arteries by similar to 60%. When paravascular CSF-ISF exchange was evaluated in real time using in vivo two-photon and ex vivo fluorescence imaging, we observed that internal carotid artery ligation slowed the rate of paravascular CSF-ISF exchange, while dobutamine increased the rate of paravascular CSF-ISF exchange. These findings demonstrate that cerebral arterial pulsatility is a key driver of paravascular CSF influx into and through the brain parenchyma, and suggest that changes in arterial pulsatility may contribute to accumulation and deposition of toxic solutes, including amyloid beta, in the aging brain.

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