Pitt Shield

Computational Fluid Dynamic Model Prediction of Enhanced Glymphatic Clearance in Response to Focused Ultrasound-Mediated Blood-Brain Barrier Opening.

Authors: Gladwell RA, Fisher DG, Wythe JD, Highley CB, Lukens JR, Price RJ

Focused Ultrasound (FUS) is the concentration of acoustic energy into a small region to produce therapeutic bioeffects. FUS-induced blood-brain barrier opening (BBBO), a strategy to deliver drugs and genes to the brain, also enhances glymphatic drainage, the brain-specific waste clearance system. Thus, FUS BBBO is a promising strategy for addressing the accumulation of neurotoxic solutes that are characteristic of many neurodegenerative diseases. However, the biotransport mechanisms by which FUS augments glymphatic drainage are not well understood. To address this knowledge gap, a 3D finite element COMSOL model of a single penetrating arteriole-venule vascular unit in the brain is engineered. The model predicts that i) FUS greatly improves waste clearance by increasing both diffusion and convection, ii) the convection-mediated movement of cerebrospinal fluid (CSF) and solute from the arteriole to the venule is largely dependent on the diffusion-mediated interactions between the solute, the medium through which it is moving, and CSF and iii) solutes more centralized to the CSF flow profile and that have a higher diffusion coefficient tend to clear more rapidly due to increased convection and enhanced diffusive mixing. The computational model can both inform therapeutic strategies and elucidate mechanisms of secondary responses to FUS BBBO.

Introduction

Purpose Drug delivery with BBB opening
Study Objective To use a computational fluid dynamics model to predict whether focused ultrasound-mediated blood-brain barrier opening enhances glymphatic clearance.

Outcomes and Safety

Summary of Outcomes Computational fluid dynamics predicted that focused ultrasound–mediated blood–brain barrier opening enhances glymphatic clearance; no specific focused ultrasound parameters were reported in the provided text.
Safety-related matter No safety information or adverse effects are mentioned in the provided text (only the paper title is present), so no adverse effects were reported.

Brain Region

Visualization unavailable

Ultrasound Parameters

Focal Characteristics Focal depth: None; Focal length: None; Aperture size: None

We are open to feedback. If you see a mistake or have a suggestion, please contact us.

← Back to Search