Enhanced capillary delivery with nanobubble-mediated blood-brain barrier opening and advanced high resolution vascular segmentation.
Authors: Gattegno R, Arbel L, Riess N, Shinar H, Katz S, Ilovitsh T
Overcoming the blood-brain barrier (BBB) is essential to enhance brain therapy. Here, we utilized nanobubbles with focused ultrasound for targeted and improved BBB opening in mice. A microscopy technique method assessed BBB opening at a single blood vessel resolution employing a dual-dye labeling technique using green fluorescent molecules to label blood vessels and Evans blue brain-impermeable dye for quantifying BBB extravasation. A deep learning architecture enabled blood vessels segmentation, delivering comparable accuracy to manual segmentation with a significant time reduction. Segmentation outcomes were applied to the Evans blue channel to quantify extravasation of each blood vessel. Results were compared to microbubble-mediated BBB opening, where reduced extravasation was observed in capillaries with a diameter of 2-6 μm. In comparison, nanobubbles yield an improved opening in these capillaries, and equivalent efficacy to that of microbubbles in larger vessels. These results indicate the potential of nanobubbles to serve as enhanced agents for BBB opening, amplifying bioeffects in capillaries while preserving comparable opening in larger vessels.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To evaluate whether nanobubble-mediated blood–brain barrier opening can enhance capillary delivery and to quantify this effect using advanced high-resolution vascular segmentation.
Disease model
Healthy
Outcomes and Safety
Summary of Outcomes
Nanobubble-mediated blood–brain barrier opening enhanced capillary delivery, demonstrated alongside advanced high-resolution vascular segmentation. Focused ultrasound parameters were None.
Safety-related matter
The provided text contains no mention of safety or adverse effects.
Brain Region
Ultrasound Parameters
Focal Characteristics
focal depth: None; focal length: None; aperture size: None
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