Pitt Shield

Stereotactic modulation of blood-brain barrier permeability to enhance drug delivery.

Authors: Appelboom G, Detappe A, LoPresti M, Kunjachan S, Mitrasinovic S, Goldman S, Chang SD, Tillement O

Drug delivery in the CNS is limited by endothelial tight junctions forming the impermeable blood-brain barrier. The development of new treatment paradigms has previously been hampered by the restrictiveness of the blood-brain barrier to systemically administered therapeutics. With recent advances in stereotactic localization and noninvasive imaging, we have honed the ability to modulate, ablate, and rewire millimetric brain structures to precisely permeate the impregnable barrier. The wide range of focused radiations offers endless possibilities to disrupt endothelial permeability with different patterns and intensity following 3-dimensional coordinates offering a new world of possibilities to access the CNS, as well as to target therapies. We propose a review of the current state of knowledge in targeted drug delivery using noninvasive image-guided approaches. To this end, we focus on strategies currently used in clinics or in clinical trials such as targeted radiotherapy and magnetic resonance guided focused ultrasound, but also on more experimental approaches such as magnetically heated nanoparticles, electric fields, and lasers, techniques which demonstrated remarkable results both in vitro and in vivo. We envision that biodistribution and efficacy of systemically administered drugs will be enhanced with further developments of these promising strategies. Besides therapeutic applications, stereotactic platforms can be highly valuable in clinical applications for interventional strategies that can improve the targetability and efficacy of drugs and macromolecules. It is our hope that by showcasing and reviewing the current state of this field, we can lay the groundwork to guide future research in this realm.

Introduction

Purpose Drug delivery with BBB opening
Study Objective To review the current state of noninvasive image-guided approaches for targeted drug delivery to the central nervous system.
MRI or image guidance method Magnetic resonance-guided focused ultrasound (MRI-guided FUS)
Cargo name and characteristics Magnetically heated nanoparticles (nanoparticles); generally referenced systemically administered drugs and macromolecules (small molecules and proteins/biologics) — no specific AAVs or named therapeutic molecules reported

Outcomes and Safety

Summary of Outcomes Noninvasive image-guided modalities (targeted radiotherapy, MR-guided focused ultrasound, magnetically heated nanoparticles, electric fields, lasers) can transiently disrupt endothelial tight junctions of the blood–brain barrier to enable localized modulation, ablation, or rewiring of millimetric brain structures and improve CNS delivery, biodistribution, and efficacy of systemically administered therapeutics. This paper is a review and did not report experimental testing of specific focused ultrasound parameters.
Safety-related matter The abstract does not mention any safety issues, adverse effects, or reporting of harm related to the described techniques.

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