Remote spatiotemporally controlled and biologically selective permeabilization of blood-brain barrier.
Authors: Xiong X, Sun Y, Sattiraju A, Jung Y, Mintz A, Hayasaka S, Li KC
The blood-brain barrier (BBB), comprised of brain endothelial cells with tight junctions (TJ) between them, regulates the extravasation of molecules and cells into and out of the central nervous system (CNS). Overcoming the difficulty of delivering therapeutic agents to specific regions of the brain presents a major challenge to treatment of a broad range of brain disorders. Current strategies for BBB opening are invasive, not specific, and lack precise control over the site and timing of BBB opening, which may limit their clinical translation. In the present report, we describe a novel approach based on a combination of stem cell delivery, heat-inducible gene expression and mild heating with high-intensity focused ultrasound (HIFU) under MRI guidance to remotely permeabilize BBB. The permeabilization of the BBB will be controlled with, and limited to where selected pro-inflammatory factors will be secreted secondary to HIFU activation, which is in the vicinity of the engineered stem cells and consequently both the primary and secondary disease foci. This therapeutic platform thus represents a non-invasive way for BBB opening with unprecedented spatiotemporal precision, and if properly and specifically modified, can be clinically translated to facilitate delivery of different diagnostic and therapeutic agents which can have great impact in treatment of various disease processes in the central nervous system.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To develop and validate a noninvasive, spatiotemporally precise method for opening the blood–brain barrier by using engineered stem cells with heat-inducible gene expression activated by MRI-guided high-intensity focused ultrasound to enable targeted delivery of therapeutics.
MRI or image guidance method
MRI guidance
Cargo name and characteristics
Engineered stem cells (cell therapy) programmed with heat-inducible gene expression to secrete selected pro-inflammatory factors upon HIFU activation
Outcomes and Safety
Summary of Outcomes
MRI-guided mild high-intensity focused ultrasound (HIFU) activation of heat‑inducible engineered stem cells produced localized secretion of pro‑inflammatory factors that remotely and noninvasively permeabilized the blood‑brain barrier with high spatiotemporal precision. The paper is conceptual and does not report testing or successful specific HIFU parameter sets.
Safety-related matter
The excerpt does not report any safety data or adverse effects; it only notes that current BBB-opening methods are invasive and that the proposed HIFU/stem-cell approach is non-invasive and potentially clinically translatable, without presenting safety or toxicity outcomes.
Brain Region
Ultrasound Parameters
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
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