MR-Guided Delivery of Hydrophilic Molecular Imaging Agents Across the Blood-Brain Barrier Through Focused Ultrasound.
Authors: Airan RD, Foss CA, Ellens NP, Wang Y, Mease RC, Farahani K, Pomper MG
A wide variety of hydrophilic imaging and therapeutic agents are unable to gain access to the central nervous system (CNS) due to the blood-brain barrier (BBB). In particular, unless a particular transporter exists that may transport the agent across the BBB, most agents that are larger than 500 Da or that are hydrophilic will be excluded by the BBB. Glutamate carboxypeptidase II (GCPII), also known as the prostate-specific membrane antigen (PSMA) in the periphery, has been implicated in various neuropsychiatric conditions. As all agents that target GCPII are hydrophilic and thereby excluded from the CNS, we used GCPII as a platform for demonstrating our MR-guided focused ultrasound (MRgFUS) technique for delivery of GCPII/PSMA-specific imaging agents to the brain. Female rats underwent MRgFUS-mediated opening of the BBB. After opening of the BBB, either a radio- or fluorescently labeled ureido-based ligand for GCPII/PSMA was administered intravenously. Brain uptake was assessed for 2-(3-{1-carboxy-5-[(6-[<sup>18</sup>F]fluoro-pyridine-3-carbonyl)-amino]-pentyl}-ureido)-pentanedioic acid ([<sup>18</sup>F]DCFPyL) and YC-27, two compounds known to bind GCPII/PSMA with high affinity, using positron emission tomography (PET) and near-infrared fluorescence (NIRF) imaging, respectively. Specificity of ligand binding to GCPII/PSMA in the brain was determined with co-administration of a molar excess of ZJ-43, a compound of the same chemical class but different structure from either [<sup>18</sup>F]DCFPyL or YC-27, which competes for GCPII/PSMA binding. Dynamic PET imaging using [<sup>18</sup>F]DCFPyL demonstrated that target uptake reached a plateau by ∼1 h after radiotracer administration, with target/background ratios continuing to increase throughout the course of imaging, from a ratio of ∼4:1 at 45 min to ∼7:1 by 80 min. NIRF imaging likewise demonstrated delivery of YC-27 to the brain, with clear visualization of tracer in the brain at 24 h. Tissue uptake of both ligands was greatly diminished by ZJ-43 co-administration, establishing specificity of binding of each to GCPII/PSMA. On gross and histological examination, animals showed no evidence for hemorrhage or other deleterious consequences of MRgFUS. MRgFUS provided safe opening of the BBB to enable specific delivery of two hydrophilic agents to target tissues within the brain. This platform might facilitate imaging and therapy using a variety of agents that have heretofore been excluded from the CNS.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To demonstrate that MR-guided focused ultrasound can safely open the blood–brain barrier to enable delivery and specific targeting of hydrophilic GCPII/PSMA imaging agents to the brain.
Animal model / Human subject
Rat (strain None, age None, female)
Disease model
Healthy
MRI or image guidance method
MR-guided focused ultrasound (MRgFUS)
Cargo name and characteristics
[18F]DCFPyL — radiolabeled (18F) ureido-based small-molecule GCPII/PSMA ligand (hydrophilic PET tracer); YC-27 — near-infrared fluorescent ureido-based small-molecule GCPII/PSMA ligand (hydrophilic NIRF tracer); ZJ-43 — unlabeled ureido-based small-molecule GCPII/PSMA competitor (blocking agent)
Route of administration
intravenous
Outcomes and Safety
Summary of Outcomes
MRgFUS safely opened the BBB in rats to enable specific delivery and brain uptake of two hydrophilic GCPII/PSMA ligands ( [18F]DCFPyL showed target/background rising from ~4:1 at 45 min to ~7:1 by 80 min on PET; YC-27 was visualized by NIRF at 24 h), and ligand uptake was blocked by ZJ-43 with no hemorrhage or histological damage observed. The study did not report or compare multiple focused ultrasound parameter sets (no specific FUS parameters were provided).
Duration of biological effect
24 h
Safety-related matter
Gross and histological examination showed no evidence of hemorrhage or other deleterious consequences of MRgFUS, and the authors conclude MRgFUS provided safe opening of the blood–brain barrier for delivery of the agents.
Brain Region
Ultrasound Parameters
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency
single
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