Pharmacodynamic analysis of magnetic resonance imaging-monitored focused ultrasound-induced blood-brain barrier opening for drug delivery to brain tumors.
Authors: Chu PC, Chai WY, Hsieh HY, Wang JJ, Wey SP, Huang CY, Wei KC, Liu HL
Microbubble-enhanced focused ultrasound (FUS) can enhance the delivery of therapeutic agents into the brain for brain tumor treatment. The purpose of this study was to investigate the influence of brain tumor conditions on the distribution and dynamics of small molecule leakage into targeted regions of the brain after FUS-BBB opening. A total of 34 animals were used, and the process was monitored by 7T-MRI. Evans blue (EB) dye as well as Gd-DTPA served as small molecule substitutes for evaluation of drug behavior. EB was quantified spectrophotometrically. Spin-spin (R1) relaxometry and area under curve (AUC) were measured by MRI to quantify Gd-DTPA. We found that FUS-BBB opening provided a more significant increase in permeability with small tumors. In contrast, accumulation was much higher in large tumors, independent of FUS. The AUC values of Gd-DTPA were well correlated with EB delivery, suggesting that Gd-DTPA was a good indicator of total small-molecule accumulation in the target region. The peripheral regions of large tumors exhibited similar dynamics of small-molecule leakage after FUS-BBB opening as small tumors, suggesting that FUS-BBB opening may have the most significant permeability-enhancing effect on tumor peripheral. This study provides useful information toward designing an optimized FUS-BBB opening strategy to deliver small-molecule therapeutic agents into brain tumors.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To investigate how brain tumor conditions affect the distribution and dynamics of small-molecule leakage into targeted brain regions following microbubble-enhanced focused ultrasound (FUS) blood–brain barrier opening.
Animal model / Human subject
rats, not specified, not specified, not specified
Disease model
brain tumor
MRI or image guidance method
7T-MRI
Targeted brain region(s)
Tumor
Outcomes and Safety
Summary of Outcomes
Microbubble-enhanced FUS-BBB opening increased small-molecule permeability most in small tumors and in the peripheral regions of large tumors (overall accumulation was higher in large tumors independent of FUS), and Gd-DTPA AUC correlated with Evans blue delivery; no distinct FUS parameter variations were reported.
Safety-related matter
No safety issues or adverse effects are reported or discussed in the provided text; the study focuses on permeability and small-molecule accumulation without mention of tissue damage, hemorrhage, neurological deficits, or mortality.
Brain Region
Ultrasound Parameters
Ultrasound instrument
focused ultrasound transducer
Treatment frequency
single
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