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Intraparenchymal ultrasound application and improved distribution of infusate with convection-enhanced delivery in rodent and nonhuman primate brain.

Authors: Mano Y, Saito R, Haga Y, Matsunaga T, Zhang R, Chonan M, Haryu S, Shoji T, Sato A, Sonoda Y, Tsuruoka N, Nishiyachi K, Sumiyoshi A, Nonaka H, Kawashima R, Tominaga T

OBJECT Convection-enhanced delivery (CED) is an effective drug delivery method that delivers high concentrations of drugs directly into the targeted lesion beyond the blood-brain barrier. However, the drug distribution attained using CED has not satisfactorily covered the entire targeted lesion in tumors such as glioma. Recently, the efficacy of ultrasound assistance was reported for various drug delivery applications. The authors developed a new ultrasound-facilitated drug delivery (UFD) system that enables the application of ultrasound at the infusion site. The purpose of this study was to demonstrate the efficacy of the UFD system and to examine effective ultrasound profiles. METHODS The authors fabricated a steel bar-based device that generates ultrasound and enables infusion of the aqueous drug from one end of the bar. The volume of distribution (Vd) after infusion of 10 ml of 2% Evans blue dye (EBD) into rodent brain was tested with different frequencies and applied voltages: 252 kHz/30 V; 252 kHz/60 V; 524 kHz/13 V; 524 kHz/30 V; and 524 kHz/60 V. In addition, infusion of 5 mM gadopentetate dimeglumine (Gd-DTPA) was tested with 260 kHz/60 V, the distribution of which was evaluated using a 7-T MRI unit. In a nonhuman primate (Macaca fascicularis) study, 300 μl of 1 mM Gd-DTPA/EBD was infused. The final distribution was evaluated using MRI. Two-sample comparisons were made by Student t-test, and 1-way ANOVA was used for multiple comparisons. Significance was set at p < 0.05. RESULTS After infusion of 10 μl of EBD into the rat brain using the UFD system, the Vds of EBD in the UFD groups were significantly larger than those of the control group. When a frequency of 252 kHz was applied, the Vd of the group in which 60 V was applied was significantly larger than that of the group in which 30 V was used. When a frequency of 524 kHz was applied, the Vd tended to increase with application of a higher voltage; however, the differences were not significant (1-way ANOVA). The Vd of Gd-DTPA was also significantly larger in the UFD group than in the control group (p < 0.05, Student t-test). The volume of Gd-DTPA in the nonhuman primate used in this study was 1209.8 ± 193.6 mm(3). This volume was much larger than that achieved by conventional CED (568.6 ± 141.0 mm(3)). CONCLUSIONS The UFD system facilitated the distribution of EBD and Gd-DTPA more effectively than conventional CED. Lower frequency and higher applied voltage using resonance frequencies might be more effective to enlarge the Vd. The UFD system may provide a new treatment approach for CNS disorders.

Introduction

Purpose Drug delivery WITHOUT BBB opening
Study Objective To evaluate whether intraparenchymal ultrasound can improve distribution of infusate delivered by convection-enhanced delivery in rodent and nonhuman primate brains.
Animal model / Human subject Rodent (species/strain not specified; age not specified; sex not specified) and nonhuman primate (species/strain not specified; age not specified; sex not specified)
Disease model Healthy
MRI or image guidance method 7-T MRI
Targeted brain region(s) Brain Parenchyma
Cargo name and characteristics Evans blue dye (EBD); gadopentetate dimeglumine (Gd-DTPA)
Route of administration Intraparenchymal (convection-enhanced delivery)

Outcomes and Safety

Summary of Outcomes Ultrasound-facilitated convection-enhanced delivery increased infusate distribution in rodent and nonhuman primate brains, with greater enhancement observed at lower frequencies and higher voltages.
Safety-related matter No safety reported

Brain Region

Ultrasound Parameters

Ultrasound instrument Steel bar-based ultrasound-facilitated drug delivery (UFD) device
FUS Frequency 252 kHz; 524 kHz; 260 kHz
Focal Characteristics Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency single session

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