Explorations of high-intensity therapeutic ultrasound and microbubble-mediated gene delivery in mouse liver

被引:0
|
作者
S Song
Z Shen
L Chen
A A Brayman
C H Miao
机构
[1] Seattle Children's Research Institute,Department of Pediatrics
[2] University of Washington,undefined
[3] Applied Physics Laboratory,undefined
[4] Center for Industrial and Medical Ultrasound,undefined
[5] University of Washington,undefined
来源
Gene Therapy | 2011年 / 18卷
关键词
non-viral gene therapy; microbubble-enhanced ultrasound therapy; high-intensity therapeutic ultrasound; acoustic cavitation; naked DNA transfer;
D O I
暂无
中图分类号
学科分类号
摘要
Ultrasound (US) combined with microbubbles (MBs) is a promising technology for non-viral gene delivery. Significant enhancements of gene expression have been obtained in our previous studies. To optimize and prepare for application to larger animal models, the luciferase reporter gene transfer efficacy of lipid-based Definity MBs of various concentrations, pressure amplitudes and a novel unfocused high-intensity therapeutic US (HITU) system were explored. Luciferase expression exhibited a dependence on MB dose over the range of 0–25 vol%, and a strong dependence on acoustic peak negative pressure at over the range of 0–3.2 MPa. Gene expression reached an apparent plateau at MB concentration ⩾2.5 vol% or at negative pressures >1.8 MPa. Maximum gene expression in treated animals was 700-fold greater than in negative controls. Pulse train US exposure protocols produced an upward trend of gene expression with increasing quiescent time. The hyperbolic correlation of gene expression and transaminase levels suggested that an optimum gene delivery effect can be achieved by maximizing acoustic cavitation-induced enhancement of DNA uptake and minimizing unproductive tissue damage. This study validated the new HITU system equipped with an unfocused transducer with a larger footprint capable of scanning large tissue areas to effectively enhance gene transfer efficiencies.
引用
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页码:1006 / 1014
页数:8
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