Title of article :
Micelles and nanoparticles for ultrasonic drug and gene delivery
Author/Authors :
Husseini، نويسنده , , Ghaleb A. and Pitt، نويسنده , , William G.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Pages :
16
From page :
1137
To page :
1152
Abstract :
Drug delivery research employing micelles and nanoparticles has expanded in recent years. Of particular interest is the use of these nanovehicles that deliver high concentrations of cytotoxic drugs to diseased tissues selectively, thus reducing the agentʹs side effects on the rest of the body. Ultrasound, traditionally used in diagnostic medicine, is finding a place in drug delivery in connection with these nanoparticles. In addition to their non-invasive nature and the fact that they can be focused on targeted tissues, acoustic waves have been credited with releasing pharmacological agents from nanocarriers, as well as rendering cell membranes more permeable. In this article, we summarize new technologies that combine the use of nanoparticles with acoustic power both in drug and gene delivery. onic drug delivery from micelles usually employs polyether block copolymers and has been found effective in vivo for treating tumors. Ultrasound releases drug from micelles, most probably via shear stress and shock waves from the collapse of cavitation bubbles. Liquid emulsions and solid nanoparticles are used with ultrasound to deliver genes in vitro and in vivo. The small packaging allows nanoparticles to extravasate into tumor tissues. Ultrasonic drug and gene delivery from nanocarriers has tremendous potential because of the wide variety of drugs and genes that could be delivered to targeted tissues by fairly non-invasive means.
Keywords :
DRUG DELIVERY , Nanoemulsions , Liposomes , targeted delivery , Non-viral gene transfection , Ultrasound , Polymeric micelles , Thermo-responsive polymers , Solid nanoparticles
Journal title :
Advanced Drug Delivery Reviews
Serial Year :
2008
Journal title :
Advanced Drug Delivery Reviews
Record number :
1762402
Link To Document :
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