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. 2013 Aug 19:3:204.
doi: 10.3389/fonc.2013.00204. eCollection 2013.

Ultrasonic enhancement of drug penetration in solid tumors

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Ultrasonic enhancement of drug penetration in solid tumors

Chun-Yen Lai et al. Front Oncol. .

Abstract

Increasing the penetration of drugs within solid tumors can be accomplished through multiple ultrasound-mediated mechanisms. The application of ultrasound can directly change the structure or physiology of tissues or can induce changes in a drug or vehicle in order to enhance delivery and efficacy. With each ultrasonic pulse, a fraction of the energy in the propagating wave is absorbed by tissue and results in local heating. When ultrasound is applied to achieve mild hyperthermia, the thermal effects are associated with an increase in perfusion or the release of a drug from a temperature-sensitive vehicle. Higher ultrasound intensities locally ablate tissue and result in increased drug accumulation surrounding the ablated region of interest. Further, the mechanical displacement induced by the ultrasound pulse can result in the nucleation, growth and collapse of gas bubbles. As a result of such cavitation, the permeability of a vessel wall or cell membrane can be increased. Finally, the radiation pressure of the propagating pulse can translate particles or tissues. In this perspective, we will review recent progress in ultrasound-mediated tumor delivery and the opportunities for clinical translation.

Keywords: enhanced drug delivery; sonoporation; tumor penetration; ultrasound; vascular permeability.

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References

    1. Wall PD, Fry WJ, Stephens R, Tucker D, Lettvin JY. Changes produced in the central nervous system by ultrasound. Science (1951) 114:686–710.1126/science.114.2974.686 - DOI - PubMed
    1. Fry WJ, Dunn F. Ultrasonic irradiation of the central nervous system at high sound levels. J Acoust Soc Am (1956) 28:129–3110.1121/1.1908200 - DOI
    1. Fry FJ, Ades HW, Fry WJ. Production of reversible changes in the central nervous system by ultrasound. Science (1958) 127:83–410.1126/science.127.3289.83 - DOI - PubMed
    1. Lynn JG, Zwemer RL, Chick AJ, Miller AE. A new method for the generation and use of focused ultrasound in experimental biology. J Gen Physiol (1942) 26:179–9310.1085/jgp.26.2.179 - DOI - PMC - PubMed
    1. Lynn J, Zwemer RL, Chick AJ. The biological application of focused ultrasound waves. Science (1942) 96:119–2010.1126/science.96.2483.119 - DOI - PubMed