4.7 Review

An overview of nanoparticle assisted laser therapy

Journal

INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER
Volume 67, Issue -, Pages 469-486

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ijheatmasstransfer.2013.08.018

Keywords

Plasmonic; Polymers; Carbon nanotubes; Nanoparticles; Photothermal therapy

Funding

  1. NSF [HRD-0450363]
  2. John and Ann Doerr Fund for Computational Biomedicine

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Interest in minimally invasive and localized treatments for cancer has led toward a dramatic increase in the development of novel nanomaterials as light absorbing agents. The application of nanoparticles as exogenous agents in laser therapy or photothermal therapy (PIT) is rapidly expanding to include nanostructures of various composition and geometries. The particles enhance the magnitude of light absorption resulting in a more precise delivery of energy at lower laser powers and prevent damage to nearby healthy tissue. To date, preclinical and clinical studies of plasmonic photothermal therapy (PPTT) with gold metal nanoparticles have been extensively studied and recently PTT of magnetoplasmonic nanoparticles, carbon nanomaterials, and nano-polymers have shown success in treatment of subcutaneous tumors. In addition, numerical investigations serve as a subsidiary tool for experimental explorations of nanoparticle assisted laser therapy. Since PIT can only be delivered to subcutaneous regions, the introduction of phantom numerical models in nanoparticle assisted laser-induced interstitial thermotherapy (LITT) has shown potential in delivering efficient ablative energy doses to deep-seated tumors. The following review provides experimental and mathematical models that concern metal, inorganic, and polymer nanoparticle assisted laser therapy. (C) 2013 Elsevier Ltd. All rights reserved.

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