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Immunotargeted Nanoshells for Integrated Cancer Imaging and Therapy

Nano Letters · 2005 · Vol. 5(4) · pp. 709–711
Christopher LooAmanda LoweryNaomi J. HalasJennifer L. WestRebekah A. Drezek

Abstract

Nanoshells are a novel class of optically tunable nanoparticles that consist of a dielectric core surrounded by a thin gold shell. Based on the relative dimensions of the shell thickness and core radius, nanoshells may be designed to scatter and/or absorb light over a broad spectral range including the near-infrared (NIR), a wavelength region that provides maximal penetration of light through tissue. The ability to control both wavelength-dependent scattering and absorption of nanoshells offers the opportunity to design nanoshells which provide, in a single nanoparticle, both diagnostic and therapeutic capabilities. Here, we demonstrate a novel nanoshell-based all-optical platform technology for integrating cancer imaging and therapy applications. Immunotargeted nanoshells are engineered to both scatter light in the NIR enabling optical molecular cancer imaging and to absorb light, allowing selective destruction of targeted carcinoma cells through photothermal therapy. In a proof of principle experiment, dual imaging/therapy immunotargeted nanoshells are used to detect and destroy breast carcinoma cells that overexpress HER2, a clinically relevant cancer biomarker.

Gold and Silver Nanoparticles Synthesis and ApplicationsNanoplatforms for cancer theranosticsNanoparticle-Based Drug DeliveryNanoshellPhotothermal therapyMaterials scienceNanotechnologyNanoparticleAbsorption (acoustics)Optoelectronics

MeSH terms

Breast NeoplasmsCarcinomaFemaleHumansHyperthermia, InducedMicroscopy, FluorescencePhototherapyTumor Cells, CulturedBiomarkers, TumorReceptor, ErbB-2Erb-b2 Receptor Tyrosine KinasesSpectroscopy, Near-InfraredNanostructures
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References
A clearer vision for in vivo imaging
Nature Biotechnology · 2001 · 3,754 citations
Controlled growth of monodisperse silica spheres in the micron size range
Journal of Colloid and Interface Science · 1968 · 14,257 citations
Nanoengineering of optical resonances
Chemical Physics Letters · 1998 · 2,242 citations
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