4.7 Article

Near-infrared fluorescence imaging platform for quantifying in vivo nanoparticle diffusion from drug loaded implants

Journal

INTERNATIONAL JOURNAL OF NANOMEDICINE
Volume 11, Issue -, Pages -

Publisher

DOVE MEDICAL PRESS LTD
DOI: 10.2147/IJN.S93324

Keywords

optical imaging; fluorescence; drug delivery; brachytherapy; treatment monitoring

Funding

  1. Integrative Graduate Education and Research Traineeship Nanomedicine Science and Technology [NSF-DGE-0965843]
  2. Massachusetts Life Sciences Center New Investigator Award

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Drug loaded implants are a new, versatile technology platform to deliver a localized payload of drugs for various disease models. One example is the implantable nanoplatform for chemo-radiation therapy where inert brachytherapy spacers are replaced by spacers doped with nanoparticles (NPs) loaded with chemotherapeutics and placed directly at the disease site for long-term localized drug delivery. However, it is difficult to directly validate and optimize the diffusion of these doped NPs in in vivo systems. To better study this drug release and diffusion, we developed a custom macroscopic fluorescence imaging system to visualize and quantify fluorescent NP diffusion from spacers in vivo. To validate the platform, we studied the release of free fluorophores, and 30 nm and 200 nm NPs conjugated with the same fluorophores as a model drug, in agar gel phantoms in vitro and in mice in vivo. Our data verified that the diffusion volume was NP size-dependent in all cases. Our near-infrared imaging system provides a method by which NP diffusion from implantable nanoplatform for chemo-radiation therapy spacers can be systematically optimized (eg, particle size or charge) thereby improving treatment efficacy of the platform.

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