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Published on: December 15, 2010
Cellulose Nanoparticles are a Biodegradable Photoacoustic Contrast Agent for Use in Living Mice
Jesse V Jokerst1, Dominique Van de Sompel1, Sarah E Bohndiek1
1Molecular Imaging Program at Stanford (MIPS), Department of Radiology, 318 Campus Drive, Stanford University Stanford, CA 94305-5427, .
Abstract:
Molecular imaging with photoacoustic ultrasound is an emerging field that combines the spatial and temporal resolution of ultrasound with the contrast of optical imaging. However, there are few imaging agents that offer both high signal intensity and biodegradation into small molecules. Here we describe a cellulose-based nanoparticle with peak photoacoustic signal at 700 nm and an in vitro limit of detection of 6 pM (0.02 mg/mL). Doses down to 0.35 nM (1.2 mg/mL) were used to image mouse models of ovarian cancer. Most importantly, the nanoparticles were shown to biodegrade in the presence of cellulase both through a glucose assay and electron microscopy.

