| Literature DB >> 21750761 |
Carolyn L Bayer, Yun-Sheng Chen, Seungsoo Kim, Srivalleesha Mallidi, Konstantin Sokolov, Stanislav Emelianov.
Abstract
The establishment of multiplex photoacoustic molecular imaging to characterize heterogeneous tissues requires the use of a tunable, thermally stable contrast agent targeted to specific cell types. We have developed a multiplex photoacoustic imaging technique which uses targeted silica-coated gold nanorods to distinguish cell inclusions in vitro. This paper describes the use of tunable targeted silica-coated gold nanorods (SiO(2)-AuNRs) as contrast agents for photoacoustic molecular imaging. SiO(2)-AuNRs with peak absorption wavelengths of 780 nm and 830 nm were targeted to cells expressing different cell receptors. Cells were incubated with the targeted SiO(2)-AuNRs, incorporated in a tissue phantom, and imaged using multiwavelength photoacoustic imaging. We used photoacoustic imaging and statistical correlation analysis to distinguish between the unique cell inclusions within the tissue phantom.Entities:
Keywords: (110.5125) Photoacoustics; (160.1050) Acousto-optical materials; (160.4236); (170.0110) Imaging systems; (170.5120) Photoacoustic imaging; (170.6935) Tissue characterization
Year: 2011 PMID: 21750761 PMCID: PMC3130570 DOI: 10.1364/BOE.2.001828
Source DB: PubMed Journal: Biomed Opt Express ISSN: 2156-7085 Impact factor: 3.732
Fig. 1Custom-built system used to acquire combined US and PA images of cell phantom.
Fig. 2Characterization of multiplex SiO2-AuNRs. TEM images showing the size of the as-synthesized SiO2-AuNRs (prior to bioconjugation) with peak optical absorbances of 780 nm (a) and 830 nm (b). UV-Vis spectra showing the peak optical absorption of the targeted SiO2-AuNRs are shown in (c) and (d).
Fig. 3Optical microscopy images demonstrating enhanced uptake of targeted silica-coated gold nanorods (SiO2-AuNRs). a) SiO2-AuNRs targeted to the EGFR receptor are uptaken in greater amounts in A431 cells in comparison to b) non-targeted SiO2-AuNRs with an identical aspect ratio. Likewise, d) SiO2-AuNRs targeted to the EGFR show increased uptake in A431 cells in comparison to e) non-targeted SiO2-AuNRs. Cells which have not been exposed to SiO2-AuNRs are shown in panel c) and panel f) as controls. Images obtained using a 20 × objective (0.5 NA) and Leica 6000 DM microscope.
Fig. 4Signal processing and statistical analysis of the PA images acquired from the cell phantoms demonstrates the unique identification of the cell inclusions. a) The inclusions can be seen in the ultrasound image. b) The PA image, acquired at 830 nm, indicates which inclusions contain SiO2-AuNRs. c) Comparison of PA signal intensity (points) and UV-VIS spectra (solid lines) demonstrates that the SiO2-AuNRs optical absorption spectra determine the PA signal intensity. Inclusions were segmented into three areas and the PA signal intensity was averaged; error bars represent one standard deviation (n = 3). d) Molecular map of cells and US overlay; 830 nm SiO2-AuNRs are shown in red, 780 nm SiO2-AuNRs are shown in yellow (ICC > 0.75). FOV = 3.5 mm x 53 mm, US image dynamic range = 35 dB, PA image dynamic range = 10 dB.