| Literature DB >> 21339883 |
Min Qu, Srivalleesha Mallidi, Mohammad Mehrmohammadi, Ryan Truby, Kimberly Homan, Pratixa Joshi, Yun-Sheng Chen, Konstantin Sokolov, Stanislav Emelianov.
Abstract
Magneto-photo-acoustic imaging, a technique based on the synergy of magneto-motive ultrasound, photoacoustic and ultrasound imaging, is introduced. Hybrid nanoconstructs, liposomes encapsulating gold nanorods and iron oxide nanoparticles, were used as a dual-contrast agent for magneto-photo-acoustic imaging. Tissue-mimicking phantom and macrophage cells embedded in ex vivo porcine tissue were used to demonstrate that magneto-photo-acoustic imaging is capable of visualizing the location of cells or tissues labeled with dual-contrast nanoparticles with sufficient contrast, excellent contrast resolution and high spatial resolution in the context of the anatomical structure of the surrounding tissues. Therefore, magneto-photo-acoustic imaging is capable of identifying the nanoparticle-labeled pathological regions from the normal tissue, providing a promising platform to noninvasively diagnose and characterize pathologies.Entities:
Keywords: (110.7170) Ultrasound; (170.3880) Medical and biological imaging; (170.5120) Photoacoustic imaging; (170.6960) Tomography
Year: 2011 PMID: 21339883 PMCID: PMC3038453 DOI: 10.1364/BOE.2.000386
Source DB: PubMed Journal: Biomed Opt Express ISSN: 2156-7085 Impact factor: 3.732
Fig. 1Schematic diagram for preparation of liposomes encapsulating gold nanorods (Au NRs) and iron oxide nanoparticles (Fe3O4 NPs).
Fig. 2(a) The TEM image of liposomes encapsulating Au NRs and Fe3O4 NPs. (b) The extinction spectra of liposomal nanoparticles (solid line) and PBS solution (dashed line) containing Au NRs and Fe3O4 NPs.
Fig. 3Darkfield images of (a) native macrophages and (b) macrophages labeled with Au NRs and Fe3O4 NPs. (c) The extinction spectra of native cells (dashed line) and cells (solid line) labeled with Au NRs and Fe3O4 NPs.
Fig. 4A block diagram for the magneto-photo-acoustic (MPA) imaging system.
Fig. 5(a) The ultrasound (US) image of the tissue-mimicking phantom with six inclusions. The background of the phantom was prepared by mixing gelatin with optical contrast agent to represent the endogenous chromophores in native tissue. The inclusions were prepared by mixing gelatin with different types of contrast agents at different concentrations. The first inclusion contained gelatin only and was used as a control (inclusion I). Other inclusions contained 0.70 mg/mL Au NRs (inclusion II), 0.60 mg/mL Fe3O4 NPs (inclusion III), high concentration (0.70 mg/mL Au and 0.60 mg/mL Fe3O4) of dual-contrast liposomal nanoparticles (inclusion IV), and low concentration (0.47 mg/mL Au and 0.40 mg/mL Fe3O4) of dual-contrast liposomal nanoparticles (inclusion V). Inclusion VI consists of two regions, which were equivalent to inclusions IV (left region) and V (right region) placed together and interconnected. (b) The magnitude of the averaged photoacoustic (PA) signal from each marked region in Fig. 5(a), and the PA image of the tissue-mimicking phantom. (c) The magneto-motive displacement of each marked region and the magneto-motive ultrasound (MMUS) image of the phantom. (f) Magneto-photo-acoustic (MPA) image of the tissue-mimicking phantom. Each image covers area measuring 7.7 mm axially and 56 mm laterally.
Fig. 6(a) US image, (b) PA image, (c) MMUS image and (d) MPA image of ex vivo tissue sample injected with macrophage labeled with Au NRs and Fe3O4 NPs. The images cover area measuring 5.4 mm axially by 4.5 mm laterally.