| Literature DB >> 19079788 |
Hisataka Kobayashi1, Yoshinori Koyama, Tristan Barrett, Yukihiro Hama, Celeste A S Regino, In Soo Shin, Beom-Su Jang, Nhat Le, Chang H Paik, Peter L Choyke, Yasuteru Urano.
Abstract
Current contrast agents generally have one function and can only be imaged in monochrome; therefore, the majority of imaging methods can only impart uniparametric information. A single nanoparticle has the potential to be loaded with multiple payloads. Such multimodality probes have the ability to be imaged by more than one imaging technique, which could compensate for the weakness or even combine the advantages of each individual modality. Furthermore, optical imaging using different optical probes enables us to achieve multicolor in vivo imaging, wherein multiple parameters can be read from a single image. To allow differentiation of multiple optical signals in vivo, each probe should have a close but different near-infrared emission. To this end, we synthesized nanoprobes with multimodal and multicolor potential, which employed a polyamidoamine dendrimer platform linked to both radionuclides and optical probes, permitting dual-modality scintigraphic and five-color near-infrared optical lymphatic imaging using a multiple-excitation spectrally resolved fluorescence imaging technique.Entities:
Keywords: dendrimer; fluorescence imaging; lymphatic imaging; multiple colors; multiple modalities; near infrared; scintigraphy
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Year: 2007 PMID: 19079788 PMCID: PMC2600721 DOI: 10.1021/nn700062z
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881