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Multispectral Photoacoustic Imaging of Tumor Protease Activity with a Gold Nanocage-Based Activatable Probe.
Liu, Cheng; Li, Shiying; Gu, Yanjuan; Xiong, Huahua; Wong, Wing-Tak; Sun, Lei.
Affiliation
  • Liu C; Department of Biomedical Engineering, The Hong Kong Polytechnic University, Hong Kong SAR, People's Republic of China.
  • Li S; Department of Biomedical Engineering, The Hong Kong Polytechnic University, Hong Kong SAR, People's Republic of China.
  • Gu Y; Department of Applied Biology and Chemical Technology, The Hong Kong Polytechnic University, Hong Kong SAR, People's Republic of China.
  • Xiong H; Department of Ultrasound, The Second People's Hospital of Shenzhen, Shenzhen, People's Republic of China.
  • Wong WT; Department of Applied Biology and Chemical Technology, The Hong Kong Polytechnic University, Hong Kong SAR, People's Republic of China.
  • Sun L; Department of Biomedical Engineering, The Hong Kong Polytechnic University, Hong Kong SAR, People's Republic of China. lei.sun@polyu.edu.hk.
Mol Imaging Biol ; 20(6): 919-929, 2018 12.
Article de En | MEDLINE | ID: mdl-29736563
PURPOSE: Tumor proteases have been recognized as significant regulators in the tumor microenvironment, but the current strategies for in vivo protease imaging have tended to focus on the development of a probe design rather than the investigation of a novel imaging strategy by leveraging the imaging technique and probe. Herein, it is the first report to investigate the ability of multispectral photoacoustic imaging (PAI) to estimate the distribution of protease cleavage sites inside living tumor tissue by using an activatable photoacoustic (PA) probe. PROCEDURES: The protease MMP-2 is selected as the target. In this probe, gold nanocages (GNCs) with an absorption peak at ~ 800 nm and fluorescent dye molecules with an absorption peak at ~ 680 nm are conjugated via a specific enzymatic peptide substrate. Upon enzymatic activation by MMP-2, the peptide substrate is cleaved and the chromophores are released. Due to the different retention speeds of large GNCs and small dye molecules, the probe alters its intrinsic absorption profile and produces a distinct change in the PA signal. A multispectral PAI technique that can distinguish different chromophores based on intrinsic PA spectral signatures is applied to estimate the signal composition changes and indicate the cleavage interaction sites. Finally, the multispectral PAI technique with the activatable probe is tested in solution, cultured cells, and a subcutaneous tumor model in vivo. RESULTS: Our experiment in solution with enzyme ± inhibitor, cell culture ± inhibitor, and in vivo tumor model with administration of the developed probe ± inhibitor demonstrated the probe was cleaved by the targeted enzyme. Particularly, the in vivo estimation of the cleavage site distribution was validated with the result of ex vivo immunohistochemistry analysis. CONCLUSIONS: This novel synergy of the multispectral PAI technique and the activatable probe is a potential strategy for the distribution estimation of tumor protease activity in vivo.
Sujet(s)
Mots clés

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Peptide hydrolases / Sondes moléculaires / Imagerie moléculaire / Techniques photoacoustiques / Or / Tumeurs Type d'étude: Prognostic_studies Limites: Animals / Humans Langue: En Journal: Mol Imaging Biol Sujet du journal: BIOLOGIA MOLECULAR / DIAGNOSTICO POR IMAGEM Année: 2018 Type de document: Article Pays de publication: États-Unis d'Amérique

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Peptide hydrolases / Sondes moléculaires / Imagerie moléculaire / Techniques photoacoustiques / Or / Tumeurs Type d'étude: Prognostic_studies Limites: Animals / Humans Langue: En Journal: Mol Imaging Biol Sujet du journal: BIOLOGIA MOLECULAR / DIAGNOSTICO POR IMAGEM Année: 2018 Type de document: Article Pays de publication: États-Unis d'Amérique