In vivo quantitative imaging of tumor pH by nanosonophore assisted multispectral photoacoustic imaging

被引:0
作者
Janggun Jo
Chang H. Lee
Raoul Kopelman
Xueding Wang
机构
[1] University of Michigan,Department of Biomedical Engineering
[2] University of Michigan,Department of Chemistry
[3] University of Michigan Medical School,Department of Radiology
来源
Nature Communications | / 8卷
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摘要
Changes of physiological pH are correlated with several pathologies, therefore the development of more effective medical pH imaging methods is of paramount importance. Here, we report on an in vivo pH mapping nanotechnology. This subsurface chemical imaging is based on tumor-targeted, pH sensing nanoprobes and multi-wavelength photoacoustic imaging (PAI). The nanotechnology consists of an optical pH indicator, SNARF-5F, 5-(and-6)-Carboxylic Acid, encapsulated into polyacrylamide nanoparticles with surface modification for tumor targeting. Facilitated by multi-wavelength PAI plus a spectral unmixing technique, the accuracy of pH measurement inside the biological environment is not susceptible to the background optical absorption of biomolecules, i.e., hemoglobins. As a result, both the pH levels and the hemodynamic properties across the entire tumor can be quantitatively evaluated with high sensitivity and high spatial resolution in in vivo cancer models. The imaging technology reported here holds the potential for both research on and clinical management of a variety of cancers.
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