Publication | Open Access
Indocyanine green‐enhanced multimodal photoacoustic microscopy and optical coherence tomography molecular imaging of choroidal neovascularization
14
Citations
49
References
2021
Year
EngineeringImaging AgentChoroidal NeovascularizationBiomedical EngineeringOptogeneticsTissue ImagingPhotoacoustic ImagingMultimodal Photoacoustic MicroscopyMolecular ImagingNovel Imaging MethodRadiologyHealth SciencesOphthalmologyVascular BiologyBiophotonicsContrast AgentBiomedical ImagingPam Molecular ImagingPhotoacoustic MicroscopyPam Contrast AgentOptical Coherence TomographyTomography
Photoacoustic microscopy (PAM) has great potential for visualization of the microvasculature with high spatial resolution and contrast. Early detection and differentiation of newly developed blood vessels named choroidal neovascularization (CNV) from normal vasculature remains a challenge in ophthalmology. Exogenous contrast agents can assist with improving PAM sensitivity, leading to differentiation of CNV. Here, an FDA-approved indocyanine green (ICG) was utilized as a PAM contrast agent. ICG was conjugated with RGD peptides, allowing the ICG to bind to the integrin expressed in CNV. Molecular PAM imaging showed that ICG-RGD can target CNV for up to 5 days post intravenous administration in living rabbits with a model of CNV. The PAM image sensitivity and image contrast were significantly enhanced by 15-fold at 24 h post-injection. Overall, the presented approach demonstrates the possibility of targeted ICG to be employed in PAM molecular imaging, allowing more precise evaluation of neovascularization.
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