Multiparametric super-resolution optoacoustic imaging with ICG-tagged microbubbles
Daniil Nozdriukhin, Eva Remlova, Lin Tang, Shuxin Lyu, Gabriella Egri, Ana Torres, Anxo Vidal, Lars Dähne, Daniel Razansky, Xosé Luís Deán-Ben

TL;DR
A new imaging method using ICG-coated microbubbles enables detailed, non-toxic visualization of blood vessels in the mouse brain.
Contribution
Development of ICG-coated microbubbles for safe and effective super-resolution optoacoustic imaging in vivo.
Findings
ICG-coated microbubbles allow per-particle detection in optoacoustic imaging despite blood absorption.
LOT imaging of the murine brain was successfully performed without acute toxicity.
The formulation uses clinically approved materials, aiding potential clinical translation of LOT.
Abstract
Localization optoacoustic tomography (LOT) has recently emerged as an adept imaging approach for super-resolution functional microangiography at depths out of reach for conventional optical microscopy methods. LOT enables simultaneous measurements of microvascular morphology, oxygen saturation, and blood flow velocity via rapid tracking of highly-absorbing microparticulate agents. These distinctive multiparametric imaging capabilities present a remarkable clinical diagnostic potential for a wide spectrum of conditions associated with microcirculatory alterations. However, wider adoption of LOT is impeded by the lack of contrast materials verified for safe intravenous administration in humans. In this work, we developed a new formulation of polyvinyl alcohol (PVA) microbubbles coated in a layer-by-layer fashion with a sufficiently large amount of indocyanine green (ICG) molecules to…
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Taxonomy
TopicsPhotoacoustic and Ultrasonic Imaging · Thermography and Photoacoustic Techniques · Nanoplatforms for cancer theranostics
