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Biology subjects

Littlewood, J.

Publications and source records attributed to Littlewood, J..

2 recordsLinked to original sources

Near infrared conjugated polymer nanoparticles (CPN) for tracking cells using fluorescence and optoacoustic imaging

Tracking the biodistribution of cell therapies is crucial for understanding their safety and efficacy. Optical imaging techniques are particularly useful for tracking cells due to their clinical translatability and potential for intra-operative use to validate cell delivery. However, there is a lack of appropriate optical probes for cell tracking. The only FDA-approved material for clinical use is indocyanine green (ICG). ICG can be used for both fluorescence and photoacoustic imaging, but is prone to photodegradation, and at higher concentrations, undergoes quenching and can adversely affect cell health. We have developed novel near-infrared imaging probes comprising conjugated polymer nanoparticles (CPNs) that can be fine-tuned to absorb and emit light at specific wavelengths. To compare the performance of the CPNs with ICG for in vivo cell tracking, labelled mesenchymal stromal cells (MSCs) were injected subcutaneously in mice and detected using fluorescence imaging (FI) and a form of photoacoustic imaging called multispectral optoacoustic tomography (MSOT). MSCs labelled with either ICG or CPN 770 could be detected with FI, but only CPN 770-labelled MSCs could be detected with MSOT. These results show that CPNs show great promise for tracking cells in vivo using optical imaging techniques, and for some applications, out-perform ICG.

bioengineering↗

Computed tomography lacks sensitivity to image gold labelled mesenchymal stromal cells in vivo as evidenced by multispectral optoacoustic tomography.

Elucidating the mechanisms of action and long-term safety of cell therapies is necessary for their clinical translation. Non-invasive imaging technologies such as bioluminescence imaging (BLI), computed tomography (CT) and multispectral optoacoustic tomography (MSOT) have been proposed as tools for longitudinal cell monitoring but their performances have not been compared. Here, we evaluate combinations of these modalities to track the in vivo distribution of gold-labelled mesenchymal stromal cells (MSCs). We found that injected MSCs labelled with gold nanoparticles and expressing the reporter gene firefly luciferase could be detected with BLI and MSOT but not CT. We conclude that the MSCs did not carry enough contrast agent to be tracked by CT, demonstrating that CT tracking of gold-labelled cells is not a practical approach as high amounts of gold, which might impair cell viability, are necessary.

cell biology↗