Photoacoustic (optoacoustic) imaging can extract molecular information with deeper tissue penetration than possible by fluorescence microscopy techniques. However, there is currently still a lack of robust genetically controlled contrast agents and molecular sensors that can dynamically detect biological analytes of interest with photoacoustics. In a biomimetic approach, we took inspiration from cuttlefish who can change their color by relocalizing pigment-filled organelles in so-called chromatophore cells under neurohumoral control. Analogously, we tested the use of melanophore cells from Xenopus laevis, containing compartments (melanosomes) filled with strongly absorbing melanin, as whole-cell sensors for optoacoustic imaging. Our results...
In addition to offering morphological visualizations via capture of the spatial distributions of opt...
Advances in genetic engineering have enabled the use of bacterial outer membrane vesicles (OMVs) to ...
Many animals such as fish and frogs have developed the ability to change colour of their skin to ada...
Photoacoustic (optoacoustic) imaging can extract molecular information with deeper tissue penetratio...
Photoacoustic imaging allows absorption-based high-resolution spectroscopic in vivo imaging at a dep...
Organelle transport studies are often performed using melanophores from lower vertebrates due to the...
Photoacoustic imaging provides high-resolution images at depths beyond the optical diffusion limit. ...
A photoacoustic imaging scheme that uses genetically altered cells that express an absorbing pigment...
Photocontrollable proteins revolutionized life-science imaging due to their contribution to subdiffr...
Photoacoustic tomography (PAT) of genetically encoded probes allows for imaging of targeted biologic...
Photoacoustic imaging has been shown to provide high-resolution images of genetically labelled cells...
Small animal models, such as zebrafish, drosophila, C. elegan, is considered to be important models ...
Unveiling mechanisms driving specification, recruitment and regeneration of melanophores is key in u...
Reversibly photo-switchable proteins are essential for many super-resolution fluorescence microscopi...
Fluorescence proteins (FP) have become essential reporter molecules for studying life at the cellula...
In addition to offering morphological visualizations via capture of the spatial distributions of opt...
Advances in genetic engineering have enabled the use of bacterial outer membrane vesicles (OMVs) to ...
Many animals such as fish and frogs have developed the ability to change colour of their skin to ada...
Photoacoustic (optoacoustic) imaging can extract molecular information with deeper tissue penetratio...
Photoacoustic imaging allows absorption-based high-resolution spectroscopic in vivo imaging at a dep...
Organelle transport studies are often performed using melanophores from lower vertebrates due to the...
Photoacoustic imaging provides high-resolution images at depths beyond the optical diffusion limit. ...
A photoacoustic imaging scheme that uses genetically altered cells that express an absorbing pigment...
Photocontrollable proteins revolutionized life-science imaging due to their contribution to subdiffr...
Photoacoustic tomography (PAT) of genetically encoded probes allows for imaging of targeted biologic...
Photoacoustic imaging has been shown to provide high-resolution images of genetically labelled cells...
Small animal models, such as zebrafish, drosophila, C. elegan, is considered to be important models ...
Unveiling mechanisms driving specification, recruitment and regeneration of melanophores is key in u...
Reversibly photo-switchable proteins are essential for many super-resolution fluorescence microscopi...
Fluorescence proteins (FP) have become essential reporter molecules for studying life at the cellula...
In addition to offering morphological visualizations via capture of the spatial distributions of opt...
Advances in genetic engineering have enabled the use of bacterial outer membrane vesicles (OMVs) to ...
Many animals such as fish and frogs have developed the ability to change colour of their skin to ada...