© 2016, Nature Publishing Group. All rights reserved. We have developed an X-ray absorption near edge structure spectroscopy method using fluorescence detection for visualizing in vivo coordination environments of metals in biological specimens. This approach, which we term fluorescence imaging XANES (φXANES), allows us to spatially depict metal-protein associations in a native, hydrated state whilst avoiding intrinsic chemical damage from radiation. This method was validated using iron-challenged Caenorhabditis elegans to observe marked alterations in redox environment
International audienceIdentification of chemical species at a subcellular level is a key to understa...
International audienceIdentification of chemical species at a subcellular level is a key to understa...
L-edge spectroscopy of 3d transition metals provides important electronic structure information and ...
We have developed an X-ray absorption near edge structure spectroscopy method using fluorescence det...
© 2016 The Royal Society of Chemistry. Here, we present a sub-μm multimodal approach to image essent...
Trace elements, in particular metals, play a significant role in most known life forms. It is estima...
It is estimated that 1/4 to 1/2 of all proteins contain metals, which may be used to carry out enzym...
The last several years have witnessed a tremendous increase in biological applications using X-ray a...
Information concerning the chemical state of trace elements in biological systems generally has not ...
Identifying the zinc (Zn) ligation and coordination environment in complex biological and environmen...
Metals and metalloids play fundamental roles in many physiological processes in biological systems, ...
X-ray absorption spectroscopy (XAS) has emerged as one of the premier tools for investigating the st...
X-ray absorption spectroscopy (XAS) has emerged as one of the premier tools for investigating the st...
X-ray absorption spectroscopy (XAS) has emerged as one of the premier tools for investigating the st...
The use of synchrotron-based experimental techniques has gained increasing recognition, as they are ...
International audienceIdentification of chemical species at a subcellular level is a key to understa...
International audienceIdentification of chemical species at a subcellular level is a key to understa...
L-edge spectroscopy of 3d transition metals provides important electronic structure information and ...
We have developed an X-ray absorption near edge structure spectroscopy method using fluorescence det...
© 2016 The Royal Society of Chemistry. Here, we present a sub-μm multimodal approach to image essent...
Trace elements, in particular metals, play a significant role in most known life forms. It is estima...
It is estimated that 1/4 to 1/2 of all proteins contain metals, which may be used to carry out enzym...
The last several years have witnessed a tremendous increase in biological applications using X-ray a...
Information concerning the chemical state of trace elements in biological systems generally has not ...
Identifying the zinc (Zn) ligation and coordination environment in complex biological and environmen...
Metals and metalloids play fundamental roles in many physiological processes in biological systems, ...
X-ray absorption spectroscopy (XAS) has emerged as one of the premier tools for investigating the st...
X-ray absorption spectroscopy (XAS) has emerged as one of the premier tools for investigating the st...
X-ray absorption spectroscopy (XAS) has emerged as one of the premier tools for investigating the st...
The use of synchrotron-based experimental techniques has gained increasing recognition, as they are ...
International audienceIdentification of chemical species at a subcellular level is a key to understa...
International audienceIdentification of chemical species at a subcellular level is a key to understa...
L-edge spectroscopy of 3d transition metals provides important electronic structure information and ...