Spatiotemporal intracellular nitric oxide signaling captured using internalized, near-infrared fluorescent carbon nanotube nanosensors

ZW Ulissi, F Sen, X Gong, S Sen, N Iverson… - Nano …, 2014 - ACS Publications
ZW Ulissi, F Sen, X Gong, S Sen, N Iverson, AA Boghossian, LC Godoy, GN Wogan…
Nano letters, 2014ACS Publications
Fluorescent nanosensor probes have suffered from limited molecular recognition and a
dearth of strategies for spatial-temporal operation in cell culture. In this work, we spatially
imaged the dynamics of nitric oxide (NO) signaling, important in numerous pathologies and
physiological functions, using intracellular near-infrared fluorescent single-walled carbon
nanotubes. The observed spatial-temporal NO signaling gradients clarify and refine the
existing paradigm of NO signaling based on averaged local concentrations. This work …
Fluorescent nanosensor probes have suffered from limited molecular recognition and a dearth of strategies for spatial-temporal operation in cell culture. In this work, we spatially imaged the dynamics of nitric oxide (NO) signaling, important in numerous pathologies and physiological functions, using intracellular near-infrared fluorescent single-walled carbon nanotubes. The observed spatial-temporal NO signaling gradients clarify and refine the existing paradigm of NO signaling based on averaged local concentrations. This work enables the study of transient intracellular phenomena associated with signaling and therapeutics.
ACS Publications
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