bioRxiv · 10.1101/449546
A genetically encoded fluorescent sensor for rapid and specific in vivo detection ofnorepinephrine
Abstract
Norepinephrine (NE) and epinephrine (Epi), two key biogenic monoamine neurotransmitters, are involved in a wide range of physiological processes. However, their precise dynamics and regulation remain poorly characterized, in part due to limitations of available techniques for measuring these molecules in vivo. Here, we developed a family of GPCR Activation-Based NE/Epi (GRABNE) sensors with a 230% peak {Delta}F/F0 response to NE, good photostability, nanomolar-to-micromolar sensitivities, sub-second rapid kinetics, high specificity to NE vs. dopamine. Viral- or transgenic- mediated expression of GRABNE sensors were able to detect electrical-stimulation evoked NE release in the locus coeruleus (LC) of mouse brain slices, looming-evoked NE release in the midbrain of live zebrafish, as well as optogenetically and behaviorally triggered NE release in the LC and hypothalamus of freely moving mice. Thus, GRABNE sensors are a robust tool for rapid and specific monitoring of in vivo NE/Epi transmission in both physiological and pathological processes.
Source connections
Explore related subjects
Keep this discovery
Feng, J., Zhang, C., Lischinsky, J., Jing, M., Zhou, J., Wang, H., Zhang, Y., Dong, A., Wu, Z., Wu, H., Chen, W., Zhang, P., Zou, J., Hires, A., Zhu, J., Cui, G., Lin, D., Du, J., Li, Y.. 2018-10-23. A genetically encoded fluorescent sensor for rapid and specific in vivo detection ofnorepinephrine. https://doi.org/10.1101/449546
Cite the original work for its findings. Save a collection to share your selection of sources.