bioRxiv · 10.1101/2021.09.10.459853
Probing neuropeptide volume transmission in vivo by a novel all-optical approach
Abstract
Neuropeptides are essential signaling molecules in the nervous system involved in modulating neural circuits and behavior. Although hypothesized to signal via volume transmission through G-protein coupled receptors (GPCR), remarkably little is known about their extrasynaptic diffusion. Here, we developed an all-optical approach to probe neuropeptide volume transmission in mouse neocortex. To control neuropeptide release, we engineered photosensitive nanovesicles with somatostatin-14 (SST) that is released with near-infrared light stimulation. To detect SST, we created a new cell-based neurotransmitter fluorescent engineered reporter (CNiFER) using the SST2 GPCR. Under two-photon imaging, we determined the time to activate SST2R at defined distances as well as the maximal distance and loss rate for SST volume transmission in neocortex. Importantly, we determined that SST transmission is significantly faster in neocortex with a chemically degraded extracellular matrix, a diseased condition indicated in neuroinflammation and Parkinsons disease. These new neurotechnologies can reveal important biological signaling processes previously not possible, and provide new opportunities to investigate volume transmission in the brain.
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Xiong, H., Lacin, E., Ouyang, H., Naik, A., Xu, X., Xie, C., Youn, J., Kumar, K., Kern, T., Aisenberg, E., Kircher, D., Li, X., Zasadzinski, J. A., Mateo, C., Kleinfeld, D., Hrabetova, S., Slesinger, P., Qin, Z.. 2021-09-11. Probing neuropeptide volume transmission in vivo by a novel all-optical approach. https://doi.org/10.1101/2021.09.10.459853
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