Dual-color GRAB sensors for monitoring spatiotemporal serotonin release in vivo
Deng, F.; Wan, J.; Li, G.; Dong, H.; Xia, X.; Wang, Y.; Li, X.; Zhuang, C.; Zheng, Y.; Liu, L.; Yan, Y.; Feng, J.; Zhao, Y.; Xie, H.; Li, Y.
Show abstract
The serotonergic system plays important roles in both physiological and pathological processes, and is a widely used therapeutic target for many psychiatric disorders. Although several genetically encoded GFP-based serotonin (5-HT) sensors were recently developed, their sensitivities and spectral profiles are relatively limited. To overcome these limitations, we optimized green fluorescent G-protein-coupled receptor (GPCR)-activation-based 5-HT (GRAB5-HT) sensors and developed a new red fluorescent GRAB5-HT sensor. These sensors have excellent cell surface trafficking, high specificity, sensitivity, and spatiotemporal resolution, making them suitable for monitoring 5-HT dynamics in vivo. Besides recording subcortical 5-HT release in freely moving mice, we observed both uniform and gradient 5-HT release in the mouse dorsal cortex with mesoscopic imaging. Finally, we performed dual-color imaging and observed seizure-induced waves of 5-HT release throughout the cortex following calcium and endocannabinoid waves. In summary, these 5-HT sensors can offer valuable insights regarding the serotonergic system in both physiological and pathological states.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Multifunctional fibers enable modulation of cortical and deep brain activity during cognitive behavior in macaques 96%
- Mechanistic Insights into the Stimulation of the Histone H3K9 Methyltransferase Clr4 by Proximal H3K14 Ubiquitination 96%
- Parabrachial neuron types categorically encode thermoregulation variables during heat defense 96%
Similar papers in this journal
- Dynamic causal communication channels between neocortical areas 97%
- Transient developmental increase of prefrontal activity alters network maturation and causes cognitive dysfunction in adult mice 97%
- Transcriptional control of nucleus accumbens neuronal excitability by Retinoid X Receptor Alpha tunes sensitivity to drug rewards 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.