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Mu, D.

Publications and source records attributed to Mu, D..

2 recordsLinked to original sources

Geraniol Enhances Inhibitory Inputs to Paraventricular Thalamic Nucleus and Induces Sedation in Mice

Geraniol (GE), a plant-derived acyclic monoterpene, shows a wide variety of beneficial effects. Notably, recent studies have reported the potential sedative effects of GE in fish and rats. However, the mechanisms of GE in sedation remain elusive. Here, we found that GE reduced locomotion, relieved pentylenetetrazol (PTZ)-induced seizures, altered the electroencephalogram (EEG), and facilitated general anesthesia in mice. Meanwhile, GE decreased c-Fos expression and suppressed the calcium activity in the paraventricular thalamic nucleus (PVT). Microinjection of GE into the PVT reduced locomotion and facilitated propofol-induced anesthesia. Furthermore, the electrophysiology results showed that GE-induced dramatic membrane hyperpolarization and suppressed the neuronal activity of PVT neurons, mainly by prolonging spontaneous inhibitory postsynaptic currents and inducing tonic inhibitory currents via GABAA receptors. Our study revealed that GE enhances inhibitory inputs to PVT neurons and induces sedation in mice. These findings provide a potential candidate for further development of sedatives and anesthetics. Graphic Summary O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=156 SRC="FIGDIR/small/441289v1_ufig1.gif" ALT="Figure 1"> View larger version (37K): org.highwire.dtl.DTLVardef@fd8424org.highwire.dtl.DTLVardef@1ee77caorg.highwire.dtl.DTLVardef@faab42org.highwire.dtl.DTLVardef@101b921_HPS_FORMAT_FIGEXP M_FIG C_FIG

neuroscience

PBN-PVT projection modulates negative emotions in mice

Long-lasting negative affections dampen enthusiasm for life, and dealing with negative affective states is essential for individual survival. The parabrachial nucleus (PBN) and the thalamic paraventricular nucleus (PVT) are critical for modulating affective states in mice. However, the functional role of the PBN-PVT projection in modulating affective states remains elusive. Here, we show that the PBN neurons send dense projection fibers to the PVT and form direct excitatory synapses with the PVT neurons. Activation of the PBN-PVT projection or PVT-projecting PBN neurons induces robust anxiety-like, aversion-like, and fear-like behaviors without affecting nociceptive behaviors. Inhibition of the PBN-PVT projection or PVT-projecting PBN neurons reduces fear-like and aversion-like behaviors. Furthermore, the PVT neurons innervated by the PBN are activated by aversive stimulation, and activation of PBN-PVT projection enhances the neuronal activity of PVT neurons in response to the aversive stimulus. Activation of these downstream PVT neurons induces anxiety-like behavior behaviors. Thus, our study indicates that the PBN-PVT projection modulates negative affective states in mice.

neuroscience