Esketamine, a drug that blocks NMDA receptors, improved neurological function and promoted nerve repair in mice with intracerebral hemorrhage. RNA sequencing and network pharmacology identified neurotrophin-3 and the PI3K/AKT signaling pathway as key targets. Experiments confirmed that esketamine increased NTF3 protein levels, and blocking the PI3K/AKT pathway with a specific inhibitor reduced the drug's therapeutic effects. The findings suggest esketamine activates the NTF3/PI3K/AKT pathway to aid recovery after brain hemorrhage.
Psychotic disorders like schizophrenia and bipolar disorder involve disruptions in the brain's information processing. Using resting-state fMRI and information-theoretic metrics, the authors show that the psychotic brain exhibits states of randomness across both spatial and temporal dimensions. They found a disruption in the balance between redundant and synergistic information, termed brainquake, indicating instability and disorganization in brain networks. Aberrant information interactions were observed in cortical and subcortical intrinsic connectivity networks, particularly in sensorimotor, visual, temporal, default mode, and fronto-parietal networks, as well as hippocampal and amygdalar regions. These findings suggest profound alterations in the brain's complexity and organizational states.