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Clara Liao

11 papers in the library · 806 citations · publishing 2021-2026

Papers

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Psilocybin reshapes cortical inhibition through selective interneuron recruitment.

bioRxiv : the preprint server for biology April 17, 2026 Pasha A. Davoudian, Quan Jiang, Cory A. Knox et al.

Psychedelics show therapeutic potential for treating psychiatric disorders. While studies have emphasized the roles of cortical pyramidal cells, GABAergic neurons also express serotonin receptors and are therefore likely targets of psychedelics. In this study, we determine the effect of psilocybin on the activity dynamics of major GABAergic cell types in the mouse medial frontal cortex....

Psilocybin Prolongs the Neurovascular Coupling Response in Mouse Visual Cortex

bioRxiv (Cold Spring Harbor Laboratory) July 31, 2025 Rick Zirkel, Matthew Isaacson, Clara Liao et al. 3 citations preprint

Abstract Psilocybin has profound therapeutic potential for various mental health disorders, but its mechanisms of action are unknown. Functional MRI studies have reported the effects of psilocybin on brain activity and connectivity; however, these measurements rely on neurovascular coupling to infer neural activity changes and assume that blood flow responses to neural activity are not altered...

Psilocybin's lasting action requires pyramidal cell types and 5-HT2A receptors.

Nature June 1, 2025 Ling-Xiao Shao, Clara Liao, Pasha A. Davoudian et al. 75 citations

Psilocybin is a serotonergic psychedelic with therapeutic potential for treating mental illnesses1-4. At the cellular level, psychedelics induce structural neural plasticity5,6, exemplified by the drug-evoked growth and remodelling of dendritic spines in cortical pyramidal cells7-9. A key question is how these cellular modifications map onto cell-type-specific circuits to produce the...

Classification of psychedelics and psychoactive drugs based on brain-wide imaging of cellular c-Fos expression

Nature Communications February 12, 2025 Farid Aboharb, Pasha A. Davoudian, Ling-Xiao Shao et al. 19 citations

Psilocybin, ketamine, and MDMA are psychoactive compounds that exert behavioral effects with distinguishable but also overlapping features. The growing interest in using these compounds as therapeutics necessitates preclinical assays that can accurately screen psychedelics and related analogs. We posit that a promising approach may be to measure drug action on markers of neural plasticity in...

Structural neural plasticity evoked by rapid-acting antidepressant interventions.

Nature reviews. Neuroscience February 1, 2025 Clara Liao, Alisha N Dua, Cassandra Wojtasiewicz et al. 60 citations

A feature in the pathophysiology of major depressive disorder (MDD), a mood disorder, is the impairment of excitatory synapses in the prefrontal cortex. Intriguingly, different types of treatment with fairly rapid antidepressant effects (within days or a few weeks), such as ketamine, electroconvulsive therapy and non-invasive neurostimulation, seem to converge on enhancement of neural...

Single-nucleus transcriptomics reveals time-dependent and cell-type-specific effects of psilocybin on gene expression

bioRxiv (Cold Spring Harbor Laboratory) January 4, 2025 Clara Liao, Ethan O'Farrell, Yaman Qalieh et al. 3 citations preprint

ABSTRACT There is growing interest to investigate classic psychedelics as potential therapeutics for mental illnesses. Previous studies have demonstrated that one dose of psilocybin leads to persisting neural and behavioral changes. The durability of psilocybin’s effects suggests that there are likely alterations of gene expression at the transcriptional level. In this study, we performed...

Pyramidal cell types and 5-HT 2A receptors are essential for psilocybin’s lasting drug action

bioRxiv (Cold Spring Harbor Laboratory) November 3, 2024 Ling-Xiao Shao, Clara Liao, Pasha A. Davoudian et al. preprint

Abstract Psilocybin is a serotonergic psychedelic with therapeutic potential for treating mental illnesses 1–4 . At the cellular level, psychedelics induce structural neural plasticity 5,6 , exemplified by the drug-evoked growth and remodeling of dendritic spines in cortical pyramidal cells 7–9 . A key question is how these cellular modifications map onto cell type-specific circuits to produce...

Classification of psychedelic drugs based on brain-wide imaging of cellular c-Fos expression

bioRxiv May 26, 2024 Farid Aboharb, Pasha A. Davoudian, Ling-Xiao Shao et al. preprint

Psilocybin, ketamine, and MDMA are psychoactive compounds that exert behavioral effects with distinguishable but also overlapping features. The growing interest in using these compounds as therapeutics necessitates preclinical assays that can accurately screen psychedelics and related analogs. We posit that a promising approach may be to measure drug action on markers of neural plasticity in...

5-MeO-DMT modifies innate behaviors and promotes structural neural plasticity in mice.

Neuropsychopharmacology : official publication of the American College of Neuropsychopharmacology August 1, 2023 Sarah J. Jefferson, Ian Gregg, Mark Dibbs et al. 57 citations

Serotonergic psychedelics are gaining increasing interest as potential therapeutics for a range of mental illnesses. Compounds with short-lived subjective effects may be clinically useful because dosing time would be reduced, which may improve patient access. One short-acting psychedelic is 5-MeO-DMT, which has been associated with improvement in depression and anxiety symptoms in early phase...

Psilocybin induces rapid and persistent growth of dendritic spines in frontal cortex in vivo

Neuron July 5, 2021 Ling-Xiao Shao, Clara Liao, Ian Gregg et al. 589 citations

Summary Psilocybin is a serotonergic psychedelic with untapped therapeutic potential. There are hints that the use of psychedelics can produce neural adaptations, although the extent and time scale of the impact in a mammalian brain are unknown. In this study, we used chronic two-photon microscopy to image longitudinally the apical dendritic spines of layer 5 pyramidal neurons in the mouse...