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Peixiong Yuan

9 papers in the library · 582 citations · publishing 2009-2026

Papers

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Time-Dependent Effects of Rapid-Acting Antidepressants in iPSC-Derived Neurons from Treatment-Resistant Depression and Healthy Volunteers.

Research Square February 12, 2026 Jenessa N Johnston, Greg Jones, Shiyong Peng et al.

Rapid-acting antidepressants like ketamine and serotonergic psychedelics show promise for treatment-resistant depression (TRD), but the molecular mechanisms that contribute to their therapeutic effects remain unclear. Induced pluripotent stem cells (iPSCs) offer a platform to model human cortical neurons and investigate drug effects in a human-relevant system. Here, iPSCs from individuals with...

Blunted arginine vasopressin secretion in individuals experiencing a major depressive episode with comorbid post-traumatic stress disorder: Results from an exploratory study using copeptin as a surrogate marker.

Journal of Neuroendocrinology 2026 Hiroe Hu, Yoojin Lee, Alaina N Tillman et al. 1 citation

Arginine vasopressin (AVP) modulates stress responsivity and social-affective behaviors, but its role in mood and trauma-related disorders remains poorly defined due to challenges in peripheral measurement. This study used copeptin, a stable, reliable, and well-validated surrogate marker of AVP secretion, to assess vasopressinergic function in a transdiagnostic sample of individuals...

Response of iPSC-derived neurons from individuals with treatment-resistant depression to (2 R,6 R)-hydroxynorketamine and reelin: an exploratory study.

Translational Psychiatry November 18, 2025 Jenessa N Johnston, Peixiong Yuan, Bashkim Kadriu et al. 2 citations

Treatment-resistant depression (TRD) is associated with worse clinical outcomes and longer course of illness. However, TRD is more difficult to model in animal phenotypes, suggesting that other experimental and translational models must be considered to properly address and research novel therapeutics. Reelin, an endogenous glycoprotein downregulated in depression, has shown rapid...

Assessment of complement cascade components in patients with major depressive disorder.

Brain, behavior, and immunity July 1, 2025 Brandi Quintanilla, Dede Greenstein, Ashutosh Tripathi et al. 7 citations

Recent evidence suggests that the rapid-acting antidepressant ketamine has immune regulatory functions. The complement system is an important component of the innate immune response and plays a key role in synaptic plasticity. An increase in complement component 3 (C3) expression was previously found in the prefrontal cortex of individuals with depression. Given the complement system's role in...

Associations between hypothalamic-pituitary-adrenal (HPA) axis hormone levels, major depression features and antidepressant effects of ketamine.

Journal of Affective Disorders March 15, 2025 Polymnia Georgiou, Cristan A Farmer, Gustavo C Medeiros et al. 24 citations

Subanesthetic doses of (R,S)-ketamine (ketamine) have demonstrated rapid and robust antidepressant effects in individuals with depression. However, individual variability in response to ketamine exists, and current biomarkers of ketamine treatment response are not entirely understood. Preclinical evidence suggests a link between hypothalamic-pituitary-adrenal (HPA) axis activation, a...

NMDA Receptor Activation-Dependent Antidepressant-Relevant Behavioral and Synaptic Actions of Ketamine

Journal of Neuroscience January 3, 2023 Panos Zanos, Kyle A Brown, Polymnia Georgiou et al. 109 citations

Ketamine is a well-characterized NMDA receptor (NMDAR) antagonist, although the relevance of this pharmacology to its rapid (within hours of administration) antidepressant actions, which depend on mechanisms convergent with strengthening of excitatory synapses, is unclear. Activation of synaptic NMDARs is necessary for the induction of canonical long-term potentiation (LTP) leading to a...

Comparative metabolomic analysis in plasma and cerebrospinal fluid of humans and in plasma and brain of mice following antidepressant-dose ketamine administration

Translational Psychiatry May 2, 2022 Ruin Moaddel, Panos Zanos, Cristan A Farmer et al. 32 citations

Abstract Subanesthetic-dose racemic ( R,S )-ketamine (ketamine) produces rapid, robust, and sustained antidepressant effects in major depressive disorder (MDD) and bipolar disorder (BD) and has also been shown to effectively treat neuropathic pain, complex regional pain syndrome, and post-traumatic stress disorder (PTSD). However, to date, its mechanism of action remains unclear. Preclinical...

Concomitant BDNF and sleep slow wave changes indicate ketamine-induced plasticity in major depressive disorder

The International Journal of Neuropsychopharmacology June 7, 2012 Wallace C. Duncan, Simone Sarasso, Fabio Ferrarelli et al. 253 citations

The N-methyl-d-aspartate (NMDA) receptor antagonist ketamine has rapid antidepressant effects in treatment-resistant major depressive disorder (MDD). In rats, ketamine selectively increased electroencephalogram (EEG) slow wave activity (SWA) during non-rapid eye movement (REM) sleep and altered central brain-derived neurotrophic factor (BDNF) expression. Taken together, these findings suggest...

Brain-Derived Neurotrophic Factor and Initial Antidepressant Response to anN-Methyl-D-Aspartate Antagonist

The Journal of Clinical Psychiatry September 8, 2009 Rodrigo Machado‐Vieira, Peixiong Yuan, Nancy E. Brutsché et al. 154 citations

OBJECTIVE: A model has been proposed to explain the pathophysiology of mood disorders based on decreased neurotrophin levels during mood episodes; treatment with antidepressants and mood stabilizers is associated with clinical improvement. This study investigated whether changes in brain-derived neurotrophic factor (BDNF) levels are associated with the initial antidepressant effects of...