General hospital psychiatry
January 1, 2026
Gabrielle F M Lovell, Shreya Vasudeva, Diana K Orsini et al.
Ketamine, an anesthetic also used for mood and anxiety disorders, may cause mild, temporary elevations in liver enzymes, but serious liver damage appears rare. A systematic review of 13 studies (5 randomized trials, 3 observational studies, and 5 case reports) involving 1,017 patients—mostly with major depressive disorder or bipolar disorder—found 75 mild liver enzyme elevations across trials, with only a few cases of impaired liver function. No cases met Hy's Law criteria for severe drug-induced liver injury. Case reports described more severe liver issues that improved with dose reduction or stopping treatment. Routine liver monitoring during ketamine treatment remains advisable.
Neuroendocrinology
October 30, 2025
Sabrina Wong, Gia Han Le, Jens Uhlig et al.
Blocking NMDA receptors improves the function and survival of pancreatic alpha and beta cells, which may help explain why certain NMDA antagonists like ketamine, esketamine, and dextromethorphan have antidepressant effects and could also address metabolic problems often seen in depression. The findings suggest a shared mechanism linking mood regulation and pancreatic hormone control. More research is needed on how low doses of these drugs affect pancreatic function and delta cells.
Journal of affective disorders
February 1, 2026
Kayla M Teopiz, Sabrina Wong, Gia Han Le et al.
Reward processing disruptions in major depressive disorder (MDD) may relate to altered frontostriatal brain activity. Glutamatergic modulators might improve reward function. This systematic review examined 11 fMRI studies testing glutamatergic agents—ketamine (9 studies), nitrous oxide (1), and memantine (1)—on frontostriatal activity in people with MDD or healthy controls. Preliminary evidence suggests intravenous ketamine may alter functional connectivity in striatal regions, potentially relevant to improved reward function in treatment-resistant depression. More research is needed on how these modulators affect reward-related brain structures, the timing of effects, and baseline characteristics predicting antidepressant response.
Expert opinion on drug metabolism & toxicology
January 1, 2026
Yang Jing Zheng, Christine E Dri, Sabrina Wong et al.
Dextromethorphan/bupropion (DXM/BUP) received breakthrough FDA approval in August 2022 as a rapid-acting antidepressant. DXM/BUP is a noncompetitive NMDA receptor antagonist and sigma-1 receptor agonist, combined with bupropion, a norepinephrine/dopamine reuptake inhibitor and CYP2D6 inhibitor. DXM alone has long been misused due to its metabolism into the psychoactive metabolite dextrorphan (DXO). The article discusses the pharmacodynamics and pharmacokinetics of DXM and DXO, highlights the abuse potential of DXM alone, and presents preclinical, clinical, and pharmacovigilance findings that support reduced abuse liability of DXM/BUP. The formulation demonstrates clinically meaningful improvement within one week of initiation. Given its safety, efficacy, and novelty, this glutamatergic modulator is a promising candidate for global approval. Future research should examine its potential in bipolar depression and trauma-associated MDD.