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T. Rantamäki

2 papers in the library · publishing 2020-2021

Papers

Physiological basis underlying antidepressant-induced activation of TrkB receptors

bioRxiv August 31, 2021 O. Alitalo, S. Kohtala, Marko Rosenholm et al. preprint

Both pharmacological and non-pharmacological treatments for depression activate TrkB receptors—a known antidepressant target—by inducing a physiological response linked to sedation. Rapid-acting antidepressants trigger TrkB signaling by evoking a state characterized by electroencephalographic slow-wave activity, behavioral immobility, reduced cerebral glucose utilization, and lowered body temperature. This signaling was not impaired in animals with reduced activity-dependent BDNF release but was diminished by maintaining animals in a warm ambient temperature. Preventing the hypothermic response attenuated the behavioral effects of the rapid-acting antidepressant nitrous oxide. The findings suggest that changes in energy expenditure and thermoregulation are essential, but not sufficient, for antidepressant responses, challenging pharmacology-centric hypotheses and highlighting the role of bioenergetics and thermoregulation.

Ketamine induces rapid and sustained antidepressant-like effects in chronic pain induced depression: Role of MAPK signaling pathway.

Progress in Neuro-psychopharmacology and Biological Psychiatry February 25, 2020 Muris Humo, Beyza Ayazgök, Léa J. Becker et al.

A single injection of ketamine (15 mg/kg) in mice with chronic neuropathic pain temporarily reduced mechanical hypersensitivity for less than 24 hours, but its antidepressant effect lasted at least 72 hours. Ketamine also normalized the expression of MKP-1 and phosphorylation of ERK in the anterior cingulate cortex, molecular changes that may underlie its therapeutic effects on pain-induced depression.