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IGF-1 release in the medial prefrontal cortex mediates the rapid and sustained antidepressant-like actions of ketamine

Satoshi Deyama, M. Kondo, Shoichi Shimada, K. Kaneda

Translational Psychiatry May 17, 2022 DOI: 10.1038/s41398-022-01943-9 (opens in new tab) via Semantic Scholar

Summary

AI-generated from the abstract

Ketamine's rapid antidepressant effects depend on the sustained release of insulin-like growth factor 1 (IGF-1) in the medial prefrontal cortex (mPFC) of male mice. Blocking IGF-1 in the mPFC before or after ketamine injection prevented its antidepressant-like effects in behavioral tests. IGF-1 acted independently of brain-derived neurotrophic factor (BDNF). Infusing IGF-1 into the mPFC produced antidepressant-like effects even in mice with lipopolysaccharide-induced depression, via activation of mTORC1. The findings indicate that persistent intra-mPFC IGF-1 signaling is essential for ketamine's antidepressant actions.

Study at a glance

Characteristics Preclinical experimental study Peer reviewed
Population Male C57BL/6J mice
Interventions Ketamine IGF-1 neutralizing antibody BDNF IGF-1
Dose 10 and 30 mg/kg (ketamine), 160 ng/side (IGF-1 nAb), 100 ng/side (BDNF), 50 ng/side (IGF-1), 200 ng/side (BDNF nAb)
Duration 5 hours (microdialysis); behavioral tests conducted 1, 3, and 4 days post-ketamine
Keywords Medicine
Key finding Persistent release of IGF-1 in the medial prefrontal cortex, independently of BDNF, is essential for the antidepressant-like effects of ketamine.

Abstract

Ketamine, an N-methyl-D-aspartate receptor antagonist, exerts rapid and sustained antidepressant actions. Preclinical studies demonstrated that the release of brain-derived neurotrophic factor (BDNF) and vascular endothelial growth factor in the medial prefrontal cortex (mPFC) is essential for the antidepressant-like effects of ketamine. However, the role of other neurotrophic factors in the antidepressant-like effects of ketamine has not been fully investigated. Since the intra-mPFC infusion of insulin-like growth factor 1 (IGF-1) reportedly produced antidepressant-like effects, the present study examined the role of endogenous intra-mPFC IGF-1 signaling in the antidepressant-like actions of ketamine. In vivo microdialysis showed that ketamine (10 and 30 mg/kg) significantly increased extracellular IGF-1 levels in the mPFC of male C57BL/6J mice for at least 5 h. Infusion of an IGF-1 neutralizing antibody (nAb; 160 ng/side) into the mPFC 15 min before or 2 h after ketamine injection blocked the antidepressant-like effects of ketamine in three different behavioral paradigms (forced swim, female urine sniffing, and novelty-suppressed feeding tests were conducted 1, 3 and 4 days post-ketamine, respectively). The ketamine-like antidepressant-like actions of the intra-mPFC infusion of BDNF (100 ng/side) and IGF-1 (50 ng/side) respectively were not blocked by co-infused IGF-1 nAb and BDNF nAb (200 ng/side). Moreover, intra-mPFC infusion of IGF-1 nAb 2 h post-ketamine blocked the antidepressant-like effects of ketamine in a murine lipopolysaccharide (LPS)-induced depression model. Intra-mPFC IGF-1 infusion also produced antidepressant-like effects in the LPS-challenged mice via mechanistic target of rapamycin complex 1 activation. These results suggest that persistent release of IGF-1, independently of BDNF, in the mPFC is essential for the antidepressant-like actions of ketamine.

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