S-ketamine alleviates depression-like behavior and hippocampal neuroplasticity in the offspring of mice that experience prenatal stress

Sci Rep. 2024 Nov 6;14(1):26929. doi: 10.1038/s41598-024-76226-y.

Abstract

Prenatal stress exerts long-term impact on neurodevelopment in the offspring, with consequences such as increasing the offspring's risk of depression in adolescence and early adulthood. S-ketamine can produce rapid and robust antidepressant effects, but it is not clear yet whether and how S-ketamine alleviates depression in prenatally stressed offspring. The current study incestigated the preliminary anti-depression mechanism of S-ketamine in prenatally stressed offspring, particularly with regard to neuroplasticity. The pregnant females were given chronic unpredictable mild stress on the 7th-20th day of pregnancy and their male offspring were intraperitoneally injected with a single dose of S-ketamine (10 mg/kg) on postnatal day 42. Our findings showed that S-ketamine treatment counteracted the development of depression-like behaviors in prenatally stressed offspring. At the cellular level, S-ketamine markedly enhanced neuroplasticity in the CA1 hippocampus: Golgi-Cox staining showed that S-ketamine alleviated the reduction of neuronal complexity and dendritic spine density; Transmission electron microscopy indicated that S-ketamine reversed synaptic morphology alterations. At the molecular level, by western blot and RT-PCR we detected that S-ketamine significantly upregulated the expression of BDNF and PSD95 and activated AKT and mTOR in the hippocampus. In conclusion, prenatal stress induced by chronic unpredictable mild stress leads to depressive-like behaviors and hippocampal neuroplasticity impairments in male offspring. S-ketamine can produce antidepressant effects by enhancing hippocampal neuroplasticity via the BDNF/AKT/mTOR signaling pathway.

Keywords: Depression; Hippocampus; Neuroplasticity; Offspring; Prenatal stress; S-ketamine.

MeSH terms

  • Animals
  • Antidepressive Agents* / pharmacology
  • Behavior, Animal / drug effects
  • Brain-Derived Neurotrophic Factor / genetics
  • Brain-Derived Neurotrophic Factor / metabolism
  • Depression* / drug therapy
  • Disease Models, Animal
  • Female
  • Hippocampus* / drug effects
  • Hippocampus* / metabolism
  • Ketamine* / pharmacology
  • Male
  • Mice
  • Neuronal Plasticity* / drug effects
  • Pregnancy
  • Prenatal Exposure Delayed Effects*
  • Stress, Psychological* / complications
  • Stress, Psychological* / drug therapy
  • TOR Serine-Threonine Kinases / metabolism

Substances

  • Ketamine
  • Antidepressive Agents
  • Esketamine
  • Brain-Derived Neurotrophic Factor
  • TOR Serine-Threonine Kinases