Necroptosis involved in sevoflurane-induced cognitive dysfunction in aged mice by activating NMDA receptors increasing intracellular calcium

Neurotoxicology. 2024 Jan:100:35-46. doi: 10.1016/j.neuro.2023.12.006. Epub 2023 Dec 7.

Abstract

Perioperative neurocognitive disorders are a common surgical and postanesthesia complication. Necroptosis contributes to the emergence of various neurological disorders. We conjecture that cognitive impairment is associated with necroptosis of hippocampal neurons, which is mediated by NMDA receptors leading to cytoplasmic calcium imbalance. C57BL/6 J male mice ( 18 months) were randomly divided into the C ( control group), S ( sevoflurane group), S+M ( sevoflurane plus the NMDA receptor antagonist memantine group) and S+N ( sevoflurane plus necrostatin-1) group. We exposed the mice to 3% sevoflurane for 2 h a day for three consecutive days in the S, S+M and S+N groups. Memantine ( 20 mg/kg) or Nec-1 ( 10 mg/kg) was injected intraperitoneally 1 h before sevoflurane anesthesia in the S+M or S+N group. We used the animal behavior tests to evaluate the cognitive function. Pathological damage, the rate of necroptosis, [Ca2+]i, and the expression of necroptosis-related proteins were evaluated. The cognitive function tests, pathological damage, the rate of necroptosis, the expression of necroptosis-related proteins, NMDAR2A and NMDAR2B were significantly different in the S group ( P < 0.05). Alleviated pathological damage, decreased the rate of necroptosis and down-regulated the expression of necroptosis-related proteins occurred in the S+M and S+N group ( P < 0.05). The lower elevated [Ca2+]i, expression of NMDAR2A and NMDAR2B were found in the S+M group. Our findings highlighted sevoflurane-induced cognitive dysfunction is associated with an imbalance in cytoplasmic calcium homeostasis by activating NMDA receptors, which causes hippocampus neurons to undergo necroptosis and ultimately affects cognitive performance in aged mice.

Keywords: Calcium; NMDA receptor; NMDA receptor antagonist; Necroptosis; Perioperative neurocognitive disorders; Sevoflurane.

MeSH terms

  • Animals
  • Calcium / metabolism
  • Cognitive Dysfunction* / metabolism
  • Hippocampus
  • Male
  • Memantine
  • Methyl Ethers* / metabolism
  • Methyl Ethers* / pharmacology
  • Mice
  • Mice, Inbred C57BL
  • Necroptosis
  • Receptors, N-Methyl-D-Aspartate / metabolism
  • Sevoflurane / toxicity

Substances

  • Sevoflurane
  • Receptors, N-Methyl-D-Aspartate
  • Calcium
  • Methyl Ethers
  • Memantine