The Effects of Neonatal Isoflurane Exposure in Mice on Brain Cell Viability, Adult Behavior, Learning, and Memory
- 1 January 2009
- journal article
- Published by Wolters Kluwer Health in Anesthesia & Analgesia
- Vol. 108 (1) , 90-104
- https://doi.org/10.1213/ane.0b013e31818cdb29
Abstract
Tal mice, prolonged isoflurane exposure triggers hypoglycemia, which could be responsible for the neurocognitive impairment. We examined the effects of neonatal isoflurane exposure and blood glucose on brain cell viability, spontaneous locomotor activity, as well as spatial learning and memory in mice. METHODS: Seven-day-old mice were randomly assigned to 6 h of 1.5% isoflurane with or without injections of dextrose or normal saline, or to 6 h of room air without injections (no anesthesia). Arterial blood gases and glucose were measured. After 2 h, 18 h, or 11 wk postexposure, cellular viability was assessed in brain sections stained with Fluoro-Jade B, caspase 3, or NeuN. Nine weeks postexposure, spontaneous locomotor activity was assessed, and spatial learning and memory were evaluated in the Morris water maze using hidden and reduced platform trials. RESULTS: Apoptotic cellular degeneration increased in several brain regions early after isoflurane exposure, compared with no anesthesia. Despite neonatal cell loss, however, adult neuronal density was unaltered in two brain regions significantly affected by the neonatal degeneration. In adulthood, spontaneous locomotor activity and spatial learning and memory performance were similar in all groups, regardless of neonatal isoflurane exposure. Neonatal isoflurane exposure led to an 18% mortality, and transiently increased Paco2, lactate, and base deficit, and decreased blood glucose levels. However, hypoglycemia did not seem responsible for the neurodegeneration, as dextrose supplementation failed to prevent neuronal loss. CONCLUSIONS: Prolonged isoflurane exposure in neonatal mice led to increased immediate brain cell degeneration, however, no significant reductions in adult neuronal density or deficits in spontaneous locomotion, spatial learning, or memory function were observed....Keywords
This publication has 45 references indexed in Scilit:
- PRO: Anesthesia-Induced Developmental Neuroapoptosis: Status of the EvidenceAnesthesia & Analgesia, 2008
- Isoflurane-induced Neuroapoptosis in the Developing Brain of Nonhypoglycemic MiceJournal of Neurosurgical Anesthesiology, 2008
- General anesthesia activates BDNF-dependent neuroapoptosis in the developing rat brainApoptosis, 2006
- Melatonin reduces the severity of anesthesia-induced apoptotic neurodegeneration in the developing rat brainNeurobiology of Disease, 2005
- Isoflurane-Induced Neuronal Degeneration: An Evaluation in Organotypic Hippocampal Slice CulturesAnesthesia & Analgesia, 2005
- Anesthesia induces neuronal cell death in the developing rat brain via the intrinsic and extrinsic apoptotic pathwaysNeuroscience, 2005
- Irreversible loss of a subpopulation of cortical interneurons in the absence of glutamatergic network activityEuropean Journal of Neuroscience, 2004
- Mechanisms of Actions of Inhaled AnestheticsNew England Journal of Medicine, 2003
- Early Exposure to Common Anesthetic Agents Causes Widespread Neurodegeneration in the Developing Rat Brain and Persistent Learning DeficitsJournal of Neuroscience, 2003
- GABA signalling during development: new data and old questions.Cell and tissue research, 2001