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Neonatal Propofol Anesthesia Changes Expression of Synaptic Plasticity Proteins and Increases Stereotypic and Anxyolitic Behavior in Adult Rats
- Source :
- Neurotoxicity Research
- Publication Year :
- 2016
-
Abstract
- Propofol is a general anesthetic commonly used in pediatric clinical practices. Experimental findings demonstrate that anesthetics induce widespread apoptosis and cognitive decline in a developing brain. Although anesthesia-mediated neurotoxicity is the most prominent during intense period of synaptogenesis, the effects of an early anesthesia exposure on the synapses are not well understood. The aim of this study was to examine the effects of neonatal propofol anesthesia on the expression of key proteins that participate in synaptogenesis and synaptic plasticity and to evaluate long-term neurobehavioral abnormalities in the mature adult brain. Propofol-injected 7-day-old rats were maintained under 2-, 4-, and 6-h-long anesthesia and sacrificed 0, 4, 16, and 24 h after the termination of each exposure. We showed that propofol anesthesia strongly influenced spatiotemporal expression and/or proteolytic processing of crucial presynaptic (GAP-43, synaptophysin, α-synuclein), trans-synaptic (N-cadherin), and postsynaptic (drebrin, MAP-2) proteins in the cortex and thalamus. An overall decrease of synaptophysin, α-synuclein, N-cadherin, and drebrin indicated impaired function and structure of the synaptic contacts immediately after anesthesia cessation. GAP-43 and MAP-2 adult and juvenile isoforms are upregulated following anesthesia, suggesting compensatory mechanism in the maintaining of the structural integrity and stabilization of developing axons and dendritic arbors. Neonatal propofol exposure significantly altered spontaneous motor activity (increased stereotypic/repetitive movements) and changed emotional behavior (reduced anxiety-like response) in the adulthood, 6 months later. These findings suggest that propofol anesthesia is synaptotoxic in the developing brain, disturbing synaptic dynamics and producing neuroplastic changes permanently incorporated into existing networks with long-lasting functional consequences.
- Subjects :
- Male
Time Factors
Synaptogenesis
Synaptophysin
Anxiety
Motor Activity
Toxicology
Synaptic plasticity
03 medical and health sciences
0302 clinical medicine
030202 anesthesiology
Postsynaptic potential
Neuroplasticity
medicine
Neurotoxicity
Animals
Hypnotics and Sedatives
Cognitive decline
Rats, Wistar
Developing brain
Propofol
Behavior
biology
Adaptation, Ocular
General Neuroscience
Neuropeptides
Brain
Gene Expression Regulation, Developmental
Cadherins
Rats
Animals, Newborn
Propofol anesthesia
Anesthetic
Synapses
biology.protein
Exploratory Behavior
alpha-Synuclein
Stereotyped Behavior
Psychology
Neuroscience
Microtubule-Associated Proteins
030217 neurology & neurosurgery
medicine.drug
Subjects
Details
- ISSN :
- 14763524
- Volume :
- 32
- Issue :
- 2
- Database :
- OpenAIRE
- Journal :
- Neurotoxicity research
- Accession number :
- edsair.doi.dedup.....f65e4aeb72b09c7bb088744de183c9bb