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A Mouse Model of Orthopedic Surgery to Study Postoperative Cognitive Dysfunction and Tissue Regeneration
Published on: February 27, 2018
The impact of the perioperative period on neurocognitive development, with a focus on pharmacological concerns
George K Istaphanous1, Christopher G Ward, Andreas W Loepke
1Department of Anesthesia, Cincinnati Children's Hospital Medical Center, Cincinnati, OH 45229, USA.
Insights
Common anesthetics may harm young brains, potentially causing long-term neurological issues. Further research is needed to understand risks and guide safe pediatric anesthesia practices.
Area of Science:
- Neuroscience
- Anesthesiology
- Developmental Pediatrics
Background:
- Animal studies suggest anesthetics cause neuronal cell death and neurological abnormalities.
- Human epidemiological studies raise concerns about early-life anesthesia and learning disabilities.
Purpose of the Study:
- To review preclinical and clinical data on the impact of anesthesia and related factors on pediatric brain development.
- To explore mechanisms of anesthetic neurotoxicity and its clinical implications.
Main Methods:
- Summary of existing animal and human studies.
- Review of research on anesthesia, sedatives, opioids, pain, stress, inflammation, hypoxia-ischemia, comorbidities, and genetics.
- Analysis of neurotoxicity mechanisms and clinical practice considerations.
Main Results:
- Preclinical and clinical evidence suggests potential long-term neurological effects of anesthetics in young children.
- Factors like pain, stress, inflammation, and genetic predisposition may interact with anesthetic effects.
Conclusions:
- While evidence is mounting, more research is required to definitively link early anesthesia to learning abnormalities.
- Understanding anesthetic neurotoxicity is crucial for guiding safe pediatric anesthesia and surgery timing.
Abstract:
Mounting evidence from animal studies has implicated that all commonly used anaesthetics and sedatives may induce widespread neuronal cell death and result in long-term neurological abnormalities. These findings have led to serious questions regarding the safe use of these drugs in young children. In humans, recent findings from retrospective, epidemiological studies do not exclude the possibility of an association between surgery with anaesthesia early in life and subsequent learning abnormalities. These results have sparked discussions regarding the appropriate timing of paediatric surgery and the safe management of paediatric anaesthesia. However, important questions need to be addressed before findings from laboratory studies and retrospective clinical surveys can be used to guide clinical practice. This article summarises the currently available preclinical and clinical information regarding the impact of anaesthetics, sedatives, opioids, pain and stress, inflammation, hypoxia-ischaemia, co-morbidities and genetic predisposition on brain structure and long-term neurological function. Moreover, this article outlines the putative mechanisms of anaesthetic neurotoxicity, and the phenomenon's implications for clinical practice in this rapidly emerging field.
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