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Published on: May 12, 2018
Impact of surgery and anesthesia during early brain development: A perfect storm
Kristin Keunen1, Nicolaas H Sperna Weiland1, Bernadette S de Bakker2
1Department of Anaesthesiology, Amsterdam University Medical Centers, University of Amsterdam, Amsterdam, The Netherlands.
Insights
Neonatal surgery and anesthesia pose risks to the developing brain due to immature regulatory mechanisms. This review explores brain injury risks and proposes a model involving inflammation, vascular immaturity, and anesthetic neurotoxicity.
Area of Science:
- Neuroscience
- Developmental Biology
- Pediatric Surgery
Background:
- Neonatal brain development is rapid and complex, with immature regulatory systems.
- Incomplete cerebral autoregulation, antioxidant defenses, and immune responses increase brain vulnerability.
- Neonatal surgery and anesthesia occur during this critical developmental window.
Purpose of the Study:
- To review early brain development and its implications for neonatal surgery.
- To discuss brain injury and neurodevelopmental outcomes following neonatal surgery.
- To explore injury mechanisms and propose a novel disease model.
Main Methods:
- Literature review focusing on early brain development, neonatal surgery, and anesthesia.
- Analysis of existing studies on brain injury and neurodevelopmental outcomes.
- Examination of proposed mechanisms of injury in the context of early brain development.
Main Results:
- Neonatal surgery and anesthesia are associated with mild-to-moderate neurodevelopmental deficits.
- Recent findings suggest structural brain damage after neonatal surgery, though high-quality pre-operative imaging is often lacking.
- A proposed disease model highlights the interplay of inflammation, vascular immaturity, and anesthetic neurotoxicity.
Conclusions:
- The developing neonatal brain is uniquely vulnerable to surgical and anesthetic insults.
- A combination of factors, including inflammation, vascular immaturity, and anesthetic exposure, can lead to brain injury.
- Further research and refined anesthetic strategies are needed to protect the neonatal brain.
Abstract:
Neonatal surgery and concomitant anesthesia coincide with a timeframe of rapid brain development. The speed and complexity of early brain development superimposed on immature regulatory mechanisms that include incomplete cerebral autoregulation, insufficient free radical scavenging and an immature immune response puts the brain at risk. Brain injury may have long-term consequences for multiple functional domains including cognition, learning skills, and behavior. Neurodevelopmental follow-up studies have noted mild-to-moderate deficits in children who underwent major neonatal surgery and related anesthesia. The present review evaluates neonatal surgery against the background of neurobiological processes that unfold at a pace unparalleled by any other period of human brain development. First, a structured summary of early brain development is provided in order to establish theoretical groundwork. Next, literature on brain injury and neurodevelopmental outcome after neonatal surgery is discussed. Special attention is given to recent findings of structural brain damage reported after neonatal surgery. Notably, high-quality imaging data acquired before surgery are currently lacking. Third, mechanisms of injury are interrogated taking the perspective of early brain development into account. We propose a novel disease model that constitutes a triad of inflammation, vascular immaturity, and neurotoxicity of prolonged exposure to anesthetic drugs. With each of these components exacerbating the other, this amalgam incites the perfect storm, resulting in brain injury. When examining the brain, it seems intuitive to distinguish between neonates (i.e., <60 postconceptional weeks) and more mature infants, multiple and/or prolonged anesthesia exposure and single, short surgery. This review culminates in an outline of anesthetic considerations and future directions that we believe will help move the field forward.
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