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Published on: October 20, 2012
Effects of regional analgesia on stress responses to pediatric surgery
1Paediatric Anaesthesia and Intensive Care Unit, Bristol Royal Hospital for Children, Bristol, UK. andrew.wolf@nhs.net
Insights
Surgery triggers a complex stress response involving local injury and systemic pathways. Different pain management strategies, like opioids versus regional anesthesia, differentially affect this response.
Area of Science:
- Physiology
- Surgical Stress Response
- Neuroendocrinology
Background:
- Invasive surgery causes local tissue injury and systemic neurohumoral activation.
- These responses are interconnected via complex signaling networks.
- The magnitude of the surgical stress response depends on injury site and extent.
Purpose of the Study:
- To elucidate the multifaceted nature of the surgical stress response.
- To compare the efficacy of different analgesic modalities in modulating the stress response.
Main Methods:
- Review of existing literature on surgical stress, pain, and anesthesia.
- Analysis of dose-dependent effects of analgesics like fentanyl.
- Comparison of opioid analgesia with regional anesthesia techniques.
Main Results:
- Surgical stress involves local inflammation, neurohumoral changes, and autonomic responses.
- Opioids like fentanyl show dose-dependent effects on analgesia, hemodynamics, and stress response suppression.
- Central local anesthetic blocks effectively suppress hemodynamic and stress responses at lower doses.
Conclusions:
- Pain, cardiovascular, and stress responses are integrated aspects of the body's reaction to surgery.
- Analgesic strategies have differential impacts on the surgical stress response.
- Regional anesthesia offers profound suppression of surgical stress compared to opioids.
Abstract:
Invasive surgery induces a combination of local response to tissue injury and generalized activation of systemic metabolic and hormonal pathways via afferent nerve pathways and the central nervous system. The local inflammatory responses and the parallel neurohumoral responses are not isolated but linked through complex signaling networks, some of which remain poorly understood. The magnitude of the response is broadly related to the site of injury (greater in regions with visceral pain afferents such as abdomen and thorax) and the extent of the trauma. The changes include alterations in metabolic, hormonal, inflammatory, and immune systems that can be collectively termed the stress response. Integral to the stress responses are the effects of nociceptive afferent stimuli on systemic and pulmonary vascular resistance, heart rate, and blood pressure, which are a combination of efferent autonomic response and catecholamine release via the adrenal medulla. Therefore, pain responses, cardiovascular responses, and stress responses need to be considered as different aspects of a combined bodily reaction to surgery and trauma. It is important at the outset to understand that not all components of the stress response are suppressed together and that this is important when discussing different analgesic modalities (i.e. opioids vs regional anesthesia). For example, in terms of the use of fentanyl in the infant, the dose required to provide analgesia (1-5 mcg·kg(-1)) is less than that required for hemodynamic stability in response to stimuli (5-10 mcg·kg(-1)) (1) and that this in turn is less than that required to suppress most aspects of the stress response (25-50 mcg·kg(-1)) (2). In contrast to this considerable dose dependency, central local anesthetic blocks allow blockade of the afferent and efferent sympathetic pathways at relatively low doses resulting in profound suppression of hemodynamic and stress responses to surgery.
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