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Addressing the Global Burden of Trauma in Major Surgery
1Heart, Trauma and Sepsis Research Laboratory, Australian Institute of Tropical Health and Medicine, College of Medicine and Dentistry, James Cook University , Townsville, QLD , Australia.
Insights
Surgical stress significantly impacts patient outcomes, with millions experiencing complications annually. New therapies targeting the Central-Cardio-Vascular-Endothelium (CCVE) coupling are needed to improve surgical safety and predictability.
Area of Science:
- Surgical stress response and patient outcomes.
- Global health impact of surgical trauma.
- Development of novel therapeutic targets in perioperative medicine.
Background:
- Surgical trauma is a major global health concern, causing significant mortality, morbidity, and costs.
- Millions of major surgeries annually result in preventable deaths and complications.
- Current perioperative treatments lack sufficient data to mitigate surgical stress effectively.
Purpose of the Study:
- To review the physiological basis of the surgical stress response.
- To evaluate existing clinical data for perioperative medications.
- To propose a new therapeutic strategy for improving surgical outcomes.
Main Methods:
- Review of neuroendocrine and genomic responses to surgical stress.
- Analysis of clinical data for statins, beta-blockers, and calcium-channel blockers.
- Discussion of endothelial function and its role in surgical complications.
Main Results:
- Limited clinical evidence supports current frontline drugs for managing surgical stress.
- Cardiac complications are prevalent, especially in elderly patients.
- Endothelial dysfunction contributes to "secondary hit" complications.
Conclusions:
- The Central-Cardio-Vascular-Endothelium (CCVE) coupling hypothesis offers a framework for new therapies.
- Targeting CCVE coupling may improve outcomes in surgical patients and those with critical illnesses.
- Novel drugs enhancing CCVE coupling could have broad applications in medicine.
Abstract:
Despite a technically perfect procedure, surgical stress can determine the success or failure of an operation. Surgical trauma is often referred to as the "neglected step-child" of global health in terms of patient numbers, mortality, morbidity, and costs. A staggering 234 million major surgeries are performed every year, and depending upon country and institution, up to 4% of patients will die before leaving hospital, up to 15% will have serious post-operative morbidity, and 5-15% will be readmitted within 30 days. These percentages equate to around 1000 deaths and 4000 major complications every hour, and it has been estimated that 50% may be preventable. New frontline drugs are urgently required to make major surgery safer for the patient and more predictable for the surgeon. We review the basic physiology of the stress response from neuroendocrine to genomic systems, and discuss the paucity of clinical data supporting the use of statins, beta-adrenergic blockers and calcium-channel blockers. Since cardiac-related complications are the most common, particularly in the elderly, a key strategy would be to improve ventricular-arterial coupling to safeguard the endothelium and maintain tissue oxygenation. Reduced O2 supply is associated with glycocalyx shedding, decreased endothelial barrier function, fluid leakage, inflammation, and coagulopathy. A healthy endothelium may prevent these "secondary hit" complications, including possibly immunosuppression. Thus, the four pillars of whole body resynchronization during surgical trauma, and targets for new therapies, are: (1) the CNS, (2) the heart, (3) arterial supply and venous return functions, and (4) the endothelium. This is termed the Central-Cardio-Vascular-Endothelium (CCVE) coupling hypothesis. Since similar sterile injury cascades exist in critical illness, accidental trauma, hemorrhage, cardiac arrest, infection and burns, new drugs that improve CCVE coupling may find wide utility in civilian and military medicine.
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