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CO2-related vasoconstriction superimposed on ischemic medullary brain autonomic nuclei may contribute to sudden death
J Howard Jaster1, Josef Zamecnik2, Aldo Bruno Giannì3
1London Corporation, 1655 Harbert Avenue, Memphis, TN 38104, USA.
Introduction:
In 2015, a multinational randomized controlled phase IV clinical trial of adaptive servoventilation for the management of heart failure with central sleep apnea was halted in progress because more patients in the study group were dying than in the control group. One year later, another large clinical trial reported results on the effectiveness of continuous positive airway pressure (CPAP) in preventing sudden death and other cardiovascular events such as heart attack and stroke in patients with preexisting vascular disease as well as obstructive sleep apnea.
Background:
Sudden unexpected death has been associated with many types of small and nonmalignant medullary brain lesions, like demyelination plaques - largely asymptomatic until they caused sudden death. Many such medullary lesions, typically without hemorrhage or mass effect, have in themselves been previously considered relatively harmless - in cases where they have been known to be present.
Discussion:
Why did not the improved pulmonary ventilation and subsequently improved gas exchange provided during the CPAP and servoventilation clinical trials help to resolve any ischemic lesions that may have been present both in the heart and in the medulla, thereby tending to normalize interactions between the vagal neural structures and the heart? CO2 is a potent dilator of brain vasculature, thereby increasing blood flow to the brain. When ventilation is increased, even if only to improve it back toward normal from a depressed steady-state level, the alveolar partial pressure of carbon dioxide is decreased, likely resulting in a converse relative vasoconstriction in the brain, thereby reducing blood flow in the brain, especially in watershed areas like the solitary tract nucleus. In normal physiology, this is demonstrated impressively by the ability of hyperventilation to induce loss of consciousness.
Conclusions:
The findings of several clinical trials recently reported, taken together with neuropathology case studies reported elsewhere, suggest that additional research is warranted in regard to the mechanisms by which focal medullary autonomic brain ischemia may be related to sudden death in general medical illnesses - and how it may additionally be influenced by changes in arterial CO2 levels.
Insights
Clinical trials for sleep apnea treatments like adaptive servoventilation and continuous positive airway pressure (CPAP) were halted due to increased mortality. Research suggests medullary lesions and altered CO2 levels may influence sudden death risk in these patients.
Area of Science:
- Cardiovascular Medicine
- Neurology
- Sleep Medicine
Background:
- Adaptive servoventilation trial for heart failure with central sleep apnea halted due to increased mortality.
- Continuous positive airway pressure (CPAP) trials show mixed results for cardiovascular event prevention in obstructive sleep apnea.
- Medullary brain lesions, often asymptomatic, are linked to sudden unexpected death.
Purpose of the Study:
- Investigate why improved ventilation in CPAP and servoventilation trials did not prevent cardiovascular events or resolve ischemic lesions.
- Explore the role of CO2 levels in brain vasculature and potential impact on medullary autonomic function.
Main Methods:
- Review of clinical trial data from adaptive servoventilation and CPAP studies.
- Analysis of neuropathology case studies on medullary lesions and sudden death.
- Physiological reasoning on the effects of altered CO2 levels on cerebral blood flow.
Main Results:
- Increased mortality observed in the adaptive servoventilation group.
- CPAP effectiveness in preventing cardiovascular events in obstructive sleep apnea remains under investigation.
- Hyperventilation can lead to reduced brain blood flow, particularly in critical areas.
Conclusions:
- Further research is needed on the link between medullary autonomic brain ischemia and sudden death.
- Arterial CO2 level changes may influence the risk of sudden death in patients with medullary lesions.
- The interplay between respiratory support, CO2 levels, and medullary ischemia requires deeper investigation.
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