Key result
Propofol-induced burst suppression significantly reduces cerebral blood flow and metabolism during cardiopulmonary bypass.
Why the study?
CNS complications after cardiac surgery have increased despite decreased cardiac deaths, prompting evaluation of cerebral protection by burst suppression doses of propofol during nonpulsatile cardiopulmonary bypass.
Does propofol infused to maintain EEG burst suppression alter cerebral blood flow and metabolism in patients undergoing nonpulsatile cardiopulmonary bypass?
RCT (n=30)
randomized
Does propofol infused to maintain EEG burst suppression alter cerebral blood flow and metabolism in patients undergoing nonpulsatile cardiopulmonary bypass?
p-value: p=<0.05
Burst suppression doses of propofol significantly reduce cerebral blood flow and metabolic rate during cardiopulmonary bypass, suggesting a potential to reduce cerebral exposure to embolic load.
Propofol burst suppression reduces CBF and CMRO2 during CPB with preserved coupling; leaves open neuroprotective potential pending larger outcome trials.
Central nervous system (CNS) complications are common after cardiac surgery.Death due to cardiac causes has decreased, but the number of deaths due to CNS injury has increased. As a first stage in the evaluation of its cerebral protection potential, we evaluated the cerebral physiologic effects of burst suppression doses of propofol during nonpulsatile cardiopulmonary bypass. Thirty patients without history of cerebral vascular disease were randomized to two study groups: control group (n = 15) who received sufentanil and vecuronium, or propofol group (n = 15) who received the control anesthetic and propofol infused to maintain electroencephalogram (EEG) burst suppression. Catheters were placed in the radial artery and right jugular bulb for sampling of systemic arterial and jugular bulb venous blood.133 Xe clearance was used to determine cerebral blood flow (CBF) at the start of normothermic bypass, during stable hypothermia, and when rewarmed to 35-37 degrees C nasopharyngeal temperature. Pharmacologic burst suppression with propofol produced a statistically significant reduction in CBF, cerebral oxygen delivery (DO2), and cerebral metabolic rate (CMRO2) at each measurement interval (P < 0.05 vs control). Cerebral arterial venous oxygen difference (C(a-V)O2), and jugular bulb venous oxygen saturation (SJVO2) were not statistically different between groups, indicating maintenance of cerebral metabolic autoregulation (coupling). The reduction in CBF and CMRO2, prominent during the normothermic phases of cardiopulmonary bypass (CPB), indicates a potential for propofol to reduce cerebral exposure to the embolic load during CPB. (Anesth Analg 1995;81:452-7)
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Newman et al. (1995) conducted an RCT in Cardiac surgery requiring nonpulsatile cardiopulmonary bypass (n=30). Propofol vs. Sufentanil and vecuronium was evaluated on Cerebral blood flow (CBF), cerebral oxygen delivery (DO2), and cerebral metabolic rate (CMRO2) (p=<0.05). Burst suppression doses of propofol significantly reduced cerebral blood flow, oxygen delivery, and metabolic rate during nonpulsatile cardiopulmonary bypass compared to control (P<0.05).
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