Department of Neuroscience, Section of Neurosurgery, Uppsala University, Uppsala SE-751 85, Sweden.
Department of Surgical Sciences/Anesthesia and Intensive Care, Uppsala University, Uppsala SE-751 85, Sweden.
J Crit Care. 2020 Dec;60:218-225. doi: 10.1016/j.jcrc.2020.08.014. Epub 2020 Aug 19.
High arterial lactate is associated with disturbed systemic physiology. Lactate can also be used as alternative cerebral fuel and it is involved in regulating cerebral blood flow. This study explored the relation of endogenous arterial lactate to systemic physiology, pressure autoregulation, cerebral energy metabolism, and clinical outcome in traumatic brain injury (TBI).
A retrospective study including 115 patients (consent given) with severe TBI treated in the neurointensive care unit, Uppsala university hospital, Sweden, 2008-2018. Data from cerebral microdialysis, arterial blood gases, hemodynamics and intracranial pressure were analyzed the first ten days post-injury.
Arterial lactate peaked on day 1 post-injury (mean 1.7 ± 0.7 mM) and gradually decreased. Higher arterial lactate correlated with lower age (p-value < 0.05), higher Marshall score (p-value < 0.05) and higher arterial glucose (p-value < 0.001) in a multiple regression analysis. Higher arterial lactate was associated with poor pressure autoregulation (p-value < 0.01), but not to worse cerebral energy metabolism. Higher arterial lactate was also associated with unfavorable clinical outcome (p-value < 0.05).
High endogenous arterial lactate is a biomarker of poor systemic physiology and may disturb cerebral blood flow autoregulation.
动脉血中乳酸水平升高与全身生理机能紊乱有关。乳酸也可以作为大脑的替代燃料,并参与调节脑血流量。本研究旨在探讨创伤性脑损伤(TBI)患者内源性动脉血乳酸与全身生理机能、压力自动调节、脑能量代谢和临床预后的关系。
本研究为回顾性研究,纳入了 2008 年至 2018 年在瑞典乌普萨拉大学医院神经重症监护病房接受治疗的 115 例严重 TBI 患者(患者同意)。分析了伤后前 10 天的脑微透析、动脉血气、血流动力学和颅内压数据。
动脉血乳酸在伤后第 1 天达到峰值(平均值 1.7±0.7mM),随后逐渐下降。多元回归分析显示,动脉血乳酸水平与年龄较小(p 值<0.05)、Marshall 评分较高(p 值<0.05)和动脉血糖较高(p 值<0.001)有关。较高的动脉血乳酸与较差的压力自动调节有关(p 值<0.01),但与脑能量代谢较差无关。较高的动脉血乳酸也与不良的临床预后有关(p 值<0.05)。
内源性动脉血乳酸水平升高是全身生理机能不良的生物标志物,可能会干扰脑血流自动调节。