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液体负荷和高渗盐水溶液对皮质脑微循环和糖萼完整性的影响。

The Effect of Fluid Loading and Hypertonic Saline Solution on Cortical Cerebral Microcirculation and Glycocalyx Integrity.

机构信息

Departments of Anesthesiology and Intensive Care Medicine.

Departments of Anaesthesia, Pain Management and Perioperative Medicine, Dalhousie University, Halifax, NS, Canada.

出版信息

J Neurosurg Anesthesiol. 2019 Oct;31(4):434-443. doi: 10.1097/ANA.0000000000000528.

Abstract

BACKGROUND

Fluid loading and hyperosmolar solutions can modify the cortical brain microcirculation and the endothelial glycocalyx (EG). This study compared the short-term effects of liberal fluid loading with a restrictive fluid intake followed by osmotherapy with hypertonic saline (HTS) on cerebral cortical microcirculation and EG integrity in a rabbit craniotomy model.

METHODS

The experimental rabbits were allocated randomly to receive either <2 mL/kg/h (group R, n=14) or 30 mL/kg/h (group L, n=14) of balanced isotonic fluids for 1 hour. Then, the animals were randomized to receive 5 mL/kg intravenous infusion of either 3.2% saline (group HTS, n=14) or 0.9% saline (group normal saline, n=13) in a 20-minute infusion. Microcirculation in the cerebral cortex based on sidestream dark-field imaging, a morphologic index of glycocalyx damage to sublingual and cortical brain microcirculation (the perfused boundary region), and serum syndecan-1 levels were evaluated.

RESULTS

Lower cortical brain perfused small vessel density (P=0.0178), perfused vessel density (P=0.0286), and total vessel density (P=0.0447) were observed in group L, compared with group R. No differences were observed between the HTS and normal saline groups after osmotherapy. Cerebral perfused boundary region values (P=0.0692) and hematocrit-corrected serum syndecan-1 levels (P=0.0324) tended to be higher in group L than in group R animals.

CONCLUSIONS

Liberal fluid loading was associated with altered cortical cerebral microcirculation and EG integrity parameters. The 3.2% saline treatment did not affect cortical cerebral microcirculation or EG integrity markers.

摘要

背景

液体负荷和高渗溶液可以改变皮质脑微循环和内皮糖萼(EG)。本研究比较了自由液体负荷与限制液体摄入后接受高渗盐水(HTS)渗透治疗对兔颅骨切开模型皮质脑微循环和 EG 完整性的短期影响。

方法

实验兔随机分为 1 小时内接受 <2 mL/kg/h(组 R,n=14)或 30 mL/kg/h(组 L,n=14)的平衡等渗液。然后,动物随机接受 5 mL/kg 静脉输注 3.2%盐水(组 HTS,n=14)或 0.9%盐水(组生理盐水,n=13),输注时间为 20 分钟。基于边流暗场成像评估皮质脑微循环的微循环,评估舌下和皮质脑微循环(灌注边界区)的糖萼损伤形态学指标以及血清 syndecan-1 水平。

结果

与组 R 相比,组 L 皮质脑小血管灌注密度(P=0.0178)、灌注血管密度(P=0.0286)和总血管密度(P=0.0447)较低。渗透治疗后,HTS 组与生理盐水组之间无差异。与组 R 动物相比,组 L 动物的脑灌注边界区值(P=0.0692)和红细胞压积校正后的血清 syndecan-1 水平(P=0.0324)偏高。

结论

自由液体负荷与皮质脑微循环和 EG 完整性参数改变有关。3.2%盐水治疗不影响皮质脑微循环或 EG 完整性标志物。

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