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一种新型微透析探头,用于胎儿监护期间连续乳酸测量:动物模型中的概念验证。

A new microdialysis probe for continuous lactate measurement during fetal monitoring: Proof of concept in an animal model.

机构信息

Faculty of Medical Sciences, University of Groningen, Groningen, the Netherlands.

Department of Epidemiology, University of Groningen, University Medical Center Groningen, Groningen, the Netherlands.

出版信息

Acta Obstet Gynecol Scand. 2020 Oct;99(10):1411-1416. doi: 10.1111/aogs.13865. Epub 2020 Apr 21.

Abstract

INTRODUCTION

Cardiotocography (CTG) is currently the most commonly used method for intrapartum fetal monitoring during labor. However, a high false-positive rate of fetal acidosis indicated by CTG leads to an increase in obstetric interventions. We developed a microdialysis probe that is integrated into a fetal scalp electrode allowing continuous measurement of lactate subcutaneously, thus giving instant information about the oxygenation status of the fetus. Our aim was to establish proof of concept in an animal model using a microdialysis probe to monitor lactate subcutaneously.

MATERIAL AND METHODS

We performed an in vivo study in adult male wild-type Wistar rats. We modified electrodes used for CTG monitoring in human fetuses to incorporate a microdialysis membrane. Optimum flow rates for microdialysis were determined in vitro. For the in vivo experiment, a microdialysis probe was inserted into the skin on the back of the animal. De-oxygenation and acidosis were induced by lowering the inspiratory oxygen pressure. Oxygenation and heart rate were monitored. A jugular vein cannula was inserted to draw blood samples for analysis of lactate, pH, pco , and saturation. Lactate levels in dialysate were compared with plasma lactate levels.

RESULTS

Baseline blood lactate levels were around 1 mmol/L. Upon de-oxygenation, oxygen saturation fell to below 40% for 1 h and blood lactate levels increased 2.5-fold. Correlation of dialysate lactate levels with plasma lactate levels was 0.89 resulting in an R of .78 in the corresponding linear regression.

CONCLUSIONS

In this animal model, lactate levels in subcutaneous fluid collected by microdialysis closely reflected blood lactate levels upon transient de-oxygenation, indicating that our device is suitable for subcutaneous measurement of lactate. Microdialysis probe technology allows the measurement of multiple compounds in the dialysate, such as glucose, albumin, or inflammatory mediators, so this technique may offer the unique possibility to shed light on fetal physiology during the intrapartum period.

摘要

简介

胎心监护(CTG)目前是分娩过程中胎儿监测最常用的方法。然而,CTG 指示的胎儿酸中毒的高假阳性率导致产科干预增加。我们开发了一种微透析探头,该探头集成到胎儿头皮电极中,可以连续测量皮下乳酸,从而即时提供有关胎儿氧合状态的信息。我们的目的是使用微透析探头在动物模型中建立概念验证,以监测皮下乳酸。

材料和方法

我们在成年雄性野生型 Wistar 大鼠中进行了一项体内研究。我们修改了用于 CTG 监测的电极,将其与微透析膜结合。在体外确定了微透析的最佳流速。在体内实验中,将微透析探头插入动物背部皮肤。通过降低吸气氧压来诱导脱氧和酸中毒。监测氧合和心率。插入颈内静脉插管以抽取血液样本进行乳酸、pH、pco 和饱和度分析。比较透析液中的乳酸水平与血浆中的乳酸水平。

结果

基线血液乳酸水平约为 1 mmol/L。脱氧时,氧饱和度在 1 小时内降至 40%以下,血液乳酸水平增加了 2.5 倍。透析液中乳酸水平与血浆乳酸水平的相关性为 0.89,相应线性回归的 R 为 0.78。

结论

在这个动物模型中,通过微透析收集的皮下液中的乳酸水平在短暂脱氧时与血液乳酸水平密切相关,这表明我们的设备适用于皮下乳酸的测量。微透析探头技术允许测量透析液中的多种化合物,如葡萄糖、白蛋白或炎症介质,因此这项技术可能为分娩期间胎儿生理学提供独特的研究可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2f8/7540415/28a09163cffd/AOGS-99-1411-g001.jpg

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