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Impact of Enzymatic Degradation of the Endothelial Glycocalyx on Vascular Permeability in an Awake Hamster Model

机译:酶催化降解内皮糖萼对清醒仓鼠模型中血管渗透性的影响

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Background. The inside of the endothelium is covered by a glycocalyx layer, and enzymatic degradation of this layer induces vascular leakageex vivo. We hypothesized that enzymatic degrading of the glycocalyx in anin vivo, whole body model, would induce plasma leakage and affect the microcirculation.Methods. Golden Syrian hamsters were divided into an enzyme (hyaluronidase) and a control group. Mean arterial pressure (MAP), heart rate (HR), hematocrit (Hct), base excess (BE), and plasma volume were obtained before, 45 and 120 min after enzyme/saline treatment. Plasma volume was evaluated by the distribution volume of indocyanine green and the microcirculation by functional capillary density (FCD). The enzymatic effect was determined by measuring plasma levels of hyaluronan (HA).Results. There were no differences in MAP, HR, Hct, and BE between the two groups. Enzyme treatment did not induce changes in plasma volume but reduced FCD. There was a 50–100-fold increase in plasma HA, but no relationship was found between HA levels and plasma volume or FCD.Conclusion. Vascular leakage was not confirmed in anin vivo, whole body model after degradation of the endothelial glycocalyx. The microcirculation was affected, but no relationship between plasma levels of HA and FCD was seen.
机译:背景。内皮的内部被糖萼层覆盖,并且该层的酶促降解诱导离体的血管渗漏。我们假设在体内,全身模型中糖萼的酶促降解会诱导血浆渗漏并影响微循环。金色叙利亚仓鼠分为酶(透明质酸酶)和对照组。在酶/盐水处理之前,45分钟和120分钟后,获得平均动脉压(MAP),心率(HR),血细胞比容(Hct),碱过量(BE)和血浆体积。通过吲哚菁绿的分布体积和通过功能性毛细血管密度(FCD)的微循环来评估血浆体积。通过测量血浆透明质酸(HA)的水平来确定酶的作用。两组之间的MAP,HR,Hct和BE没有差异。酶处理不会引起血浆容量的变化,但会降低FCD。血浆HA升高了50-100倍,但是HA水平与血浆容量或FCD之间没有关系。结论。在内皮糖萼降解后的体内,全身模型中未确认到血管渗漏。微循环受到影响,但未观察到HA和FCD血浆水平之间的关系。

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