首页> 外文期刊>Cell Biochemistry and Biophysics >Influence of Plasma and Cerebrospinal Fluid Levels of Endothelin-1 and No in Reducing Cerebral Vasospasm after Subarachnoid Hemorrhage During Treatment with Mild Hypothermia, in a Dog Model
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Influence of Plasma and Cerebrospinal Fluid Levels of Endothelin-1 and No in Reducing Cerebral Vasospasm after Subarachnoid Hemorrhage During Treatment with Mild Hypothermia, in a Dog Model

机译:犬亚低温治疗过程中蛛网膜下腔出血后血浆内皮素-1和脑脊液水平及No对减少蛛网膜下腔出血后脑血管痉挛的影响

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Using vascular heat-exchange controller implemented mild hypothermia treatment, the authors established the cerebral vasospasm model in which blood was injected twice into dog’s foramen magnum; and it was discussed the influence of the concentration of endothelin-1 and NO in blood plasma and cerebrospinal fluid through continuing treatment of mild hypothermia at different times in secondary brain vasospasm model after subarachnoid hemorrhage. Thirty healthy mongrel dogs were randomly divided into five groups; artificial cerebrospinal fluid group (group A), normal temperature control group (group C), mild hypothermia 8 h group (group H1), mild hypothermia 16 h group (group H2), and mild hypothermia 32 h group (group H3). The authors injected the artificial CSF into dog’s foramen magnum in group A while the other four groups were injected with autologous arterial blood. The normal group’s temperature maintained 38.5°C. The authors set the temperature at 33.5°C in mild hypothermia groups and this was maintained for 8, 16, and 32 h, respectively. ET-1 and NO levels in the cerebrospinal fluid and plasma were assayed in each group on days 0, 7, 14, and 21. Then the changes of the diameter of blood vessels of cerebral basilar artery and overall performance categories score in each group through application of CT angiography were recorded. In the cerebral vasospasm model which was constructed by injecting the blood to dog twice, mild hypothermia treatment, through the application of vascular heat-exchange controller, could reduce cerebral vasospasm. It was observed that the duration of the mild hypothermia is directly proportional to the longer duration of the relieving of cerebral vasospasm. The reciprocal changes observed in the levels of ET-1 and NO in cerebrospinal fluid and plasma revealed that it might be possible to reduce the cerebral vasospasm by regulating the rising amplitude of ET-1 and the decrease in NO in CSF and plasma.
机译:作者使用血管热交换控制器实施了温和的低温治疗,建立了脑血管痉挛模型,在该模型中,向犬的大孔中注入了两次血液。并探讨了蛛网膜下腔出血后继发性脑血管痉挛模型在不同时间连续治疗轻度体温过低对血浆和脑脊液中内皮素-1和一氧化氮浓度的影响。 30只健康的杂种犬随机分为五组。人工脑脊液组(A组),常温对照组(C组),亚低温8 h组(H1组),亚低温16 h组(H2组)和亚低温32 h组(H3组)。作者将人工脑脊液注射到A组的狗的大孔中,而其他四组则注射自体动脉血。正常人群的温度保持在38.5°C。作者将亚低温治疗组的温度设定为33.5°C,并分别维持8、16和32小时。在第0、7、14和21天分别测定各组脑脊液和血浆中的ET-1和NO水平。然后,通过各组的脑基底动脉血管直径变化和总体表现类别评分记录CT血管造影的应用情况。在通过两次向狗注射血液而构建的脑血管痉挛模型中,通过应用血管热交换控制器进行温和的低温治疗可以减轻脑血管痉挛。据观察,亚低温的持续时间与缓解脑血管痉挛的持续时间长短成正比。脑脊液和血浆中ET-1和NO水平的相互变化表明,通过调节ET-1的升高幅度和CSF和血浆中NO的减少,可能减少脑血管痉挛。

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