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低温循环停止会增加分水岭区域血脑屏障的通透性。

Hypothermic circulatory arrest increases permeability of the blood brain barrier in watershed areas.

机构信息

Children's National Heart Institute, Children's National Medical Center, Washington, DC 20010, USA.

出版信息

Ann Thorac Surg. 2010 Dec;90(6):2001-8. doi: 10.1016/j.athoracsur.2010.06.118.

Abstract

BACKGROUND

The integrity of the blood brain barrier (BBB) after cardiopulmonary bypass (CPB) with hypothermic circulatory arrest (HCA) is controversial in children. We tested the hypothesis that the BBB is disrupted by HCA.

METHODS

Forty-one piglets (mean weight 11 kg) were randomly allocated to acute and survival experiments. Five groups (25 piglets, 5 per group) underwent acute studies: anesthesia alone (control); CPB at 37°C with full-flow (FF); CPB at 25°C with very low flow (LF); HCA at 15°C, and HCA at 25°C. Two groups (16 piglets, 8 per group) underwent survival studies: CPB at 25°C with LF and HCA. In the acute studies, Evans blue dye (EBD) extravasation through the BBB into the brain was measured using two methods: EBD absorbance of homogenized brain, and immunohistochemical localization of EBD-linked albumin for cortex, caudate nucleus, thalamus, hippocampus, and cerebellum. In the survival studies, cerebral histology was assessed with hematoxylin-eosin stain after sacrifice at 4 days after surgery.

RESULTS

The BBB disruption was clearly observed around watershed areas for 25°C HCA compared with other conditions. Microscopic data showed that leakage of EBD in 25°C HCA was more severe than control in all brain areas (p < 0.05), and EBD and albumin were colocalizing. Histologic damage scores were significantly higher in watershed areas with 25°C HCA.

CONCLUSIONS

The BBB was impaired around watershed areas by 25°C HCA for 1 hour according to both macroscopic and microscopic data. An increase in permeability of the BBB may be both a sign and a mechanism of brain damage.

摘要

背景

体外循环(CPB)低温循环停止(HCA)后血脑屏障(BBB)的完整性在儿童中存在争议。我们检验了 HCA 破坏 BBB 的假设。

方法

41 头小猪(平均体重 11kg)随机分为急性和生存实验。5 组(25 头小猪,每组 5 头)进行急性研究:单独麻醉(对照组);CPB 在 37°C 时全流量(FF);CPB 在 25°C 时超低流量(LF);HCA 在 15°C,HCA 在 25°C。两组(16 头小猪,每组 8 头)进行生存研究:CPB 在 25°C 时 LF 和 HCA。在急性研究中,使用两种方法测量 EBD 通过 BBB 渗出到大脑中的量:匀浆脑的 EBD 吸光度和 EBD 结合白蛋白的免疫组化定位,用于大脑皮层、尾状核、丘脑、海马和小脑。在生存研究中,手术后 4 天处死时用苏木精-伊红染色评估脑的组织学。

结果

与其他条件相比,25°C HCA 时明显观察到 BBB 破坏在分水岭区域周围。微观数据显示,25°C HCA 时 EBD 的渗漏比对照组在所有脑区都更严重(p<0.05),EBD 和白蛋白存在共定位。在有 25°C HCA 的分水岭区域,组织学损伤评分显著更高。

结论

根据宏观和微观数据,25°C HCA 持续 1 小时可损害分水岭区域周围的 BBB。BBB 通透性增加可能既是脑损伤的标志也是机制。

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