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母体妊娠高血压会改变未成熟大脑对缺氧缺血的反应:连续磁共振成像和行为研究。

Maternal hypertension during pregnancy modifies the response of the immature brain to hypoxia-ischemia: sequential MRI and behavioral investigations.

机构信息

CERVOxy Team Hypoxia and Cerebrovascular Pathophysiology, UMR CI-NAPS 6232, CNRS, CEA, Université de Caen Basse-Normandie, Centre CYCERON, Bd Henri Becquerel, BP5229, 14074 CAEN cedex, France.

出版信息

Exp Neurol. 2012 Jan;233(1):264-72. doi: 10.1016/j.expneurol.2011.10.014. Epub 2011 Oct 25.

Abstract

Hypoxic-ischemic (HI) brain injury occurring during the perinatal period is still a major cause of mortality and morbidity. We assessed the impact of maternal hypertension, the most common medical disorder of pregnancy, on the anatomical and functional consequences of HI insult in the immature brain. Rat pups from spontaneously hypertensive (SHR) and normotensive (Wistar Kyoto - WKY) dams were subjected to HI brain damage at post-natal day 7 (P7). Brain lesion and functional deficits were analyzed from 10 min to 35 days after HI, using magnetic resonance imaging (MRI), sensorimotor and cognitive tests. MRI data revealed that SHR pups displayed less brain damage than WKY, attested by an initial smaller lesion followed by a reduced tissue loss at chronic stage (57.1±21.6 and 31.1±27% ipsilateral hemisphere atrophy in WKY and SHR, respectively). Behavioral analyses showed less HI-induced behavioral deficits in motor coordination (rotarod test) and spatial learning (Morris water maze test) in pups from hypertensive dams compared to those from normotensive ones. The data suggest that maternal hypertension causes prenatal stress that may render the immature brain more resistant to subsequent hypoxia-ischemia, related to a preconditioning phenomenon.

摘要

围产期缺氧缺血性(HI)脑损伤仍然是导致死亡率和发病率的主要原因。我们评估了最常见的妊娠疾病——母体高血压对未成熟大脑中 HI 损伤的解剖和功能后果的影响。自发性高血压(SHR)和正常血压(Wistar Kyoto - WKY)大鼠幼仔在出生后第 7 天(P7)接受 HI 脑损伤。使用磁共振成像(MRI)、感觉运动和认知测试,从 HI 后 10 分钟到 35 天分析脑损伤和功能缺陷。MRI 数据显示,SHR 幼仔的脑损伤小于 WKY,这表现在初始较小的损伤,随后在慢性阶段(WKY 和 SHR 的同侧大脑半球萎缩分别为 57.1±21.6%和 31.1±27%)。行为分析表明,与来自正常血压的幼仔相比,来自高血压母体的幼仔在运动协调(转棒测试)和空间学习(Morris 水迷宫测试)方面,HI 引起的行为缺陷较少。这些数据表明,母体高血压导致产前应激,可能使未成熟的大脑对随后的缺氧缺血更具抵抗力,这与预处理现象有关。

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