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生发基质微血管成熟与新生儿脑室内出血的风险期呈负相关。

Germinal matrix microvascular maturation correlates inversely with the risk period for neonatal intraventricular hemorrhage.

作者信息

Ment L R, Stewart W B, Ardito T A, Madri J A

机构信息

Department of Pediatrics, Yale University School of Medicine, New Haven, CT 06510, USA.

出版信息

Brain Res Dev Brain Res. 1995 Jan 14;84(1):142-9. doi: 10.1016/0165-3806(94)00168-y.

Abstract

The risk period for intraventricular hemorrhage (IVH) of the preterm neonate is the first 3-4 postnatal days. For infants of < 34 weeks' gestation, this risk period is independent of gestational age. We hypothesized that this risk period is attributable to the perinatal induction of maturation of the germinal matrix microvasculature and tested this hypothesis by examining changes in the classical ultrastructural features of the blood-brain barrier over the first ten postnatal days in the newborn beagle model for neonatal IVH. Newborn beagle pups (n = 6) were anesthetized and systemically perfused and the brains were removed and prepared for electron microscopic examination. Examination of electron micrographs from the germinal matrix of animals on the first, fourth and tenth postnatal days demonstrated no difference in perimeter lengths and capillary and endothelial cell areas; in contrast, luminal areas significantly decreased across postnatal age (P = 0.04). Significant increases were found in basement membrane area between days 1 and 4 (P = 0.01) and tight junction length (day 1 vs. day 10, P = 0.02). In addition, on day 1, 19% of germinal matrix capillary perimeter was determined not to be covered by supporting cell processes, while by day 10, only 5% was bare. In contrast, the microvessels of the white matter exhibited no changes in these parameters during these three time points. These studies are consistent with the concept that basal lamina deposition and organization precede increases in endothelial cell tight junction formation and coverage by supporting cells.

摘要

早产儿脑室内出血(IVH)的风险期是出生后的前3 - 4天。对于孕周小于34周的婴儿,该风险期与孕周无关。我们推测这个风险期归因于围产期生发基质微血管成熟的诱导,并通过检查新生比格犬新生儿IVH模型出生后前十天血脑屏障经典超微结构特征的变化来验证这一假设。将新生比格犬幼崽(n = 6)麻醉并进行全身灌注,然后取出大脑并准备进行电子显微镜检查。对出生后第一天、第四天和第十天动物生发基质的电子显微镜照片检查显示,周长、毛细血管和内皮细胞面积没有差异;相比之下,管腔面积在出生后各年龄段显著减小(P = 0.04)。在第1天和第4天之间,基底膜面积显著增加(P = 0.01),紧密连接长度也显著增加(第1天与第10天相比,P = 0.02)。此外,在第1天,19%的生发基质毛细血管周长未被支持细胞突起覆盖,而到第10天,只有5%是裸露的。相比之下,白质微血管在这三个时间点这些参数没有变化。这些研究与基底膜沉积和组织先于内皮细胞紧密连接形成增加以及支持细胞覆盖的概念一致。

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