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缺氧/缺血性损伤会改变新生大鼠大脑中铁蛋白的表达和髓鞘形成。

Hypoxic/ischemic insult alters ferritin expression and myelination in neonatal rat brains.

作者信息

Cheepsunthorn P, Palmer C, Menzies S, Roberts R L, Connor J R

机构信息

George M. Leader Family Laboratory, Department of Neuroscience and Anatomy, M.S. Hershey Medical Center, Pennsylvania State University College of Medicine, Hershey, Pennsylvania 17033, USA.

出版信息

J Comp Neurol. 2001 Mar 19;431(4):382-96. doi: 10.1002/1096-9861(20010319)431:4<382::aid-cne1077>3.0.co;2-#.

Abstract

Ferritin is expressed very early in the development of oligodendrocytes. This protein makes iron available within cells while providing some protection from iron-induced oxidative damage. In the developing rat brain, ferritin is found initially in microglia followed by oligodendrocytes in a temporal and spatial pattern that coincides with the expression of myelin. In this study, we test the hypothesis that hypoxic/ischemic (H/I) insult will alter the expression of ferritin in microglia and oligodendrocytes, resulting in a delay in the appearance of myelin markers. Seven-day-old rat pups were exposed to H/I insult. Within 24 hours, after the insult, there is an increase in ferritin-positive amoeboid microglia and a decrease in immunohistochemical reaction for the myelin marker Rip in the brain. The oligodendrocyte marker 2'-3'-cyclic nucleotide 3'-phosphodiesterase is elevated in the H/I hemisphere relative to the hypoxia-only hemisphere between 8 and 15 days after insult. By 23 days after the insult, the subcortical white matter segregates into areas that contain ferritin-positive microglia and are devoid of Rip-positive oligodendrocytes or areas with Rip-positive cells and no ferritin-positive microglia. The H/I insult also affects the ratio of H-rich to L-rich ferritin expression at most of the time periods. These results demonstrate that the type of ferritin, its cellular distribution and the normal pattern of subcortical white matter myelination is affected by H/I. We propose that the absence of ferritin in oligodendrocytes prohibits them from storing sufficient iron to meet the synthetic and metabolic demands associated with myelination.

摘要

铁蛋白在少突胶质细胞发育的早期就有表达。这种蛋白质可使细胞内的铁得以利用,同时提供一定保护,防止铁诱导的氧化损伤。在发育中的大鼠脑中,铁蛋白最初在小胶质细胞中发现,随后在少突胶质细胞中出现,其时间和空间模式与髓鞘的表达一致。在本研究中,我们检验了以下假设:缺氧/缺血(H/I)损伤会改变小胶质细胞和少突胶质细胞中铁蛋白的表达,导致髓鞘标志物出现延迟。将7日龄的大鼠幼崽暴露于H/I损伤。损伤后24小时内,脑内铁蛋白阳性的阿米巴样小胶质细胞增加,髓鞘标志物Rip的免疫组化反应减少。在损伤后8至15天,少突胶质细胞标志物2'-3'-环核苷酸3'-磷酸二酯酶在H/I半球相对于仅缺氧半球升高。损伤后23天,皮质下白质分离为含有铁蛋白阳性小胶质细胞且无Rip阳性少突胶质细胞的区域,或含有Rip阳性细胞且无铁蛋白阳性小胶质细胞的区域。H/I损伤在大多数时间段也会影响富H型铁蛋白与富L型铁蛋白表达的比例。这些结果表明,H/I会影响铁蛋白的类型、其细胞分布以及皮质下白质髓鞘形成的正常模式。我们提出,少突胶质细胞中缺乏铁蛋白会使其无法储存足够的铁以满足与髓鞘形成相关的合成和代谢需求。

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