急性局部缺血性损伤后人脑灰质神经元和星形胶质细胞的结构变化。

S P Sergeeva, L V Shishkina, P F Litvitskiy, I D Breslavich, E V Vinogradov
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引用次数: 0

摘要

目的探讨急性局部脑缺血人皮层星形胶质细胞和神经元的关键形态学特征。研究对象和方法:左侧大脑中动脉缺血性卒中死亡患者(n = 9)脑组织标本取自3个区域:第1区邻近组织坏死损伤部位区,第2区距前1区5 ~ 10 cm,第3区对侧半球损伤部位对称区。GFAP、MAP-2、NSE、p53检测均采用间接免疫过氧化物酶免疫组化染色法。尼氏染色和苏木精-伊红染色。结果:缺血性脑卒中左脑中动脉坏死性核心区直接邻区星形胶质细胞和神经元的数量和形态结构变化最为显著。这表明神经组织化学破坏区域周围炎症过程的普遍性。坏死核附近(距坏死核5 ~ 10 cm)及对侧半球缺血性灶对称部位出现神经元和星形胶质细胞形态学改变、凋亡、神经元-星形胶质细胞相互作用增强。这种相互作用对局部缺血性脑损伤中神经可塑性的实现至关重要。结论:局部脑皮质缺血性损伤不仅在病变部位,而且在对侧半球也发生神经组织形态学改变。这些变化可能与神经可塑性的实施有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structure changes of human brain gray matter neurons and astrocytes in acute local ischemic injury.

The purpose to identify key morphological features of the Astrocytes and Neurons in the acute local cerebral ischemia human cortex.

Subjects and methods: Left middle cerebral artery ischemic stroke died persons (n = 9) brain tissue samples from 3 zones: 1st - contiguous to the tissue necrotic damage site zone, 2nd - 5-10 cm distant from the previous one, 3rd - the damage site symmetrical zone of the contralateral hemisphere. For GFAP, MAP-2, NSE, p53 detection indirect immunoperoxidase immunohistochemical staining method has been used. Also, the samples were Nissl and Hematoxylin-Eosin stained.

Results: The most pronounced changes in the quantity and morphological structure of astrocytes and neurons are found in directly adjacent to the necrotic core region of theleft middle cerebral artery ischemic stroke brain. This indicates the prevalence of the inflammation processes around the area of nerve tissueischemic destruction. Morphological changes of neurons and astrocytes, apoptosis, enhanced neuron-astrocyte interaction found in the area bordering on necrotic core (5-10 cm from it), as well as ischemic hearth symmetrical sites of the contralateral hemisphere. This interaction is essential for the neuroplasticityrealization in the local ischemic brain injury.

Conclusion: The results obtained were shown the nerve tissue morphological characteristics changes occur in local cerebral cortex ischemic injury not only in the lesion, but also in the contralateral hemisphere. These changes are probably related to the implementation of neuroplasticity.

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