首页> 外文期刊>Bulletin of experimental biology and medicine >Comparative Study of HIF-1α- and HIF-2α-Immunopositive Neurons and Capillaries in Rat Cortex under Conditions of Tissue Hypoxia
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Comparative Study of HIF-1α- and HIF-2α-Immunopositive Neurons and Capillaries in Rat Cortex under Conditions of Tissue Hypoxia

机译:HIF-1α-和HIF-2α-免疫阳性神经元和毛细血管在组织缺氧条件下大鼠皮质毛细血管的比较研究

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摘要

We measured the content of HIF-1α and HIF-2α-immunopositive neurons and microvessels in the brain of Wistar rats during the first 24 h of tissue hypoxia induced by subcutaneous injection of cobalt dichloride (50 mg/kg). In control rats (without hypoxia), immunohistochemical marker HIF-2α in cortex of parietal lobe was not detected, and HIF-1α was detected only in few weakly stained pale neurons and capillaries. In 30 min after injection of the cobalt salt, the number of HIF-1α_(+)neurons increased by 25.6% (in capillaries by 12.3%), many of these were characterized by intensive reaction; the quantitative parameters reached their maximum level within 1-3 h. However, the concentration of immunopositive neurons returned to the control values in 6 h after hypoxia modeling (capillaries in 9 h). In contrast to HIF-1α, the number of neurons and capillaries containing HIF-2α reached a maximum level in 6-12 h of hypoxia. The relative density of HIF-2α_(+)capillaries increased most pronouncedly (by 23.6%); the relative density of neurons increased by 18.9%. The relative density of HIF-2α_(+)cells did not change significantly to the end of the experiment. Thus, HIF-1α is more essential for regulation of adaptation to hypoxia in neurons and HIF-2α is more important for the endothelium of microvessels.
机译:在通过皮下注射钴二氯化钴(50mg / kg)诱导的组织缺氧期间,测量HIF-1α和HIF-2α-IMURUNIVE神经元和微血管的含量。在对照大鼠(没有缺氧)中,未检测到垂直叶片皮质中的免疫组织化学标志物HIF-2α,并且仅在很少有弱染色的苍白神经元和毛细血管中检测到HIF-1α。在注射钴盐后30分钟,HIF-1α_(+)神经元的数量增加了25.6%(毛细血管12.3%),其中许多是通过密集反应的特征;定量参数在1-3小时内达到其最大水平。然而,在缺氧建模后6小时内恢复到对照值的免疫效神经元的浓度(9小时内毛细管)。与HIF-1α相比,含有HIF-2α的神经元和毛细管的数量达到缺氧6-12小时的最高水平。 HIF-2α_(+)毛细血管的相对密度最宣布(乘23.6%);神经元的相对密度增加了18.9%。 HIF-2α_(+)细胞的相对密度在实验结束时没有显着变化。因此,HIF-1α更为必要的是对神经元缺氧调节的调节,HIF-2α对微血管内皮更重要。

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