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首页> 外文期刊>Cell biochemistry and function >Changes in pericytic expression of NG2 and PDGFRB and vascular permeability in the sensory circumventricular organs of adult mouse by osmotic stimulation
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Changes in pericytic expression of NG2 and PDGFRB and vascular permeability in the sensory circumventricular organs of adult mouse by osmotic stimulation

机译:渗透刺激下成年小鼠感觉室周器官中NG2和PDGFRB的周细胞表达和血管通透性的变化

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摘要

The blood-brain barrier (BBB) is a barrier that prevents free access of blood-derived substances to the brain through the tight junctions and maintains a specialized brain environment. Circumventricular organs (CVOs) lack the typical BBB. The fenestrated vasculature of the sensory CVOs, including the organum vasculosum of the lamina terminalis (OVLT), subfornical organ (SFO) and area postrema (AP), allows parenchyma cells to sense a variety of blood-derived information, including osmotic ones. In the present study, we utilized immunohistochemistry to examine changes in the expression of NG2 and platelet-derived growth factor receptor beta (PDGFRB) in the OVLT, SFO and AP of adult mice during chronic osmotic stimulation. The expression of NG2 and PDGFRB was remarkably prominent in pericytes, although these angiogenesis-associated proteins are highly expressed at pericytes of developing immature vasculature. The chronic salt loading prominently increased the expression of NG2 in the OVLT and SFO and that of PDGFRB in the OVLT, SFO and AP. The vascular permeability of low-molecular-mass tracer fluorescein isothiocyanate was increased significantly by chronic salt loading in the OVLT and SFO but not AP. In conclusion, the present study demonstrates changes in pericyte expression of NG2 and PDGFRB and vascular permeability in the sensory CVOs by chronic osmotic stimulation, indicating active participation of the vascular system in osmotic homeostasis.
机译:血脑屏障(BBB)是一种屏障,可防止血源性物质通过紧密的连接自由进入大脑,并维持专门的大脑环境。室间隔器官(CVO)缺乏典型的血脑屏障。感官CVO的有开孔的脉管系统,包括椎板的器官管(OVLT)​​,分支下器官(SFO)和视网膜后区域(AP),使实质细胞能够感知各种血液来源的信息,包括渗透信息。在本研究中,我们利用免疫组织化学检查了成年小鼠在慢性渗透刺激过程中OVLT,SFO和AP中NG2和血小板衍生的生长因子受体β(PDGFRB)的表达变化。尽管这些血管新生相关蛋白在发育中的未成熟脉管系统的周细胞中高表达,但NG2和PDGFRB的表达在周细胞中显着突出。长期盐负荷显着增加了OVLT和SFO中NG2的表达,并增加了OVLT,SFO和AP中PDGFRB的表达。低分子示踪剂荧光素异硫氰酸酯的血管通透性通过OVLT和SFO中的长期盐加载而显着增加,但AP中却没有。总之,本研究证明了慢性渗透刺激下CVOs NG2和PDGFRB周细胞表达和血管通透性的变化,表明血管系统积极参与了渗透稳态。

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