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人血脑屏障体外模型中的缺氧诱导炎症:嗅鞘细胞条件培养基的调节作用

Hypoxia-Induced Inflammation in In Vitro Model of Human Blood-Brain Barrier: Modulatory Effects of the Olfactory Ensheathing Cell-Conditioned Medium.

作者信息

Agafonova Aleksandra, Cosentino Alessia, Musso Nicolò, Prinzi Chiara, Russo Cristina, Pellitteri Rosalia, Anfuso Carmelina Daniela, Lupo Gabriella

机构信息

Department of Biomedical and Biotechnological Sciences, School of Medicine, University of Catania, 95123, Catania, Italy.

CNR-IRIB: Institute for Biomedical Research and Innovation, National Research Council, 95126, Catania, Italy.

出版信息

Mol Neurobiol. 2025 Apr;62(4):4008-4022. doi: 10.1007/s12035-024-04517-6. Epub 2024 Oct 7.

Abstract

Hypoxia compromises the integrity of the blood-brain barrier (BBB) and increases its permeability, thereby inducing inflammation. Olfactory ensheathing cells (OECs) garnered considerable interest due to their neuroregenerative and anti-inflammatory properties. Here, we aimed to investigate the potential modulatory effects of OEC-conditioned medium (OEC-CM) on the response of human brain microvascular endothelial cells (HBMECs), constituting the BBB, when exposed to hypoxia. HBMECs were utilized to establish the in vitro BBB model. OECs were isolated from mouse olfactory bulbs, and OEC-CM was collected after 48 h of culture. The effect of OEC-CM treatment on the HBMEC viability was evaluated under both normoxic and hypoxic conditions at 6 h, 24 h, and 30 h. Western blot and immunostaining techniques were employed to assess NF-κB/phospho-NF-κB expression. HIF-1α, VEGF-A, and cPLA mRNA expression levels were quantified using digital PCR. ELISA assays were performed to measure PGE2, VEGF-A, IL-8 secretion, and cPLA specific activity. The in vitro formation of HBMEC capillary-like structures was examined using a three-dimensional matrix system. OEC-CM attenuated pro-inflammatory responses and mitigated the HIF-1α/VEGFA signaling pathway activation in HBMECs under hypoxic condition. Hypoxia-induced damage of the BBB can be mitigated by novel therapeutic strategies harnessing OEC potential.

摘要

缺氧会损害血脑屏障(BBB)的完整性并增加其通透性,从而引发炎症。嗅鞘细胞(OECs)因其神经再生和抗炎特性而备受关注。在此,我们旨在研究OEC条件培养基(OEC-CM)对构成血脑屏障的人脑微血管内皮细胞(HBMECs)在缺氧状态下反应的潜在调节作用。利用HBMECs建立体外血脑屏障模型。从小鼠嗅球中分离出OECs,并在培养48小时后收集OEC-CM。在常氧和缺氧条件下,分别于6小时、24小时和30小时评估OEC-CM处理对HBMECs活力的影响。采用蛋白质免疫印迹法和免疫染色技术评估NF-κB/磷酸化-NF-κB的表达。使用数字PCR定量检测HIF-1α、VEGF-A和cPLA mRNA的表达水平。通过ELISA测定法检测PGE2、VEGF-A、IL-8的分泌以及cPLA的比活性。使用三维基质系统检测HBMECs体外毛细血管样结构的形成。在缺氧条件下,OEC-CM减弱了HBMECs中的促炎反应,并减轻了HIF-1α/VEGFA信号通路的激活。利用OEC潜能的新型治疗策略可减轻缺氧诱导的血脑屏障损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a4d/11880059/cd017b5dfcba/12035_2024_4517_Fig1_HTML.jpg

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