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Cellular iron storage and trafficking are affected by GTN stimulation in primary glial and meningeal cell culture

机译:细胞铁储存和贩运受到初级胶质和脑膜细胞培养中GTN刺激的影响

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A well-balanced intracellular iron trafficking in glial cells plays a role in homeostatic processes. Elevated intracellular iron triggers oxidative stress and cell damage in many neurological disorders, including migraine. This study aimed to investigate the effects of glyceryl trinitrate (GTN), on cellular iron homeostasis, matrixmetalloproteinase (MMP)-9, and calcitonin gene related peptide (CGRP) receptor (CRLR/CGRPR1) production in microglia, astrocyte, and meningeal cell cultures. Primary glial and meningeal cells in culture were exposed to GTN for 24 h. Messenger RNA expression was assessed using qPCR. Iron accumulation was visualized via modified Perl?s histochemistry. MMP-9 levels in cell culture supernatants were measured using ELISA. Ferritin and CRLR/CGRPR1 proteins were visualized via immunofluorescence staining. Nitric oxide production increased significantly with GTN in meningeal and glial cells. GTN significantly increased the expression of the storage protein ferritin for all three cell types, but ferritin-L for meningeal cells and microglia. Iron trafficking associated with the efflux protein ferroportin and influx protein divalent metal transporter (DMT)1 was affected differently in all three cell types. MMP-9 expression was increased in astrocytes. GTN stimulation increased both CRLR/ CGRPR1 expression, and immunostaining was apparent in microglia and meningeal cells. This study showed for the first time that GTN modulates intracellular iron trafficking regulated by storage and transport proteins expressed in meningeal cells and glia. CRLR/ CGRPR1 expression might be related to altered iron homeostasis and they both may stimulate nociceptive pathways activated in migraine. These molecules expressed differently in glial and meningeal cells in response to GTN may bring not only new targets forward in treatment but also prevention in migraine.
机译:在胶质细胞中均衡的细胞内铁贩运在稳态过程中起着作用。升高的细胞内铁触发许多神经系统疾病(包括偏头痛)的氧化应激和细胞损伤。本研究旨在探讨甘油三硝酸酯(GTN),对细胞铁袜,基质蛋白酶(MMP)-9和降钙素基因相关肽(CGRP)受体(CRLR / CGRPR1)生产在小胶质细胞,星形胶质细胞和脑膜细胞培养物中产生的影响。培养中的初级胶质和脑膜细胞暴露于GTN 24小时。使用QPCR评估信使RNA表达。通过修改的Perl?S组织化学来可视化铁累积。使用ELISA测量细胞培养上清液中的MMP-9水平。通过免疫荧光染色可视化铁蛋白和CRLR / CGRPR1蛋白质。在脑膜细胞和胶质细胞中,一氧化氮产生显着增加。 GTN显着增加了所有三种细胞类型的储存蛋白铁蛋白的表达,但对于脑膜细胞和小胶质细胞的铁蛋白-L。在所有三种细胞类型中,与流出蛋白脱盐蛋白和流入蛋白二价金属转运蛋白(DMT)1相关的铁贩运受影响。星形胶质细胞中MMP-9表达增加。 GTN刺激增加了CRLR / CGRPR1表达,并且在小胶质细胞和脑膜细胞中显而易见的免疫染色。该研究表明,GTN首次调节通过在脑膜细胞和胶状中表达的储存和转运蛋白调节的细胞内的铁贩运。 CRLR / CGRPR1表达可能与改变的铁稳态有关,它们都可以刺激在偏头痛中激活的伤害途径。这些分子在胶质和脑膜细胞中不同于GTN表达的分子可能不仅可以在治疗中前进的新靶标,而且在偏头痛中预防。

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