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Effect of gangliosides on LPS stimulation and nitric oxide release in porcine kidney cell line PK15

机译:神经节苷脂对猪肾细胞PK15脂多糖刺激和一氧化氮释放的影响

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摘要

Gangliosides, which are glycosphingolipids containing sialic acid, play important regulatory roles in cell proliferation and adhesion, survival and immunosuppressive activity. In this study, we investigated whether gangliosides can affect cell viability in the porcine kidney (PK) cell line, PK15, when stimulated with lipopolysaccharide (LPS). As the amount of LPS that PK15 cells were treated with was increased, the cell proliferation decreased, whereas nitric oxide (NO) production increased. High-performance thin-layer chromatography (HPTLC) and immunofluorescence analyses showed that GM3 and GM2 ganglioside expression significantly decreased in LPS-stimulated PK15 compared to unstimulated PK15. UDP-glucose ceramide glucosyltransferase (Ugcg), which catalyzes the initial step in the glycosphingolipid biosynthesis pathway, was knocked-down in PK15 by using short hairpin RNA (shRNA). Western blot and HPTLC analyses showed that the Ugcg protein expression decreased and the ganglioside expression decreased in the Ugcg-knockdown (UKD) PK15. There was a greater decrease in cell proliferation in LPS-stimulated UKD PK15 cells than in LPS-stimulated PK15 cells without the UKD. However, the increase in NO release was greater in LPS-stimulated UKD PK15 cells than in LPS-stimulated PK15 cells without the UKD. These findings suggest that gangliosides may interact with components of the inflammatory response pathway and, thus, are relevant for the design of future therapeutic strategies intended to prolong xenotransplantation.
机译:神经节苷脂是含有唾液酸的糖鞘脂,在细胞增殖和粘附,存活和免疫抑制活性中起重要的调节作用。在这项研究中,我们调查了当用脂多糖(LPS)刺激时,神经节苷脂是否会影响猪肾脏(PK)细胞系PK15中的细胞活力。随着处理PK15细胞的LPS数量增加,细胞增殖减少,而一氧化氮(NO)产量增加​​。高性能薄层色谱(HPTLC)和免疫荧光分析表明,与未刺激的PK15相比,LPS刺激的PK15中GM3和GM2神经节苷脂的表达显着降低。通过使用短发夹RNA(shRNA)在PK15中敲低了催化糖鞘脂生物合成途径初始步骤的UDP-葡萄糖神经酰胺葡萄糖基转移酶(Ugcg)。 Western印迹和HPTLC分析表明,在敲除Ugcg(UKD)PK15中,Ugcg蛋白表达降低,神经节苷脂表达降低。与没有UKD的LPS刺激的PK15细胞相比,LPS刺激的UKD PK15细胞的细胞增殖下降更大。然而,与没有UKD的LPS刺激的PK15细胞相比,LPS刺激的UKD PK15细胞的NO释放增加更大。这些发现表明神经节苷脂可能与炎症反应途径的成分相互作用,因此,与旨在延长异种移植的未来治疗策略的设计有关。

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