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Effects of plasmalogens on systemic lipopolysaccharide-induced glial activation and β-amyloid accumulation in adult mice

机译:疟原虫对成年小鼠血液多糖诱导的全身脂多糖诱导的胶质激活和β-淀粉样蛋白积累的影响

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Neuroinflammation essentially involves an activation of glial cells as the cause/effect of neurodegenerative diseases such as Alzheimer's disease (AD). Plasmalogens (Pls) are glycerophospholipids constituting cellular membranes and play significant roles in membrane fluidity and cellular processes like vesicular fusion and signal transduction. Intraperitoneal (i.p.) injection of lipopolysaccharide (LPS, 250 μg/kg) for 7 days resulted in the morphological changes and increase in number of Iba-1+ microglia showing neuroinflammation in the adult mouse hippocampus. The LPS-induced activation of glial cells was significantly attenuated by i.p. pretreatment with Pls dissolved in corn oil. In addition, systemic injection of LPS induced Aβ1-16+ neurons in the hippocampus were also abolished by application of Pls. Finally, contents of Pls in the hippocampus decreased after LPS injection, and the reduction was suppressed by administration of Pls. These findings suggest an antiamyloidogenic effect of Pls, implicating a possible therapeutic application of Pls against AD.
机译:神经引征基本上涉及神经胶质细胞的激活,作为神经变性疾病如阿尔茨海默病(AD)的原因/效果。 Plasmalogens(PLS)是构成细胞膜的甘油磷脂,并在膜流动性和细胞过程中起显着作用,如囊泡融合和信号转导。腹膜内(I.P.)注射脂多糖(LPS,250μg/ kg)7天导致形态变化,IBA-1 +微胶质细胞数量的数量增加,显示成年小鼠海马中神经炎症。 I.P的LPS诱导的胶质细胞的激活显着衰减。用pls溶解在玉米油中的预处理。此外,通过施用PLS,还废除了在海马中诱导的LPS的LPS诱导的Aβ1-16+神经元。最后,在注射LPS注射后,海马中的PLS的含量降低,通过施用PLS抑制还原。这些发现表明了PLS的抗酸化作用,暗示PLS对广告的可能治疗应用。

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