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microRNA (miRNA) speciation in Alzheimer’s disease (AD) cerebrospinal fluid (CSF) and extracellular fluid (ECF)

机译:阿尔茨海默氏病(AD)脑脊液(CSF)和细胞外液(ECF)中的microRNA(miRNA)形态

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Human cerebrospinal fluid (CSF), produced by the choroid plexus and secreted into the brain ventricles and subarachnoid space, plays critical roles in intra-cerebral transport and the biophysical and immune protection of the brain. CSF composition provides valuable insight into soluble pathogenic bio-markers that may be diagnostic for brain disease. In these experiments we analyzed amyloid beta (Aβ) peptide and micro RNA (miRNA) abundance in CSF and in short post-mortem interval (PMI <2.1 hr) brain tissue-derived extracellular fluid (ECF) from Alzheimer’s disease (AD) and age-matched control neocortex. There was a trend for decreased abundance of Aβ42 in the CSF and ECF in AD but it did not reach statistical significance (mean age ~72 yr; N=12; p~0.06, ANOVA). The most abundant nucleic acids in AD CSF and ECF were miRNAs, and their speciation and inducibility were studied further. Fluorescent miRNA-array-based analysis indicated significant increases in miRNA-9, miRNA-125b, miRNA-146a, miRNA-155 in AD CSF and ECF (N=12; p<0.01, ANOVA). Primary human neuronal-glial (HNG) cell co-cultures stressed with AD-derived ECF also displayed an up-regulation of these miRNAs, an effect that was quenched using the anti-NF-кB agents caffeic acid phenethyl ester (CAPE) or 1-fluoro-2-[2-(4-methoxy-phenyl)-ethenyl]-benzene (CAY10512). Increases in miRNAs were confirmed independently using a highly sensitive LED-Northern dot-blot assay. Several of these NF-кB-sensitive miRNAs are known to be up-regulated in AD brain, and associate with the progressive spreading of inflammatory neurodegeneration. The results indicate that miRNA-9, miRNA-125b, miRNA-146a and miRNA-155 are CSF- and ECF-abundant, NF-кB-sensitive pro-inflammatory miRNAs, and their enrichment in circulating CSF and ECF suggest that they may be involved in the modulation or proliferation of miRNA-triggered pathogenic signaling throughout the brain and central nervous system (CNS).
机译:脉络丛产生的人脑脊髓液(CSF)分泌到脑室和蛛网膜下腔中,在脑内运输以及脑的生物物理和免疫保护中起着关键作用。脑脊液成分为可诊断脑疾病的可溶性病原生物标志物提供了宝贵的见识。在这些实验中,我们分析了来自Alzheimer& #x02019; s疾病(AD)和年龄匹配的对照新皮层。在AD的CSF和ECF中存在Aβ 42丰度降低的趋势,但没有达到统计学显着性(平均年龄〜72岁; N = 12; p〜0.06,ANOVA)。 AD CSF和ECF中最丰富的核酸是miRNA,并且对其形态和诱导能力进行了进一步研究。基于荧光miRNA阵列的分析表明,AD CSF和ECF中miRNA-9,miRNA-125b,miRNA-146a,miRNA-155显着增加(N = 12; p< 0.01,ANOVA)。受AD衍生的ECF胁迫的主要人类神经胶质(HNG)细胞共培养物也显示了这些miRNA的上调,这一作用可通过使用抗NF-κB剂咖啡酸苯乙基酯( CAPE)或1-氟-2- [2-(4-甲氧基-苯基)-乙烯基]-苯(CAY10512)。使用高度敏感的LED-Northern点印迹分析独立确认了miRNA的增加。已知这些NF-κB敏感的miRNA中的几种在AD脑中被上调,并与炎症性神经变性的逐步扩散有关。结果表明miRNA-9,miRNA-125b,miRNA-146a和miRNA-155是CSF和ECF丰富的NF-B敏感促炎性miRNA,它们在循环CSF和ECF中的富集提示他们可能参与了整个大脑和中枢神经系统(CNS)的miRNA触发的致病信号的调节或增殖。

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