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Effects of quercetin-conjugated with superparamagnetic iron oxide nanoparticles on learning and memory improvement through targeting microRNAs/NF-κB pathway

机译:槲皮素缀合与超顺磁性氧化铁纳米粒子对靶向微小RNA / NF-κB途径学习记忆改进的影响

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Quercetin-conjugated superparamagnetic iron oxide nanoparticles (QCSPIONs) have an ameliorative effect on diabetes-induced memory impairment. The current study aimed to compare the effect of quercetin (QC) and QCSPIONs on inflammation-related microRNAs and NF-κB signaling pathways in the hippocampus of diabetic rats. The expression levels of miR-146a, miR-9, NF-κB, and NF-κB-related downstream genes, including TNF-α, BACE1, AβPP, Bax, and Bcl-2 were measured using quantitative real-time PCR. To determine the NF-κB activity, immunohistochemical expression of NF-κB/p65 phosphorylation was employed. Computer simulated docking analysis also performed to find the QC target proteins involved in the NF-κB pathway. Results indicate that diabetes significantly upregulated the expression levels of miR-146a, miR-9, TNF-α, NF-κB, and subsequently AβPP, BACE1, and Bax. Expression analysis shows that QCSPIONs are more effective than pure QC in reducing the expression of miR-9. Interestingly, QCSPIONs reduce the pathological activity of NF-κB and subsequently normalize BACE1, AβPP, and the ratio of Bax/Bcl-2 expression better than pure QC. Comparative docking analyses also show the stronger binding affinity of QC to IKK and BACE1 proteins compared to specific inhibitors of each protein. In conclusion, our study suggests the potent efficacy of QCSPIONs as a promising drug delivery system in memory improvement through targeting the NF-κB pathway.
机译:槲皮素缀合的超顺磁性氧化铁纳米颗粒(QCSsions)对糖尿病诱导的记忆损伤具有改进作用。目前的研究旨在比较槲皮素(QC)和QCssions对糖尿病大鼠海马炎症相关的微大RNA和NF-κB信号传导途径的影响。使用定量实时PCR测量miR-146a,miR-9,Nf-κB和Nf-κB相关下游基因的MiR-146a,miR-9,Nf-κB和Nf-κB,bace1,aβpp,bax和bcl-2的表达水平。为了确定NF-κB活性,使用NF-κB/ p65磷酸化的免疫组化表达。计算机模拟对接分析还进行了寻找参与NF-κB途径的QC靶蛋白。结果表明,糖尿病显着上调了miR-146a,miR-9,Tnf-α,Nf-κB和随后AβPP,Bace1和Bax的表达水平。表达分析表明,在减少miR-9的表达时,QCSsions比纯度QC更有效。有趣的是,QCSsions降低了NF-κB的病理活性,然后归一化Bace1,AβPP和Bax / Bcl-2表达的比例,比纯度QC更好。与每种蛋白质的特异性抑制剂相比,比较对接分析还显示出QC至IKK和BACE1蛋白的更强的结合亲和力。总之,我们的研究表明,通过靶向NF-κB途径,QCSsions作为有希望的药物递送系统的有效疗效。

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