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Tuning a 96-Well Microtiter Plate Fluorescence-Based Assay to Identify AGE Inhibitors in Crude Plant Extracts

机译:调整基于96孔微量滴定板的荧光分析法以鉴定粗制植物提取物中的AGE抑制剂

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摘要

Advanced glycation end-products (AGEs) are involved in the pathogenesis of numerous diseases. Among them, cellular accumulation of AGEs contributes to vascular complications in diabetes. Besides using drugs to lower blood sugar, a balanced diet and the intake of herbal products potentially limiting AGE formation could be considered beneficial for patients’ health. The current paper presents a simple and cheap high-throughput screening (HTS) assay based on AGE fluorescence and suitable for plant extract screening. We have already implemented an HTS assay based on vesperlysines-like fluorescing AGEs quickly (24 h) formed from BSA and ribose under physiological conditions. However, interference was noted when fluorescent compounds and/or complex mixtures were tested. To overcome these problems and apply this HTS assay to plant extracts, we developed a technique for systematic quantification of both vesperlysines (λexc 370 nm; λem 440 nm) and pentosidine-like (λexc 335 nm; λem 385 nm) AGEs. In a batch of medicinal and food plant extracts, hits were selected as soon as fluorescence decreased under a fixed threshold for at least one wavelength. Hits revealed during this study appeared to contain well-known and powerful anti-AGE substances, thus demonstrating the suitability of this assay for screening crude extracts (0.1 mg/mL). Finally, quercetin was found to be a more powerful reference compound than aminoguanidine in such assay.
机译:晚期糖基化终产物(AGEs)参与多种疾病的发病机制。其中,AGEs的细胞蓄积有助于糖尿病的血管并发症。除了使用降低血糖的药物外,均衡饮食和摄入可能限制AGE形成的草药产品也可能被认为对患者的健康有益。目前的论文提出了一种基于AGE荧光的简单且便宜的高通量筛选(HTS)分析方法,适用于植物提取物的筛选。我们已经在生理条件下基于由BSA和核糖快速形成(24小时)的像vesperlysines一样的荧光AGEs进行了HTS分析。但是,在测试荧光化合物和/或复杂混合物时会注意到干扰。为了克服这些问题并将此HTS分析应用于植物提取物,我们开发了一种技术来对vesperlysines(λexc370 nm;λem440 nm)和戊糖苷样(λexc335 nm;λem385 nm)AGEs进行系统定量。在一批药用和食用植物提取物中,一旦荧光在至少一个波长的固定阈值下下降,就选择命中。在这项研究中揭示的命中似乎包含众所周知的强效抗衰老物质,因此证明了该测定法适合筛选粗提物(0.1 mg / mL)。最后,在这种测定中,槲皮素被发现是一种比氨基胍更有效的参考化合物。

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