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Detection of Early Stage Apoptotic Cells Based on Label-Free Cytochrome c Assay Using Bioconjugated Metal Nanoclusters as Fluorescent Probes

机译:生物标记的金属纳米簇作为荧光探针的无标记细胞色素c检测早期凋亡细胞

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Cytochrome c (Cyt c) is an important biomarker in cell lysates for the early stage of apoptosis or anticancer agents. Here, two novel label-free fluorescence assays based on hemoglobin stabilized gold nanoclusters (Hb/AuNCs) and aptamer-stabilized silver nanoclusters (DNA/AgNCs) for analysis of Cyt c are presented. The heme group of the protein induces sensitive sensing platforms accompanied by the decreased fluorescence of both metal nanoclusters. The quenching processes observed found to be based on the fluorescence resonance energy transfer mechanism from Hb/AuNCs to Cyt c and photoinduced electron transfer from DNA/AgNCs to the aptamer-Cyt c complex. The linear range for Cyt c was found to be 0-10 mu M for Hb/AuNCs and from 0 to 1 mu M for DNA/AgNCs, with limits of detection of similar to 15 nM. On the basis of strong binding affinity of DNA aptamers for their target proteins, the DNA/AgNCs probe was successfully applied to the quantitative determination of Cyt c in cell lysates, which opens a new avenue to early diagnostics and drug screening with high sensitivity. Compared to the conventional Western blot method, the presented assays are low cost, easy to prepare the fluorescent probes, and sensitive, while overall time for the detection and quantitation of Cyt c from isolated mitochondria is only 20 min. The proposed method for Cyt c detection may also be useful for the study of those materials that cause mitochondrial dysfunction and apoptotic cell death.
机译:细胞色素c(Cyt c)是细胞裂解物中凋亡或抗癌药早期的重要生物标志物。在这里,提出了两种基于血红蛋白稳定的金纳米团簇(Hb / AuNCs)和适体稳定的银纳米团簇(DNA / AgNCs)的新型无标记荧光分析法,用于Cyt c的分析。蛋白质的血红素基团诱导敏感的传感平台,并伴有两种金属纳米簇的荧光减弱。观察到的淬灭过程是基于从Hb / AuNCs到Cyt c的荧光共振能量转移机制,以及从DNA / AgNCs到适体-Cyt c复合物的光诱导电子转移。对于Hb / AuNCs,Cyt c的线性范围是0-10μM,对于DNA / AgNCs,Cyt c的线性范围是0-1μM,检测极限类似于15 nM。基于DNA适体与其靶蛋白的强结合亲和力,DNA / AgNCs探针成功用于细胞裂解物中Cyt c的定量测定,从而为早期诊断和高灵敏度的药物筛选开辟了一条新途径。与传统的蛋白质印迹法相比,本发明的方法成本低,易于制备荧光探针且灵敏度高,而从分离的线粒体中检测和定量Cyt c的总时间仅为20分钟。提议的Cyt c检测方法也可能用于研究导致线粒体功能障碍和凋亡的细胞的材料。

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