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Facile Probe Design: Fluorescent Amphiphilic Nucleic Acid Probes without Quencher Providing Telomerase Activity Imaging Inside Living Cells

机译:简便的探针设计:不带Quencher的荧光两亲核酸探针可在活细胞内提供端粒酶活性成像

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Nowadays, the probe with fluorophore but no quencher is promising for its simple preparation, environmental friendliness, and wide application scope. This study designs a new amphiphilic nucleic acid probe (ANAP) based on aggregation-caused quenching (ACQ) effect without any quencher. Upon binding with targets, the dispersion of hydrophobic part (conjugated fluorene, CF) in ANAP is enhanced as a signal-on model for proteins, nucleic acids, and small molecules detection or the aggregation of CF is enhanced as a signal-off model for ion detection. Meanwhile, because of the high specificity of ANAP, a one-step method is developed powerfully for monitoring the telomerase activity not only from the cell extracts but also from 50 clinic urine samples (positive results from 45 patients with bladder cancer and negative results from 5 healthy people). ANAPs can also readily enter into cells and exhibit a good performance for distinguishing natural tumor cells from the tumor cells pretreated by telomerase-related drugs or normal cells. In contrast to our previous results (Anal. Chem. 2015, 87, 3890-3894), the present CF is a monomer which is just the structure unit of the previous fluorescent polymer. Since the accurate molecular structure and high DNA/CF ratio of the present CF, these advanced experiments obtain an easier preparation of probes, an improved sensitivity and specificity, and broader detectable targets.
机译:如今,具有荧光团但没有淬灭剂的探针因其制备简单,环境友好和广泛的应用前景而备受期待。这项研究基于聚集引起的猝灭(ACQ)效应,无需任何猝灭剂,设计了一种新的两亲核酸探针(ANAP)。与靶标结合后,疏水性部分(共轭芴,CF)在ANAP中的分散度增强,可作为蛋白质,核酸和小分子检测的信号传递模型,CF的聚集则作为蛋白质的信号传递模型而增强离子检测。同时,由于ANAP的高度特异性,一种强大的单步方法不仅可以从细胞提取物中而且可以从50个临床尿液样本中监测端粒酶活性(45例膀胱癌患者为阳性,而5例患者为阴性)。健康的人)。 ANAP也可以很容易地进入细胞,并表现出良好的性能,可将天然肿瘤细胞与端粒酶相关药物或正常细胞预处理的肿瘤细胞区分开。与我们之前的结果(Anal。Chem。2015,87,3890-3894)相反,本发明的CF是单体,仅是先前荧光聚合物的结构单元。由于当前CF的精确分子结构和高DNA / CF比,这些先进的实验获得了更容易的探针制备,更高的灵敏度和特异性以及更广泛的可检测靶标。

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