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Diagnosing the miR-141 prostate cancer biomarker using nucleic acid-functionalized CdSe/ZnS QDs and telomerase

机译:使用核酸功能化的CdSe / ZnS QD和端粒酶诊断miR-141前列腺癌生物标志物

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摘要

The microRNA, miR-141, is a promising biomarker for prostate cancer. We implement here a two-step sensing platform for the sensitive detection of miR-141. The first step involves the use of semiconductor CdSe/ZnS quantum dots (QDs) modified by FRET quencher-functionalized nucleic acids, that include the recognition sequence for miR-141 and a telomerase primer sequence for the second step of the analytical platform. Subjecting the probe-modified QDs to miR-141, in the presence of duplex specific nuclease, DSN, leads to the formation of a miR-141/probe duplex and to its DSN-mediated cleavage, while regenerating the miR-141. The DSN-induced cleavage of the quencher units leads to the activation of the fluorescence of the QDs, thus allowing the optical detection of miR-141 with a sensitivity corresponding to 1.0 × 10–12 M. The nucleic acid residues associated with the QDs after cleavage of the probe nucleic acids by DSN act as primers for telomerase. The subsequent telomerase/dNTPs-stimulated elongation of the primer units forms G-quadruplex telomer chains. Incorporation of hemin in the resulting G-quadruplex telomer chains yields horseradish peroxidase-mimicking DNAzyme units, that catalyze the generation of chemiluminescence in the presence of luminol/H2O2. The resulting chemiluminescence intensities provide a readout signal for miR-141, DL = 2.8 × 10–13 M. The first step of the sensing platform is non-selective toward miR-141 and the resulting fluorescence may be considered only as an indicator for the existence of miR-141. The second step in the sensing protocol, involving telomerase, provides a selective chemiluminescence signal for the existence of miR-141. The two-step sensing platform is implemented for the analysis of miR-141 in serum samples from healthy individuals and prostate cancer carriers. Impressive discrimination between healthy individuals and prostate cancer carriers is demonstrated.
机译:microRNA miR-141是前列腺癌的有前途的生物标志物。我们在这里实现了两步感应平台,用于miR-141的灵敏检测。第一步涉及使用经FRET淬灭剂官能化的核酸修饰的半导体CdSe / ZnS量子点(QD),其中包括用于miR-141的识别序列和用于分析平台第二步的端粒酶引物序列。在双链体特异性核酸酶DSN存在下,使探针修饰的QD经受miR-141,导致miR-141 /探针双链体的形成及其DSN介导的裂解,同时再生miR-141。 DSN诱导的淬灭单元裂解导致QDs荧光激活,从而允许以1.0×10 –12 M的灵敏度光学检测miR-141。 DSN切割探针核酸后,与QD相关的氨基酸残基充当端粒酶的引物。随后的端粒酶/ dNTPs-刺激的引物单元的延伸形成G-四链体端粒链。在生成的G-四链体端粒链中掺入血红素可产生类似辣根过氧化物酶的DNAzyme单位,在存在鲁米诺/ H2O2的情况下催化化学发光的产生。产生的化学发光强度提供miR-141的读出信号,DL = 2.8×10 –13 M。传感平台的第一步对miR-141非选择性,产生的荧光可能是仅被视为miR-141存在的指标。感测方案的第二步涉及端粒酶,可为miR-141的存在提供选择性的化学发光信号。该两步传感平台用于分析来自健康个体和前列腺癌携带者的血清样品中的miR-141。证明了健康个体与前列腺癌携带者之间的令人印象深刻的区别。

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