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Direct fluorescence in situ hybridization on human metaphase chromosomes using quantum dot-platinum labeled DNA probes

机译:使用量子点-铂标记的DNA探针在人中期染色体上进行直接荧光原位杂交

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摘要

The telomere shortening in chromosomes implies the senescence, apoptosis, or oncogenic transformation of cells. Since detecting telomeres in aging and diseases like cancer, is important, the direct detection of telomeres has been a very useful biomarker. We propose a telomere detection method using a newly synthesized quantum dot (QD) based probe with oligonucleotide conjugation and direct fluorescence in situ hybridization (FISH). QD-oligonucleotides were prepared with metal coordination bonding based on platinum-guanine binding reported in our previous work. The QD-oligonucleotide conjugation method has an advantage where any sequence containing guanine at the end can be easily bound to the starting QD-Pt conjugate. A synthesized telomeric oligonucleotide was bound to the QD-Pt conjugate successfully and this probe hybridized specifically on the telomere of fabricated MV-4-11 and MOLT-4 chromosomes. Additionally, the QD-telomeric oligonucleotide probe successfully detected the telomeres on the CGH metaphase slide. Due to the excellent photostability and high quantum yield of QDs, the QD-oligonucleotide probe has high fluorescence intensity when compared to the organic dye-oligonucleotide probe. Our QD-oligonucleotide probe, conjugation method of this QD probe, and hybridization protocol with the chromosomes can be a useful tool for chromosome painting and FISH. (C) 2015 Elsevier Inc. All rights reserved.
机译:染色体上的端粒缩短意味着细胞的衰老,凋亡或致癌转化。由于检测衰老和癌症等疾病中的端粒非常重要,因此端粒的直接检测一直是非常有用的生物标记。我们提出了一种端粒检测方法,该方法使用新近合成的基于量子点(QD)的探针进行寡核苷酸缀合和直接荧光原位杂交(FISH)。 QD-寡核苷酸是根据我们先前工作中报道的基于铂-鸟嘌呤结合的金属配位键制备的。 QD-寡核苷酸缀合方法具有的优势是,任何末端含有鸟嘌呤的序列都可以轻松地与起始QD-Pt缀合物结合。合成的端粒寡核苷酸成功地结合到QD-Pt缀合物上,并且该探针在制造的MV-4-11和MOLT-4染色体的端粒上特异性杂交。此外,QD端粒寡核苷酸探针成功检测到CGH中期玻片上的端粒。由于QD具有出色的光稳定性和高量子产率,因此与有机染料-寡核苷酸探针相比,QD-寡核苷酸探针具有较高的荧光强度。我们的QD-寡核苷酸探针,该QD探针的缀合方法以及与染色体的杂交方案可以成为进行染色体绘制和FISH的有用工具。 (C)2015 Elsevier Inc.保留所有权利。

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