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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >DNA G-quadruplex-templated formation of the fluorescent silver nanocluster and its application to bioimaging
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DNA G-quadruplex-templated formation of the fluorescent silver nanocluster and its application to bioimaging

机译:DNA G-四链体模板形成的荧光银纳米团簇及其在生物成像中的应用

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Herein, a novel kind of silver nanocluster is synthesized simply by mixing G-quadruplex template with silver ions and reduction reagent (NaBH _4, here). AS1411 (a G-quadruplex that can bind nucleolin overexpressed in cancer cells) is used as the main model template to prove the synthesis protocol and its potential application. We used fluorescence assay, CD, MALDI TOF MS, and TEM to characterize the silver nanocluster. It is found that after formation of the silver nanocluster, AS1411 still keeps its structure and is able to bind with nucleolin in cancer cell. Meanwhile, this binding behavior can greatly enhance the fluorescence intensity of the silver nanocluster. This property can be directly employed into bioimaging HeLa cells. The cell toxicity (3-[4,5-dimethylthiazolyl-2]-2,5-diphenyltetrazolium bromide, MTT) assay demonstrated that the silver nanocluster has only little affect on the cytotoxicity to the cells, which further proves the applicability of the method in tumor cell imaging. At last, the universality of the synthesis protocol is verified by using a series of other G-quadruplex sequences as templates. For a lot of functional nucleic acids, such as human telomeres and certain aptamers, are with G-rich sequences and can fold into G-quadruplexes in functioning conditions, our method displays a promising application space in future researches.
机译:在此,仅通过将G-四链体模板与银离子和还原剂(此处为NaBH _4)混合,即可合成一种新型的银纳米簇。 AS1411(一种可以结合癌细胞中过表达的核仁素的G四联体)被用作主要模型模板,以证明合成方案及其潜在应用。我们使用荧光测定法,CD,MALDI TOF MS和TEM表征了银纳米团簇。发现在形成银纳米簇之后,AS1411仍然保持其结构并且能够与癌细胞中的核仁素结合。同时,这种结合行为可以大大增强银纳米团簇的荧光强度。此属性可以直接用于生物成像HeLa细胞。细胞毒性(3- [4,5-二甲基噻唑基-2] -2,5-二苯基四唑溴化物,MTT)测定表明,银纳米簇对细胞的细胞毒性影响很小,这进一步证明了该方法的适用性在肿瘤细胞成像中。最后,以一系列其他G-四链体序列为模板,验证了合成协议的通用性。由于许多功能性核酸,例如人类端粒和某些适体,都具有富含G的序列,并且在功能条件下可以折叠成G-四链体,因此我们的方法在未来的研究中显示出广阔的应用空间。

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