首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Sensitive and selective fluorometric determination of DNA by using layered hexagonal nanosheets of a covalent organic framework prepared from p-phenylenediamine and benzene-1,3,5-tricarboxaldehyde
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Sensitive and selective fluorometric determination of DNA by using layered hexagonal nanosheets of a covalent organic framework prepared from p-phenylenediamine and benzene-1,3,5-tricarboxaldehyde

机译:使用由对苯二胺和苯-1,3,5-三羧酸制备的共价有机骨架的分层六边形纳米片敏感和选择性荧光测定DNA

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A modified method is described for the preparation of amino-functionalized covalent organic framework nanosheets (COF-NSs). These consist of hexagonal layered sheets and were prepared from commercially available starting materials (p-phenylenediamine and benzene-1,3,5-tricarboxaldehyde). The interlayer stacking interactions between the ultra-thin COF-NSs became weak because the pi stacking is destroyed by sonication. This result in the exfoliation of COF-NSs. As an application, the COF-NSs used for sensitive and selective fluorometric determination of DNA. To reach this goal, H1 and H2 hairpin-like DNA probes were chosen; H1 used Texas Red-labeled dye as a fluorescent probe. The addition of the COF-NSs, the hairpin probes was adsorbed onto the porous surface of the COFNSs. The pi stacking and hydrogen-bond interactions between COFNSs and nucleic acid quench the fluorescence of the Texas red-labeled probe. The target DNA enables the recovery of the quenched fluorescence of the Texas red-labelled probe by triggering an inter-chain hybridization within hairpin probes. This results in a weaker interaction of double-stranded DNA (dsDNA) with the COFNSs. Consequently, the dsDNA detaches from the COFNSs, thereby recovering the dye's fluorescence (excitation/emission maxima at 590/612 nm) with increasing target DNA concentration. The findings were applied to design a method for the determination of DNA that has a 2 pM detection limit. This is significantly lower than the limit of detection reported previously for 2D nanomaterial-based fluorometric DNA assays.
机译:描述了用于制备氨基官能化的共价有机框架纳米片(COF-NSS)的改性方法。这些由六边形层状片组成,并由市售原料(对苯二胺和苯-1,3,5-三羧酸制备。超薄COF-NSS之间的中间层堆叠相互作用变弱,因为PI堆叠被超声处理破坏。这导致COF-NSS的剥离。作为应用,用于敏感和选择性荧光测定DNA的COF-NSS。为了达到这种目标,选择H1和H2发夹样DNA探针; H1使用德克萨斯红标记染料作为荧光探针。加入COF-NSS,发夹探针被吸附在COFNS的多孔表面上。 COFNSS和核酸之间的PI堆叠和氢键相互作用淬灭德克萨斯红标记探针的荧光。靶DNA通过在发夹探针中触发链间杂交来恢复德克萨斯红标记探针的猝灭荧光。这导致双链DNA(DSDNA)与COFNS的相互作用较弱。因此,DSDNA从COFNS中脱离,从而随着靶DNA浓度的增加,从COFNS中恢复染料的荧光(590/612nm处的激发/发射最大值)。应用研究结果来设计一种测定具有2pm检测限的DNA的方法。这显着低于预先报告的2D纳米材料的荧光DNA测定的检测极限。

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