首页> 外文期刊>Sensors and Actuators >A benzimidazole-based new fluorogenic differential/sequential chemosensor for Cu~(2+), Zn~(2+), CN-, P_2O_7~(4-), DNA, its live-cell imaging and pyrosequencing applications
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A benzimidazole-based new fluorogenic differential/sequential chemosensor for Cu~(2+), Zn~(2+), CN-, P_2O_7~(4-), DNA, its live-cell imaging and pyrosequencing applications

机译:基于苯并咪唑的新型荧光微分/连续化学传感器,用于Cu〜(2+),Zn〜(2+),CN-,P_2O_7〜(4-),DNA,其活细胞成像和焦塞序列应用

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Differential chemosensors have emerged as next-generation systems due to their simplicity and favourable responsive properties to produce different signals upon selective binding of various analytes simultaneously. Nevertheless, given their inadequate fluorescence response and laborious synthetic procedures, only a few differential chemosensors have been developed so far. In this work, we have employed a single pot synthesis strategy to establish a new benzimidazole-based Schiff base type fluorogenic chemosensor (DFB) which differentially detects Cu~(2+) (detection limit (LOD) = 24.4 ± 0.5 nM) and Zn~(2+) (LOD = 2.18 ± 0.1 nM) through fluorescence "off-on" manner over the library of other metal cations in an aqueous medium. The DFB-derived 'in situ' complexes DFB-Cu~(2+) and DFB-Zn~(2+) showed fluorescence revival "on-off"responses toward cyanide (CN~-) and bio-relevant pyrophosphate (P_2O_7~(4-) -PPi) ions with a significantly low LOD of 9.43 ± 0.2 and 2.9 ± 0.1 nM, respectively, in water. We have demonstrated the phosphate group-specific binding capability of DFB-Zn~(2+), by testing it with both ssDNA and dsDNA samples which displayed fluorescence "turn-off" response (LOD ~ 10~(-7) M), similar to the PPi binding in an aqueous medium, indicating that it interacts explicitly with the phosphate backbone of DNA. We have also harnessed the DFB as a sequential fluorescent probe to detect Cu~(2+), Zn~(2+), CN~-and P_2O_7~(4-) ions in human cervical (HeLa) and breast (MCF-7 and MDA-MB-231 (aggressive and invasive)) cancer cell lines. Moreover, we have explored the PPi recognition capability of DFB-Zn~(2+) in the polymerase-chain-reaction (PCR) products where PPi is one of the primary by-products during amplification of DNA.
机译:差动化学传感器已经成为下一代系统由于其简单性和良好的响应特性来产生在不同的选择性信号同时各种分析物的结合。尽管如此,考虑到它们的荧光反应不足和费力的合成步骤,只有少数差化学传感器迄今已开发的。在这项工作中,我们已经采用单个釜合成策略,以建立一个新的苯并咪唑类的席夫碱型荧光化学传感器(DFB)进行差分检测的Cu〜(2+)(检测限(LOD)= 24.4±0.5纳米)和Zn 〜(2+)(LOD = 2.18±0.1 nm)的通过荧光“断 - 通”的方式在其他金属阳离子的在含水介质中的库。 '原位' 的DFB衍生的络合物DFB-铜〜(2+)和DFB-Zn系〜(2+) “通 - 断” 表明荧光复兴朝向氰化反应(CN〜 - )和生物相关的焦磷酸(P_2O_7〜 (4-)-PPi)与9.43±0.2和2.9±0.1nm时,分别在水中的低显著LOD离子。我们已经证明了磷酸基团的特异性结合DFB-Zn系的〜能力(2+),通过与单链DNA二者的双链DNA和样品,其荧光显示“关断”的响应测试它(LOD〜10〜(-7)M),类似的PPi在水性介质中结合,这表明它与DNA的磷酸骨架明确地相互作用。我们还利用,所述DFB为顺序的荧光探针来检测的Cu〜(2+),锌〜(2+),CN - 和〜〜P_2O_7人宫颈癌(HeLa细胞)(4-)离子和乳腺癌(MCF-7和MDA-MB-231(攻击性和侵入性))的癌细胞系。此外,我们已在聚合酶链反应的DNA扩增过程中(PCR)产物,其中的PPi是主要副产物之一探索DFB-Zn系〜(2+)的的PPi识别能力。

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