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Highly Fluorescent Amidine/Schiff Base Dual-Modified Polyacrylonitrile Nanoparticles for Selective and Sensitive Detection of Copper Ions in Living Cells

机译:选择性和灵敏检测活细胞中铜离子的高荧光Am /席夫碱双改性聚丙烯腈纳米粒子

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摘要

Highly fluorescent surface modified polyacrylonitrile nanoparticles (PAN NPs) of 50 nm diameter were fabricated for selective Cu~(2+) sensing. After surface modification, the PAN NPs were converted to amidine/SchifF base dual-modified PAN nanoparticles (tPAN NPs) with a Cu~(2+) sensing property and high QY (0.19). The selectivity of tPAN NPs for Cu~(2+) is much higher than that of other metal ions due to the fact that amidine group on the surface of tPAN NPs has a higher binding affinity with Cu~(2+). The effect of other metal ions on the fluorescence intensity of the tPAN NPs was also studied, and other metal ions showed a low interference response in the detection of Cu~(2+). Furthermore, as a metal ion chelator, ethylenediaminetetraacetate can competitively interact with Cu~(2+) to recover the quenched fluorescence of tPAN NPs. The tPAN NPs are easily introduced into cells and exhibit low toxicity, enabling their use as a fluorescence sensor for Cu~(2+) in living cells. The tPAN NPs provide a new direction for the development of copper ion sensors in living cells.
机译:制备了直径为50 nm的高荧光表面改性聚丙烯腈纳米粒子(PAN NPs),用于选择性Cu〜(2+)传感。表面改性后,将PAN NPs转化为具有Cu〜(2+)感应性能和高QY(0.19)的am / SchifF基双修饰PAN纳米颗粒(tPAN NPs)。 tPAN NPs对Cu〜(2+)的选择性比其他金属离子高得多,这是因为tPAN NPs表面的am基与Cu〜(2+)的结合亲和力更高。还研究了其他金属离子对tPAN NPs荧光强度的影响,并且其他金属离子在检测Cu〜(2+)时表现出较低的干扰响应。此外,乙二胺四乙酸盐可以作为金属离子螯合剂与Cu〜(2+)竞争性相互作用,从而恢复tPAN NPs的猝灭荧光。 tPAN NPs易于引入细胞并显示出低毒性,使其可用作活细胞中Cu〜(2+)的荧光传感器。 tPAN NP为活细胞中铜离子传感器的开发提供了新的方向。

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