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一种基于罗丹明的“开启型”Al³⁺离子选择性报告分子以及由此产生的作为F⁻离子二级传感器的配合物可用于活细胞染色。

A rhodamine-based 'turn-on' Al³⁺ ion-selective reporter and the resultant complex as a secondary sensor for F⁻ ion are applicable to living cell staining.

作者信息

Sen Buddhadeb, Mukherjee Manjira, Banerjee Samya, Pal Siddhartha, Chattopadhyay Pabitra

机构信息

Department of Chemistry, University of Burdwan, Golapbag, Burdwan 713104, India.

出版信息

Dalton Trans. 2015 May 14;44(18):8708-17. doi: 10.1039/c5dt00315f.

Abstract

A newly designed fluorescent aluminum(III) complex (L'-Al; 2) of a structurally characterized non-fluorescent rhodamine Schiff base (L) has been isolated in pure form and characterized using spectroscopic and physico-chemical methods with theoretical density functional theory (DFT) support. On addition of Al(III) ions to a solution of L in HEPES buffer (1 mM, pH 7.4; EtOH-water, 1 : 3 v/v) at 25 °C, the systematic increase in chelation-enhanced fluorescence (CHEF) enables the detection of Al(III) ions as low as 60 nM with high selectivity, unaffected by the presence of competitive ions. Interestingly, the Al(III) complex (L'-Al; 2) is specifically able to detect fluoride ions by quenching the fluorescence in the presence of large amounts of other anions in the HEPES buffer (1 mM, pH 7.4) at 25 °C. On the basis of our experimental and theoretical findings, the addition of Al(3+) ions to a solution of L helps to generate a new fluorescence peak at 590 nm, due to the selective binding of Al(3+) ions with L in a 1 : 1 ratio with a binding constant (K) of 8.13 × 10(4) M(-1). The Schiff base L shows no cytotoxic effect, and it can therefore be employed for determining the intracellular concentration of Al(3+) and F(-) ions by 2 in living cells using fluorescence microscopy.

摘要

一种新设计的荧光铝(III)配合物(L'-Al;2),其母体为结构表征的非荧光罗丹明席夫碱(L),已被分离得到纯品,并通过光谱和物理化学方法结合理论密度泛函理论(DFT)进行了表征。在25℃下,将铝(III)离子加入到HEPES缓冲液(1 mM,pH 7.4;乙醇-水,1:3 v/v)中的L溶液中,螯合增强荧光(CHEF)的系统性增强使得能够以高选择性检测低至60 nM的铝(III)离子,不受竞争性离子存在的影响。有趣的是,在25℃下,铝(III)配合物(L'-Al;2)在HEPES缓冲液(1 mM,pH 7.4)中存在大量其他阴离子的情况下,能够通过猝灭荧光特异性地检测氟离子。基于我们的实验和理论结果,向L溶液中加入铝(3+)离子有助于在590 nm处产生一个新的荧光峰,这是由于铝(3+)离子与L以1:1的比例选择性结合,结合常数(K)为8.13×10⁴ M⁻¹。席夫碱L没有细胞毒性作用,因此可以用于通过荧光显微镜在活细胞中利用2测定细胞内铝(3+)和氟(-)离子的浓度。

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