Suppr超能文献

金属氧化态对荧光共振能量转移的影响:一种对Cu(I)无响应但对Cu(II)有选择性响应的荧光报告分子及其生物成像应用。

Effect of metal oxidation state on FRET: a Cu(I) silent but selectively Cu(II) responsive fluorescent reporter and its bioimaging applications.

作者信息

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

机构信息

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

出版信息

Dalton Trans. 2015 Jan 28;44(4):1761-8. doi: 10.1039/c4dt03381g.

Abstract

Copper(II) and copper(I) complexes of a newly designed and crystallographically characterized Schiff base (HL) derived from rhodamine hydrazide and cinnamaldehyde were isolated in pure form formulated as [Cu(L)(NO3)] (L-Cu) (1) and [Cu(HL)(CH3CN)(H2O)]ClO4 (HL-Cu) (2), and characterized by physicochemical and spectroscopic tools. Interestingly, complex 1 but not 2 offers red fluorescence in solution state, and eventually HL behaves as a Cu(II) ions selective FRET based fluorosensor in HEPES buffer (1 mM, acetonitrile-water: 1/5, v/v) at 25 °C at biological pH with almost no interference of other competitive ions. The dependency of the FRET process on the +2 oxidation state of copper has been nicely supported by exhaustive experimental studies comprising electronic, fluorimetric, NMR titration, and theoretical calculations. The sensing ability of HL has been evaluated by the LOD value towards Cu(II) ions (83.7 nM) and short responsive time (5-10 s). Even the discrimination of copper(I) and copper(II) has also been done using only UV-Vis spectroscopic study. The efficacy of this bio-friendly probe has been determined by employing HL to detect the intercellular distribution of Cu(II) ions in HeLa cells by developing image under fluorescence microscope.

摘要

从罗丹明酰肼和肉桂醛衍生而来的一种新设计并经晶体学表征的席夫碱(HL)的铜(II)和铜(I)配合物以纯形式分离出来,其化学式分别为[Cu(L)(NO3)](L-Cu)(1)和[Cu(HL)(CH3CN)(H2O)]ClO4(HL-Cu)(2),并通过物理化学和光谱工具进行了表征。有趣的是,配合物1而非2在溶液状态下呈现红色荧光,最终HL在25℃的生物pH值下,于HEPES缓冲液(1 mM,乙腈-水:1/5,v/v)中作为基于铜(II)离子选择性荧光共振能量转移的荧光传感器,几乎不受其他竞争离子的干扰。包括电子、荧光、核磁共振滴定和理论计算在内的详尽实验研究很好地支持了荧光共振能量转移过程对铜的+2氧化态的依赖性。HL的传感能力通过对铜(II)离子的检测限(83.7 nM)和短响应时间(5 - 10秒)进行了评估。甚至仅通过紫外-可见光谱研究也实现了对铜(I)和铜(II)的区分。通过在荧光显微镜下成像,利用HL检测HeLa细胞中铜(II)离子的细胞内分布,确定了这种生物友好型探针的功效。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验