首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Imino-phenolic-pyridyl conjugates of calix[4]arene (L _1 and L _2) as primary fluorescence switch-on sensors for Zn ~(2+) in solution and in HeLa cells and the recognition of pyrophosphate and ATP by [ZnL _2]
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Imino-phenolic-pyridyl conjugates of calix[4]arene (L _1 and L _2) as primary fluorescence switch-on sensors for Zn ~(2+) in solution and in HeLa cells and the recognition of pyrophosphate and ATP by [ZnL _2]

机译:杯[4]芳烃(L _1和L _2)的氨基酚-吡啶基共轭物作为溶液和HeLa细胞中Zn〜(2+)的主要荧光开关传感器,并通过[ZnL _2识别焦磷酸和ATP ]

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Pyridyl-based triazole-linked calix[4]arene conjugates, viz. L _1 and L _2, were synthesized and characterized. These two conjugates were shown to be selective and sensitive for Zn ~(2+) among the 12 metal ions studied in HEPES buffer medium by fluorescence, absorption, and visual color change with the detection limit of ~31 and ~112 ppb, respectively, by L _1 and L _2. Moreover, the utility of the conjugates L _1 and L _2 in showing the zinc recognition in live cells has also been demonstrated using HeLa cells as monitored by fluorescence imaging. The zinc complexes of L _1 and L _2 were isolated, and the structure of [ZnL _1] has been established by single-crystal XRD and that of [ZnL _2] by DFT calculations. TDDFT calculations were performed in order to demonstrate the electronic properties of receptors and their zinc complexes. The isolated zinc complexes, viz. [ZnL _1] and [ZnL _2], have been used as molecular tools for the recognition of anions on the basis of their binding affinities toward Zn ~(2+). [ZnL _2] was found to be sensitive and selective toward phosphate-bearing ions and molecules and in particular to pyrophosphate (PPi) and ATP among the other 18 anions studied; however, [ZnL _1] was not sensitive toward any of the anions studied. The selectivity has been shown on the basis of the changes observed in the emission and absorption spectral studies through the removal of Zn ~(2+) from [ZnL _2] by PPi. Thus, [ZnL _2] has been shown to detect PPi up to 278 ± 10 ppb at pH 7.4 in aqueous methanolic (1/2 v/v) HEPES buffer.
机译:基于吡啶基的三唑连接的杯[4]芳烃偶联物,即。合成并表征了L _1和L _2。通过荧光,吸收和可见色变化,这两种结合物在HEPES缓冲液中研究的12种金属离子中对Zn〜(2+)具有选择性和敏感性,其检出限分别为〜31和〜112 ppb。通过L _1和L _2。此外,结合物L _1和L _2在显示活细胞中锌的识别中的效用也已经被HeLa细胞证明,如通过荧光成像监测的。分离出L _1和L _2的锌配合物,并通过单晶XRD确定了[ZnL _1]的结构,并通过DFT计算确定了[ZnL _2]的结构。进行TDDFT计算是为了证明受体及其锌络合物的电子性质。分离的锌络合物,即。 [ZnL _1]和[ZnL _2]已被用作基于阴离子对Zn〜(2+)的结合力而识别阴离子的分子工具。 [ZnL _2]被发现对其他含18个阴离子对含磷酸盐的离子和分子特别是对焦磷酸盐(PPi)和ATP敏感且具有选择性。但是,[ZnL _1]对所研究的任何阴离子都不敏感。通过在发射光谱和吸收光谱研究中观察到的变化(通过PPi去除[ZnL _2]中的Zn〜(2+))可以显示出选择性。因此,[ZnL _2]已显示在甲醇(1/2 v / v)HEPES水溶液中,在pH 7.4时可检测到278±10 ppb的PPi。

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