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Water soluble bis(indolenine)squaraine salts for use as fluorescent protein-sensitive probes

机译:水溶性双(吲哚烯)方酸盐,用作荧光蛋白敏感探针

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摘要

In this study we have shown that water soluble fluorescent squaraine dyes can be produced as organic salts in combination with a range of organic cations although some cations, it was found, limit solubility. Chemical analysis of twenty-four such squaraine salts showed that only one existed in the solid-state as the pure organic salt, all others existed as hydrates with varying amounts of crystalline water, except for one that existed as a butanol solvate. Five of the twenty-four (primarily nitro-substituted cations) existed as mono-cation/sulfonic acid salts, as opposed to the bis-cationic salt state that was expected for all. Preliminary fluorescence results indicated that the increase in fluorescence verses increase of protein (bovine serum albumin) concentration was significantly hindered if the protein was stored in a phosphate buffer. Comparative experiments undertaken with the protein dissolved in water showed substantial differences in the rate of increase of fluorescence with increasing protein concentration. The largest rate of change came from the morpholinium salt. It is suggested that this is because morpholine hinders neither the hydrophobic docking of the squaraine group into the protein nor the fluorescence generation within the squaraine molecule.
机译:在这项研究中,我们表明水溶性荧光方酸菁染料可以与多种有机阳离子结合制成有机盐,尽管发现某些阳离子限制了溶解度。对24种此类方酸盐的化学分析表明,只有一种以纯有机盐形式存在于固态,其余所有以水合物形式存在,且结晶水量各不相同,除了一种以丁醇溶剂化物形式存在。与所有预期的双阳离子盐状态相反,二十四个(主要是硝基取代的阳离子)中的五个以单阳离子/磺酸盐的形式存在。初步的荧光结果表明,如果将蛋白质存储在磷酸盐缓冲液中,则荧光的增加与蛋白质(牛血清白蛋白)浓度的增加明显受到阻碍。用溶解在水中的蛋白质进行的比较实验显示,随着蛋白质浓度的增加,荧光的增加速率存在显着差异。变化最快的是吗啉盐。认为这是因为吗啉既不阻碍方酸基团的疏水对接到蛋白质中,也不阻碍方酸分子内的荧光产生。

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