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Dual lifetime referencing enables pH-control for oxidoreductions in hydrogel-stabilized biphasic reaction systems

机译:双重寿命参考可控制pH值,以控制水凝胶稳定的双相反应系统中的氧化还原

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摘要

pH-shifts are a serious challenge in cofactor dependent biocatalytic oxidoreductions. Therefore, a pH control strategy was developed for reaction systems, where the pH value is not directly measurable. Such a reaction system is the biphasic aqueous-organic reaction system, where the oxidoreduction of hydrophobic substrates in organic solvents is catalysed by hydrogel-immobilized enzymes, and enzyme-coupled cofactor regeneration is accomplished via formate dehydrogenase, leading to a pH-shift. Dual lifetime referencing (DLR), a fluorescence spectroscopic method, was applied for online-monitoring of the pH-value within the immobilizates during the reaction, allowing for a controlled dosage of formic acid. It could be shown that by applying trisodium 8-hydroxypyrene-1, 3, 6-trisulfonate as pH indicator and Ru(II) tris(4, 7-diphenyl-1, 10-phenantroline) (Ru[dpp]) as a reference luminophore the control of the pH-value in a macroscopic gel-bead-stabilized aqueous/organic two phase system in a range of pH 6.5 to 8.0 is possible. An experimental proof of concept could maintain a stable pH of 7.5 +/- 0.15 during the reaction for at least 105 h. With these results, it could be shown that DLR is a powerful tool for pH-control within reaction systems with no direct access for conventional pH-measurement.
机译:在依赖辅因子的生物催化氧化还原中,pH值变化是一个严峻的挑战。因此,针对不能直接测量pH值的反应系统开发了一种pH控制策略。这样的反应系统是两相水-有机反应系统,其中疏水性底物在有机溶剂中的氧化还原是通过固定有水凝胶的酶来催化的,并且通过甲酸脱氢酶实现了酶偶联的辅因子再生,从而导致了pH值的变化。双重寿命参照(DLR),一种荧光光谱方法,用于在线监测反应过程中固定物内的pH值,从而可以控制剂量的甲酸。可以证明,通过使用8-羟基py-1,3,6-三磺酸三钠作为pH指示剂,并使用Ru(II)tris(4,7-diphenyl-1,10-菲咯啉)(Ru [dpp])作为参考可以在宏观的凝胶珠稳定的水/有机两相系统中控制pH值在6.5至8.0之间。实验的概念证明可在反应期间至少105小时内保持7.5 +/- 0.15的稳定pH。从这些结果可以看出,DLR是控制反应系统内pH的强大工具,而无法直接使用常规pH测量。

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