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Spontaneous oscillatory in vitro chiral conversion of simple carboxylic acids and its possible mechanism

机译:简单羧酸的自发振荡体外手性转化及其可能机理

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In earlier studies, we have collected experimental evidence (mostly from thin-layer chromatography and polarimetry) on the spontaneous oscillatory in vitro chiral conversion of simple carboxylic acids dissolved in 70% aqueous ethanol. To elucidate this phenomenon, we developed a simple theoretical model of two linked Templators. Recently, we have obtained additional experimental evidence of the spontaneous condensation of chiral carboxylic acids, based on the biuret test (amino acids), high performance liquid chromatography, and ~(13)C NMR spectroscopy (profens and hydroxy acids). We briefly describe our experimental results in the context of the existing literature and outline an improved theoretical model for these phenomena. Our system resembles in some respects the reported oscillatory condensation of organic silanols. Here, the key reaction is the formation of carboxylic acid-derived enols. Finally, we discuss the importance of the oscillatory chiral conversion of simple carboxylic acids for biochemistry, pharmacology, and related life sciences.
机译:在较早的研究中,我们已经收集了溶解在70%乙醇水溶液中的简单羧酸的自发振荡体外手性转化的实验证据(主要来自薄层色谱法和旋光法)。为了阐明这种现象,我们开发了两个链接模板的简单理论模型。最近,基于缩二脲试验(氨基酸),高效液相色谱法和〜(13)C NMR光谱法(脯氨酸和羟基酸),我们获得了手性羧酸自发缩合的其他实验证据。我们在现有文献的背景下简要描述了我们的实验结果,并概述了针对这些现象的改进的理论模型。我们的系统在某些方面类似于有机硅烷醇的振荡缩合反应。在这里,关键的反应是羧酸衍生的烯醇的形成。最后,我们讨论了简单羧酸的振荡手性转化对生物化学,药理学和相关生命科学的重要性。

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