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High-affinity and selective detection of pyrophosphate in water by a resorcinarene salt receptor

机译:间苯二芳烃盐受体高亲和力和选择性地检测水中的焦磷酸盐

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摘要

Pyrophosphate (PPi) is a byproduct of DNA and RNA synthesis, and abnormal levels are indicative of disease. We report the high-affinity binding of PPi in water by N-alkyl ammonium resorcinarene chloride receptors. Experimental analysis using 1H and 31P NMR, isothermal titration calorimetry, mass spectrometry, and UV-vis spectroscopy all support exceptional selectivity of these systems for PPi in water. The measured affinity of K1 = 1.60 × 107 M–1 for PPi is three orders of magnitude larger than that observed for binding to another phosphate, ATP. This exceptional anion-binding affinity in water is explored through a detailed density functional theory computational study. These systems provide a promising avenue for the development of future innovative medical diagnostic tools.
机译:焦磷酸盐(PPi)是DNA和RNA合成的副产物,异常水平指示疾病。我们报告了N-烷基铵间苯二甲酰氯氯化物在水中PPi的高亲和力结合。使用 1 H和 31 P NMR进行的实验分析,等温滴定量热法,质谱法和紫外可见光谱法都支持这些系统对水中PPi的出色选择性。测得的K1对PPi的亲和力= 1.60×10 7 M –1 比与另一种磷酸盐ATP的亲和力大三个数量级。通过详细的密度泛函理论计算研究来探索水中这种特殊的阴离子结合亲和力。这些系统为未来的创新医学诊断工具的开发提供了有希望的途径。

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