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IMPROVED ACCURACY AND PRECISION IN THE DETERMINATION OF ASSOCIATION CONSTANTS

机译:测定缔合常数的准确性和准确性得到提高

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Association constants for inclusion complexes are commonly determined by varying the analytical concentration of the ''host'' species while maintaining the analytical concentration of ''guest'' species constant, In implementing the experiment, commonly referred to as Benesi-Hildebrand analysis, conditions are controlled such that all necessary concentration requirements are fulfilled and the guest molecule in the unbound state does not contribute appreciably to the overall signal (<5%). In this paper, we demonstrate that this commonly accepted constraint, while clearly important, is insufficient for the accurate determination of association constants, Systematic error introduced by variation in the host species concentration, and therefore the equilibrium concentration of unbound guest molecules, results in overestimation of the complexation constant, These errors in the association constant determination appear to be the most troublesome when steady-state fluorescence or absorbance measurements, two of the most common techniques, are utilized, We demonstrate that correction of this systematic error can be accomplished by iterative correction for the equilibrium concentration of the unbound guest.
机译:通常通过改变“宿主”物质的分析浓度,同时保持“来宾”物质的分析浓度恒定来确定包合物的缔合常数。在实施实验时,通常称为Benesi-Hildebrand分析,条件是进行控制以使所有必需的浓度要求都得到满足,并且未结合状态的客体分子对总信号的贡献不大(<5%)。在本文中,我们证明了这一公认的约束条件虽然很重要,但不足以准确确定缔合常数;由于宿主物种浓度的变化而引起的系统误差,因此未结合的客体分子的平衡浓度导致过高估计当使用稳态荧光或吸光度测量(这是两种最常用的技术)时,缔合常数测定中的这些误差似乎是最麻烦的,我们证明可以通过迭代来校正此系统误差。校正未结合的客人的平衡浓度。

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