Wang Tong Ye, Bijlani Amit, Chao Emily Hoi Pui, Johnson Philip E, Krylov Sergey N
Department of Chemistry, York University, Toronto, Ontario, M3J 1P3, Canada.
Centre for Research on Biomolecular Interactions, York University, Toronto, Ontario, M3J 1P3, Canada.
Chembiochem. 2025 Aug 22;26(15):e202500194. doi: 10.1002/cbic.202500194. Epub 2025 Jul 14.
Accurate determination of equilibrium dissociation constants (K) is essential for decision-making in drug discovery and diagnostics development. Isothermal titration calorimetry (ITC), which requires no reactant labeling or immobilization, is commonly used to validate K values from high-throughput screens. Yet, like other methods, ITC results can be skewed by systematic errors in reactant concentrations, a fact that is often overlooked, potentially leading to misinformed decisions. To address this, accuracy confidence intervals (ACI)-ITC is developed, a browser-based tool that calculates ACI for ITC-derived parameters, offering probabilistic ranges for the true values of K, enthalpy change (ΔH°), and binding stoichiometry (n). Unlike traditional confidence intervals that consider only random errors, ACI-ITC explicitly accounts for systematic errors, providing a more accurate framework to assess experimental reliability. Alongside a user-friendly interface, it offers detailed guidance for determining uncertainties in concentrations and heat, which are critical inputs for assessing measurement accuracy. The tool's browser-based accessibility (https://aci.sci.yorku.ca) eliminates the need for specialized installation, enabling cross-platform compatibility and streamlining accuracy assessments. By highlighting the importance of systematic errors and providing a structured approach for their evaluation, ACI-ITC supports more robust conclusions, fosters better-informed decisions based on ITC measurements, and enhances the reliability of research findings.
准确测定平衡解离常数(K)对于药物研发和诊断开发中的决策至关重要。等温滴定量热法(ITC)无需对反应物进行标记或固定,常用于验证高通量筛选得到的K值。然而,与其他方法一样,ITC结果可能会因反应物浓度的系统误差而产生偏差,这一事实常常被忽视,可能导致错误的决策。为了解决这个问题,开发了准确性置信区间(ACI)-ITC,这是一种基于浏览器的工具,可计算ITC衍生参数的ACI,为K、焓变(ΔH°)和结合化学计量数(n)的真实值提供概率范围。与仅考虑随机误差的传统置信区间不同,ACI-ITC明确考虑了系统误差,提供了一个更准确的框架来评估实验可靠性。除了用户友好的界面外,它还为确定浓度和热量的不确定性提供了详细指导,这些是评估测量准确性的关键输入。该工具基于浏览器的可访问性(https://aci.sci.yorku.ca)消除了专门安装的需要,实现了跨平台兼容性并简化了准确性评估。通过强调系统误差的重要性并提供评估系统误差的结构化方法,ACI-ITC支持得出更可靠的结论,促进基于ITC测量做出更明智的决策,并提高研究结果的可靠性。