Morse Jared, Ofodum Nnamdi, Tang Fung Kit, Schmidt Matthias, Lu Xiaocun, Leung Kaho
Department of Chemistry & Biomolecular Science, Clarkson University, Potsdam, New York 13676, United States.
ACS Sens. 2025 Feb 28;10(2):657-663. doi: 10.1021/acssensors.4c03195. Epub 2025 Jan 14.
Chloride is the most abundant anion in cells and plays many critical roles in maintaining cellular homeostasis. However, current chloride indicators are rare with inherent sensitivity in their emission properties, such as vulnerability to pH changes or short emission lifetimes. These limitations restrict their application in aqueous media and imaging. In this work, we employed a transition-metal complex bearing pyridinium as a recognition unit for chloride and studied the phosphorescence emission properties. Iridium(III) complex was synthesized as an alternative chloride-sensitive luminophore. The conjugable design also allows customization for the desired applications. Complex exhibited high sensitivity and selectivity in chloride sensing across different physiological environments, regardless of pH fluctuation and ionic strength. Additionally, complex featured a microsecond emission lifetime. The chloride sensing ability of complex can be measured through both the luminescence intensity and long-lived phosphorescent lifetime, providing an alternative potential route for chloride imaging. The analogue was successfully applied in the imaging of Cl in cellular environments and showed dose-dependent responses in both live and fixed cells.
氯离子是细胞中含量最丰富的阴离子,在维持细胞内稳态方面发挥着许多关键作用。然而,目前的氯离子指示剂很少,其发射特性具有固有的敏感性,例如容易受到pH值变化的影响或发射寿命较短。这些局限性限制了它们在水性介质和成像中的应用。在这项工作中,我们采用了一种以吡啶鎓为氯离子识别单元的过渡金属配合物,并研究了其磷光发射特性。合成了铱(III)配合物作为一种对氯离子敏感的发光体。这种可共轭设计还允许针对所需应用进行定制。配合物在不同生理环境中的氯离子传感中表现出高灵敏度和选择性,不受pH值波动和离子强度的影响。此外,配合物具有微秒级的发射寿命。配合物的氯离子传感能力可以通过发光强度和长寿命磷光寿命来测量,为氯离子成像提供了一条潜在的替代途径。类似物已成功应用于细胞环境中氯离子的成像,并在活细胞和固定细胞中均表现出剂量依赖性反应。