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A method for estimating intracellular ion concentration using optical nanosensors and ratiometric imaging

机译:一种使用光学纳米传感器和比例成像估计细胞内离子浓度的方法

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摘要

Optical nanoparticle (NP)-based sensors have been widely implemented as tools for detection of targeted ions and biomolecules. The NP sensing platform offer a modular design that can incorporate different sensing components for greater target specificity and the ability to tune the dynamic range, as well as encapsulation of multiple dyes to generate a ratiometric signal with varying spectra. Despite these advantages, demonstrating quantitative ion imaging for intracellular measurement still possess a major challenge. Here, we describe fundamentals that enable intracellular validation of this approach using ion-selective nanosensors for investigating calcium (Ca2+) as a model ion. While conventional indicators can improve individual aspects of indicator performance such as Kd, wavelength, and ratiometric measurements, the use of NP sensors can achieve combined benefits of addressing these issues simultaneously. The nanosensor incorporates highly calcium-selective ionophores and two fluorescence indicators that act as signal transducers to facilitate quantitative ratiometric imaging. For intracellular Ca2+ application, the sensors are fine-tuned to physiological sensing range, and live-cell imaging and quantification are demonstrated in HeLa cells loaded with nanosensors and their responsiveness to carbachol-evoked store release (~400 nM). The current nanosensor design thus provides a promising sensing platform for real-time detection and optical determination of intracellular ions.
机译:基于光学纳米颗粒(NP)的传感器已广泛用作检测目标离子和生物分子的工具。 NP传感平台提供了模块化设计,可以结合使用不同的传感组件,以实现更高的靶标特异性和调节动态范围的能力,以及多种染料的包封以生成具有变化光谱的比例信号。尽管有这些优点,但证明用于细胞内测量的定量离子成像仍具有重大挑战。在这里,我们描述了一些基本原理,这些原理使得能够使用离子选择性纳米传感器将钙(Ca 2 + )作为模型离子进行细胞内验证。尽管常规指示器可以改善指示器性能的各个方面,例如Kd,波长和比率测量,但是NP传感器的使用可以实现同时解决这些问题的综合优势。纳米传感器结合了高钙选择性离子载体和两个荧光指示剂,可作为信号传感器,促进定量比例成像。对于细胞内Ca 2 + 的应用,将传感器微调至生理感应范围,并在装有纳米传感器的HeLa细胞中证明活细胞成像和定量及其对卡巴胆碱引起的商店释放的反应性( 〜400 nM)。因此,当前的纳米传感器设计为细胞内离子的实时检测和光学确定提供了一个有希望的传感平台。

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