Guo Jingjing, Huang Hanxi, Zhou Minjuan, Yang Changxi, Kong Lingjie
State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instruments , Tsinghua University , Beijing 100084 , China.
Anal Chem. 2018 Oct 16;90(20):12292-12298. doi: 10.1021/acs.analchem.8b03787. Epub 2018 Oct 5.
Advances in fluorescent nanomaterials and photonics have led to a new generation of photonic devices for applications in biosensing, diagnostics, and therapy. However, for clinical utility, biocompatibility and limited light guiding in tissues pose significant challenges. Here, we report a new type of soft, biocompatible, and tapered optical waveguide with capability of delivering light in deep tissues and demonstrate it as a ratiometric probe for rapid point-of-care detection of metal ions. The waveguide was made from quantum dots (QDs)-incorporated biocompatible hydrogels and coated with a thin sensing film to ensure fast exchanges with the surrounding analytes. The tapered design of the waveguide allows more light extraction for efficient excitation of the coating film. To achieve ratiometric measurements, two types of QDs with well-resolved emission bands are synthesized and immobilized in the waveguide and the coating film, respectively. We show that the ratiometric readout of the waveguide sensor is free of environmental disturbances and exhibits negligible drifts when applied in various environments such as being immersed in water or embedded in tissues. The waveguide device provides a new photonic-sensing platform that may allow being engineered to sense a wide range of metal ions and analytes.
荧光纳米材料和光子学的进展催生了新一代用于生物传感、诊断和治疗的光子器件。然而,就临床应用而言,生物相容性以及在组织中有限的光导能力带来了重大挑战。在此,我们报告了一种新型的柔软、生物相容且呈锥形的光波导,它能够在深部组织中传输光,并将其展示为一种用于快速即时检测金属离子的比率探针。该光波导由掺入量子点(QD)的生物相容性水凝胶制成,并涂有一层薄传感膜,以确保与周围分析物快速交换。光波导的锥形设计允许更多的光提取,从而有效地激发涂膜。为了实现比率测量,合成了两种发射带分辨率良好的量子点,并分别固定在光波导和涂膜中。我们表明,光波导传感器的比率读数不受环境干扰,并且在诸如浸入水中或嵌入组织等各种环境中应用时,漂移可忽略不计。该光波导器件提供了一个新的光子传感平台,可被设计用于检测多种金属离子和分析物。