NanoBioMedical Centre, Adam Mickiewicz University, 3 Wszechnicy Piastowskiej Str., PL-61614 Poznan, Poland.
Biosensors (Basel). 2023 May 30;13(6):595. doi: 10.3390/bios13060595.
Current biosensors have limited application in clinical diagnostics as they lack the high order of specificity needed to detect low molecular analytes, especially in complex fluids (such as blood, urine, and saliva). In contrast, they are resistant to the suppression of non-specific binding. Hyperbolic metamaterials (HMMs) offer highly sought- after label-free detection and quantification techniques to circumvent sensitivity issues as low as 10 M concentration in angular sensitivity. This review discusses design strategies in detail and compares nuances in conventional plasmonic techniques to create susceptible miniaturized point-of-care devices. A substantial portion of the review is devoted to developing low optical loss reconfigurable HMM devices for active cancer bioassay platforms. A future perspective of HMM-based biosensors for cancer biomarker detection is provided.
当前的生物传感器在临床诊断中的应用有限,因为它们缺乏检测低分子分析物所需的高特异性,尤其是在复杂的流体中(如血液、尿液和唾液)。相比之下,它们不易受到非特异性结合的抑制。双曲超材料 (HMM) 提供了备受追捧的无标记检测和定量技术,可以避免灵敏度问题,其在角灵敏度方面的浓度低至 10 M。本综述详细讨论了设计策略,并比较了传统等离子体技术的细微差别,以创建易受影响的小型即时护理设备。本综述的很大一部分致力于开发用于主动癌症生物分析平台的低光学损耗可重构 HMM 器件。提供了基于 HMM 的生物传感器用于癌症生物标志物检测的未来展望。