Rapid ratiometric biomarker detection with topically applied SERS nanoparticles.

Yu Winston Wang, Altaz Khan, Madhura Som, Danni Wang, Ye Chen, Steven Y Leigh, Daphne Meza, Patrick Z McVeigh, Brian C Wilson, Jonathan T C Liu
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引用次数: 62

Abstract

Multiplexed surface-enhanced Raman scattering (SERS) nanoparticles (NPs) offer the potential for rapid molecular phenotyping of tissues, thereby enabling accurate disease detection as well as patient stratification to guide personalized therapies or to monitor treatment outcomes. The clinical success of molecular diagnostics based on SERS NPs would be facilitated by the ability to accurately identify tissue biomarkers under time-constrained staining and detection conditions with a portable device. In vitro, ex vivo and in vivo experiments were performed to optimize the technology and protocols for the rapid detection (0.1-s integration time) of multiple cell-surface biomarkers with a miniature fiber-optic spectral-detection probe following a brief (5 min) topical application of SERS NPs on tissues. Furthermore, we demonstrate that the simultaneous detection and ratiometric quantification of targeted and nontargeted NPs allows for an unambiguous assessment of molecular expression that is insensitive to nonspecific variations in NP concentrations.

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局部应用SERS纳米颗粒的快速比例生物标志物检测。
多路表面增强拉曼散射(SERS)纳米颗粒(NPs)提供了快速组织分子表型的潜力,从而实现准确的疾病检测以及患者分层,以指导个性化治疗或监测治疗结果。基于SERS NPs的分子诊断的临床成功将有助于在时间限制的染色和便携式设备的检测条件下准确识别组织生物标志物。在体外、离体和体内实验中,优化了在短暂(5分钟)局部应用SERS NPs后,用微型光纤光谱检测探针快速检测多种细胞表面生物标志物(0.1 s整合时间)的技术和方案。此外,我们证明了靶向和非靶向NP的同时检测和比例量化允许对NP浓度的非特异性变化不敏感的分子表达进行明确的评估。
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TECHNOLOGY
TECHNOLOGY ENGINEERING, MULTIDISCIPLINARY-
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