The ability to selectively amplify the detection signals for targets over interferences is crucial when analyzing proteins in a complicated sample matrix. Here, we describe a targeted enlargement strategy that can amplify the light-scattering signal from aptamer-functionalized gold nanoparticles (Apt-AuNP) with high specificity for quantitative protein analysis. This strategy is achieved by labeling target proteins with competitively protected Apt-AuNP probes and enlarging the probes with gold enhancement. This competitive protection strategy could effectively eliminate nonspecific protein adsorptions from a sample matrix, leading to a highly specific labeling of the target protein. As a result, the subsequent amplification of the light-sca...
A mass spectrometry signal amplification method is developed for the ultrasensitive and selective de...
In this work, we report a highly sensitive colorimetric sensing strategy for cancer biomarker diagno...
Gold nanoparticles (AuNPs) and aptamers are compelling building blocks for analytical assays with de...
The ability to selectively amplify the detection signals for targets over interferences is crucial w...
Rare protein enrichment and sensitive detection hold great potential in biomedical studies and clini...
This thesis describes rapid, facile, selective, and specific solution and surface-based assays for t...
Abstract only availableRecent research efforts in the area of nanosensors are focused on labeling pr...
A highly sensitive quartz crystal microbalance with dissipation monitoring (QCM-D) biosensor for pro...
Gold nanoparticles (AuNPs) and aptamers are compelling building blocks for analytical assays with de...
We describe herein simple and sensitive aptamer-based colorimetric sensing of protein (alpha-thrombi...
It has been a long-standing challenge in bioassay using aptamers and gold nanoparticles to detect di...
Low abundant proteins of body fluids participate nearly all physiological processes and indicate var...
A highly sensitive quartz crystal microbalance with dissipation monitoring (QCM-D) biosensor for pro...
In this paper, we describe a pulsed-laser desorption/ionization mass spectrometry (LDI-MS) approach ...
We have developed a convenient and efficient colorimetric detection system for protein targets using...
A mass spectrometry signal amplification method is developed for the ultrasensitive and selective de...
In this work, we report a highly sensitive colorimetric sensing strategy for cancer biomarker diagno...
Gold nanoparticles (AuNPs) and aptamers are compelling building blocks for analytical assays with de...
The ability to selectively amplify the detection signals for targets over interferences is crucial w...
Rare protein enrichment and sensitive detection hold great potential in biomedical studies and clini...
This thesis describes rapid, facile, selective, and specific solution and surface-based assays for t...
Abstract only availableRecent research efforts in the area of nanosensors are focused on labeling pr...
A highly sensitive quartz crystal microbalance with dissipation monitoring (QCM-D) biosensor for pro...
Gold nanoparticles (AuNPs) and aptamers are compelling building blocks for analytical assays with de...
We describe herein simple and sensitive aptamer-based colorimetric sensing of protein (alpha-thrombi...
It has been a long-standing challenge in bioassay using aptamers and gold nanoparticles to detect di...
Low abundant proteins of body fluids participate nearly all physiological processes and indicate var...
A highly sensitive quartz crystal microbalance with dissipation monitoring (QCM-D) biosensor for pro...
In this paper, we describe a pulsed-laser desorption/ionization mass spectrometry (LDI-MS) approach ...
We have developed a convenient and efficient colorimetric detection system for protein targets using...
A mass spectrometry signal amplification method is developed for the ultrasensitive and selective de...
In this work, we report a highly sensitive colorimetric sensing strategy for cancer biomarker diagno...
Gold nanoparticles (AuNPs) and aptamers are compelling building blocks for analytical assays with de...