This paper presents a method for immunometric biomarker quantitation that uses standard flow-through assay reagents and obviates the need for constructing a calibration curve. The approach relies on a nitrocellulose immunoassay substrate with multiple physical addresses for analyte capture, each modified with different amounts of an analyte-specific capture antibody. As such, each address generates a distinctly different readout signal that is proportional to the analyte concentration in the sample. To establish the feasibility of this concept, equations derived from antibody–antigen binding equilibrium were first applied in modeling experiments. Next, nitrocellulose membranes with multiple capture antibody addresses were fabricated for det...
This paper reports a highly reproducible immunoassay of cancer markers using surface-enhanced Raman ...
Likely the first application of silicon wafer as a substrate for sandwich immunoassay with Surface E...
Recently, surface enhanced Raman scattering (SERS) has attracted much attention in medical diagnosis...
A rapid and simple SERS-based immunoassay has been developed to overcome diffusion-limited binding k...
Immunoassays have been utilized for the detection of biological analytes for several decades. Many f...
Many diagnostic tools for the accurate detection of diseases are time consuming and require multiple...
We report the development of a novel single-step, multiplexed, homogeneous immunoassay platform for ...
Rapid detection for influenza virus is vital for human healthcare and illness prevention. Influenza ...
In this paper, two immunoassay methods based on SERS are developed for multiplex analysis, both of w...
We report a highly sensitive surface enhanced Raman scattering (SERS) based immunoassay platform for...
The swift, unambiguous identification of disease markers in low concentrations is fundamental to ear...
: We developed an immunoassay platform for the detection of human Thyroglobulin (Tg) to be integrate...
We report a highly sensitive surface-enhanced Raman scattering (SERS)-based immunoassay platform for...
Detection of biomarkers is of vital importance in disease detection, management, and monitoring of t...
Here we describe scattering based signal suppression artifacts encountered while developing multiple...
This paper reports a highly reproducible immunoassay of cancer markers using surface-enhanced Raman ...
Likely the first application of silicon wafer as a substrate for sandwich immunoassay with Surface E...
Recently, surface enhanced Raman scattering (SERS) has attracted much attention in medical diagnosis...
A rapid and simple SERS-based immunoassay has been developed to overcome diffusion-limited binding k...
Immunoassays have been utilized for the detection of biological analytes for several decades. Many f...
Many diagnostic tools for the accurate detection of diseases are time consuming and require multiple...
We report the development of a novel single-step, multiplexed, homogeneous immunoassay platform for ...
Rapid detection for influenza virus is vital for human healthcare and illness prevention. Influenza ...
In this paper, two immunoassay methods based on SERS are developed for multiplex analysis, both of w...
We report a highly sensitive surface enhanced Raman scattering (SERS) based immunoassay platform for...
The swift, unambiguous identification of disease markers in low concentrations is fundamental to ear...
: We developed an immunoassay platform for the detection of human Thyroglobulin (Tg) to be integrate...
We report a highly sensitive surface-enhanced Raman scattering (SERS)-based immunoassay platform for...
Detection of biomarkers is of vital importance in disease detection, management, and monitoring of t...
Here we describe scattering based signal suppression artifacts encountered while developing multiple...
This paper reports a highly reproducible immunoassay of cancer markers using surface-enhanced Raman ...
Likely the first application of silicon wafer as a substrate for sandwich immunoassay with Surface E...
Recently, surface enhanced Raman scattering (SERS) has attracted much attention in medical diagnosis...