<div><p>We present a high-throughput microfluidic platform capable of quantitating up to 384 biomarkers in 4 distinct samples by immunoassay. The microfluidic device contains 384 unit cells, which can be individually programmed with pairs of capture and detection antibody. Samples are quantitated in each unit cell by four independent MITOMI detection areas, allowing four samples to be analyzed in parallel for a total of 1,536 assays per device. We show that the device can be pre-assembled and stored for weeks at elevated temperature and we performed proof-of-concept experiments simultaneously quantitating IL-6, IL-1β, TNF-α, PSA, and GFP. Finally, we show that the platform can be used to identify functional antibody combinations by screenin...
Rapid profiling of signaling pathways has been a long sought after goal in biological sciences and c...
Microchip-based microfluidic electrochemical arrays hold great promise for fast, high-throughput mul...
Microchip-based microfluidic electrochemical arrays hold great promise for fast, high-throughput mul...
We present a high-throughput microfluidic platform capable of quantitating up to 384 biomarkers in 4...
Immunoassays are one of the most widely performed assays in clinical and research settings due to th...
We describe a multiplexing technology, named Evalution, based on novel digitally encoded micropartic...
Microfluidic diagnostic devices have the potential to transform the practice of medicine. We enginee...
Infectious diseases account for hundreds of millions of annual patient visits and present a heavy bu...
Immunoassays are workhorse laboratory tools for detecting protein targets based on highly specific a...
The sensitive and specific detection of proteins is at the center of many routine analyses in fundam...
Monocytes represent a class of immune cells that play a key role in the innate and adaptive immune r...
In the wake of heterogeneous nature of most biological systems, single-cell analysis has gained enor...
<div><p>Rapid profiling of signaling pathways has been a long sought after goal in biological scienc...
Sensitive quantitation of multiple cytokines can provide important diagnostic information during inf...
The development of assays for protein biomarkers in complex matrices is a demanding task that still ...
Rapid profiling of signaling pathways has been a long sought after goal in biological sciences and c...
Microchip-based microfluidic electrochemical arrays hold great promise for fast, high-throughput mul...
Microchip-based microfluidic electrochemical arrays hold great promise for fast, high-throughput mul...
We present a high-throughput microfluidic platform capable of quantitating up to 384 biomarkers in 4...
Immunoassays are one of the most widely performed assays in clinical and research settings due to th...
We describe a multiplexing technology, named Evalution, based on novel digitally encoded micropartic...
Microfluidic diagnostic devices have the potential to transform the practice of medicine. We enginee...
Infectious diseases account for hundreds of millions of annual patient visits and present a heavy bu...
Immunoassays are workhorse laboratory tools for detecting protein targets based on highly specific a...
The sensitive and specific detection of proteins is at the center of many routine analyses in fundam...
Monocytes represent a class of immune cells that play a key role in the innate and adaptive immune r...
In the wake of heterogeneous nature of most biological systems, single-cell analysis has gained enor...
<div><p>Rapid profiling of signaling pathways has been a long sought after goal in biological scienc...
Sensitive quantitation of multiple cytokines can provide important diagnostic information during inf...
The development of assays for protein biomarkers in complex matrices is a demanding task that still ...
Rapid profiling of signaling pathways has been a long sought after goal in biological sciences and c...
Microchip-based microfluidic electrochemical arrays hold great promise for fast, high-throughput mul...
Microchip-based microfluidic electrochemical arrays hold great promise for fast, high-throughput mul...