Lateral flow assays (LFAs) are currently the most used point-of-care sensors for both diagnostic (e.g., pregnancy test, COVID-19 monitoring) and environmental (e.g., pesticides and bacterial monitoring) applications. Although the core of LFA technology was developed several decades ago, in recent years the integration of novel nanomaterials as signal transducers or receptor immobilization platforms has brought improved analytical capabilities. In this Review, we present how nanomaterial-based LFAs can address the inherent challenges of point-of-care (PoC) diagnostics such as sensitivity enhancement, lowering of detection limits, multiplexing, and quantification of analytes in complex samples. Specifically, we highlight the strategies that c...
Climate change and the expanding global population are placing huge pressure on our planet's natural...
The majority of lateral flow assays (LFAs) use single-color optical labels to provide a qualitative ...
Using microscopy and image analysis, we characterize binding of filamentous viral nanoparticles to a...
Lateral flow assays (LFAs) are currently the most used point-of-care sensors for both diagnostic (e....
Providing effective healthcare to underrepresented populations is a major challenge worldwide due to...
Lateral flow assays (LFAs) are highly attractive for point-of-care (POC) diagnostics for infectious ...
Lateral flow assays (LFAs) are the best-performing and best-known point-of-care tests worldwide. Ove...
Lateral flow assays (LFAs) have been introduced and developed over the last half century. This techn...
The goal of personalized medicine is to target the right treatments to the right patients at the rig...
Paper-based analytical devices (PADs), including lateral flow assays (LFAs), dipstick assays and mic...
Lateral flow biosensors (LFBs) are paper-based devices which permit the performance of low-cost and ...
Lateral flow assays (LFAs) have attracted interest due to their friendly user formats, short assay t...
Infectious diseases are a significant problem, accounting for 1 in every 4 deaths worldwide. The fie...
Thesis (Ph.D.)--University of Washington, 2018The simple and inexpensive sandwich-immunoassay-based ...
The goal of personalized medicine is to target the right treatments to the right patients at the rig...
Climate change and the expanding global population are placing huge pressure on our planet's natural...
The majority of lateral flow assays (LFAs) use single-color optical labels to provide a qualitative ...
Using microscopy and image analysis, we characterize binding of filamentous viral nanoparticles to a...
Lateral flow assays (LFAs) are currently the most used point-of-care sensors for both diagnostic (e....
Providing effective healthcare to underrepresented populations is a major challenge worldwide due to...
Lateral flow assays (LFAs) are highly attractive for point-of-care (POC) diagnostics for infectious ...
Lateral flow assays (LFAs) are the best-performing and best-known point-of-care tests worldwide. Ove...
Lateral flow assays (LFAs) have been introduced and developed over the last half century. This techn...
The goal of personalized medicine is to target the right treatments to the right patients at the rig...
Paper-based analytical devices (PADs), including lateral flow assays (LFAs), dipstick assays and mic...
Lateral flow biosensors (LFBs) are paper-based devices which permit the performance of low-cost and ...
Lateral flow assays (LFAs) have attracted interest due to their friendly user formats, short assay t...
Infectious diseases are a significant problem, accounting for 1 in every 4 deaths worldwide. The fie...
Thesis (Ph.D.)--University of Washington, 2018The simple and inexpensive sandwich-immunoassay-based ...
The goal of personalized medicine is to target the right treatments to the right patients at the rig...
Climate change and the expanding global population are placing huge pressure on our planet's natural...
The majority of lateral flow assays (LFAs) use single-color optical labels to provide a qualitative ...
Using microscopy and image analysis, we characterize binding of filamentous viral nanoparticles to a...