Switching from Multiplex to Multimodal Colorimetric Lateral Flow Immunosensor.
Simone CavaleraFabio Di NardoLuca ForteFrancesca MarinoniMatteo ChiarelloClaudio BaggianiLaura AnfossiPublished in: Sensors (Basel, Switzerland) (2020)
Multiplex lateral flow immunoassay (LFIA) is largely used for point-of-care testing to detect different pathogens or biomarkers in a single device. The increasing demand for multitargeting diagnostics requires multi-informative single tests. In this study, we demonstrated three strategies to upgrade standard multiplex LFIA to multimodal capacity. As a proof-of-concept, we applied the strategies to the differential diagnosis of Human Immunodeficiency Virus (HIV) infection, a widespread pathogen, for which conventional multiplex LFIA testing is well-established. In the new two-parameter LFIA (x2LFIA), we exploited color encoding, in which the binding of multiple targets occurs in one reactive band and the color of the probe reveals which one is present in the sample. By combining the sequential alignment of several reactive zones along the membrane of the LFIA strip and gold nanoparticles and gold nanostars for the differential visualization, in this demonstration, the x2LFIA can furnish information on HIV serotype and stage of infection in a single device. Three immunosensors were designed. The use of bioreagents as the capturing ligand anchored onto the membrane or as the detection ligand labelled with gold nanomaterials affected the performance of the x2LFIA. Higher detectability was achieved by the format involving the HIV-specific antigens as capturing agent and labelled secondary bioligands (anti-human immunoglobulins M and protein G) as the probes.
Keyphrases
- human immunodeficiency virus
- antiretroviral therapy
- real time pcr
- gold nanoparticles
- hiv infected
- hiv positive
- hepatitis c virus
- high throughput
- hiv aids
- label free
- sensitive detection
- living cells
- endothelial cells
- hiv testing
- pain management
- quantum dots
- binding protein
- healthcare
- immune response
- nitric oxide
- dendritic cells
- fluorescence imaging
- single cell
- dengue virus
- antimicrobial resistance
- fluorescent probe
- health information
- induced pluripotent stem cells
- transcription factor
- protein protein
- loop mediated isothermal amplification
- candida albicans
- chronic pain