A protein nanofiber hydrogel for sensitive immunoassays
文献信息
Dae-Sung Lee, Jin-Seung Park, Eun Jung Lee, Hyun Jin Kim, Jeewon Lee
Amyloid-like protein nanofibers were assembled in vitro using a recombinant protein fusion, with yeast Sup35 and human SSB/La proteins as assembly units, where the length of the nanofibers was mostly between 100 and 400 nm. The protein nanofibers, hereafter referred to as Sup35-based protein nanofiber probes (SuPNPs), were used to sensitively detect anti-SSB/La antibodies [Sjögren's syndrome (SS)-specific marker]. After, the SuPNPs were vinylated and subsequently linked to acrylamide. The polymerization reaction with acrylamide formed a SuPNP-hydrogel with uniform porosity, where the SuPNPs were directly cross-linked to polyacrylamide. Alternatively, biotinylated SuPNPs (bt-SuPNP) were attached to a streptavidin-hydrogel, resulting in the formation of a bt-SuPNP-hydrogel. When both the SuPNP-hydrogel and bt-SuPNP-hydrogel were used as 3D assay platforms for the detection of anti-SSB/La antibodies in a buffer solution, the LODs (limit of detection) were found to be 10 pM for both, showing 100-fold enhancement in sensitivity compared to conventional 2D polystyrene (PS) plate-based assays. It seems that the exposed surface and uniform distribution of the SuPNPs within the 3D space of the porous hydrogel matrix interacted more effectively with the anti-SSB/La antibodies, leading to more sensitive detection. The equal sensitivity demonstrated by the SuPNP- and bt-SuPNP-hydrogels above indicates that the target binding activity of the SuPNPs remains unchanged when either directly cross-linked to the hydrogel or indirectly immobilized to the hydrogel via streptavidin. When used to detect anti-SSB/La antibodies in human serum, the SuPNP-hydrogel is 1000 times more sensitive than a 2D PS plate. It seems that non-specific adsorption of the serum proteins occurs heavily on the 2D PS plate. While diagnostic assays for Sjögren's syndrome were demonstrated as proof-of-concept in this study, the SuPNP-hydrogel can be generally applied for the sensitive and specific detection of many other disease markers.
相关文献
IF 6.222
From Douglas fir to renewable H2-enriched syngas via ex situ catalytic pyrolysis over metal nanoparticles–nanocellulose derived carbon catalystsIF 6.367
Developing a novel high performance NaNbO3-based lead-free dielectric capacitor for energy storage applicationsIF 6.367
The limits to biocatalysis: pushing the envelopeIF 6.222
Life cycle assessment of plasma-assisted ethylene production from rich-in-methane gas streamsIF 6.367
Increasing efficiency of perovskite solar cells using low concentrating photovoltaic systemsIF 6.367
Cu2ZnSnS4 nanocrystals for microwave thermal and microwave dynamic combination tumor therapyIF 6.222
Contents listIF 6.222
Solventless thermal crosslinked polymer protective layer for high stable lithium metal batteriesIF 6.367
An elemental S/P photocatalyst for hydrogen evolution from water under visible to near-infrared light irradiationIF 6.222
来源期刊
Analyst

Analyst publishes analytical and bioanalytical research that reports premier fundamental discoveries and inventions, and the applications of those discoveries, unconfined by traditional discipline barriers.