ArticleJournal of pharmaceutical analysis2024
Optical biosensing of monkeypox virus using novel recombinant silica-binding proteins for site-directed antibody immobilization.
Article in Journal of pharmaceutical analysis, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers.
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Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.
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Who cites it
6 citing papers in PubMed.
- A Novel Monoclonal Antibody Targeting the A29 Protein of Monkeypox Virus and Its Application in Immunoassay.Antibodies (Basel, Switzerland) · 2026Article
- A programmable peptide interface for on-demand neural culturing platforms.Journal of nanobiotechnology · 2026Article
- A label-free optical biosensor-based point-of-care test for the rapid detection of Monkeypox virus.Biosensors & bioelectronics · 2025Article
- High Quality-Factor All-Dielectric Metacavity for Label-Free Biosensing.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2025Article
- Enzyme Engineering: Performance Optimization, Novel Sources, and Applications in the Food Industry.Foods (Basel, Switzerland) · 2024Review
- A Label-free Optical Biosensor-Based Point-of-Care Test for the Rapid Detection of Monkeypox Virus.medRxiv : the preprint server for health sciences · 2024Article
Corrections and comments
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Authors and funding
4 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
The efficient immobilization of capture antibodies is crucial for timely pathogen detection during global pandemic outbreaks. Therefore, we proposed a silica-binding protein featuring core functional domains (cSP). It comprises a peptide with a silica-binding tag designed to adhere to silica surfaces and tandem protein G fragments (2C2) for effective antibody capture. This innovation facilitates precise site-directed immobilization of antibodies onto silica surfaces. We applied cSP to silica-coated optical fibers, creating a fiber-optic biolayer interferometer (FO-BLI) biosensor capable of monitoring the monkeypox virus (MPXV) protein A29L in spiked clinical samples to rapidly detect the MPXV. The cSP-based FO-BLI biosensor for MPXV demonstrated a limit of detection (LOD) of 0.62 ng/mL in buffer, comparable to the 0.52 ng/mL LOD achieved using a conventional streptavidin (SA)-based FO-BLI biosensor. Furthermore, it achieved LODs of 0.77 ng/mL in spiked serum and 0.80 ng/mL in spiked saliva, exhibiting no cross-reactivity with other viral antigens. The MPXV detection process was completed within 14 min. We further proposed a cSP-based multi-virus biosensor strategy capable of detecting various pandemic strains, such as MPXV, the latest coronavirus disease (COVID) variants, and influenza A protein, to extend its versatility. The proposed cSP-modified FO-BLI biosensor has a high potential for rapidly and accurately detecting MPXV antigens, making valuable contributions to epidemiological studies.
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