研究目的
Development of a test card based on up-conversion phosphor technology-based immune lateral flow (UPT-LF) assay as a near-patient detection tool for serum Prothrombin induced by vitamin K absence or antagonist II (PIVKA-II).
研究成果
UPT-LF assay provides a reliable, rapid and convenient test for quantitative detection of serum PIVKA-II as well as diagnosis of HCC by a point of care testing way. This advancement may greatly contribute to the further popularization of serum PIVKA-II detection, further improvement of the screening and diagnosis of HCC, and then reducing the mortality of patients.
研究不足
The thermal stability of the test card at 37 °C is not as good as that at 25 °C, with a calculated δ > 15% when the detection results at 7 d were compared with that at 0 d. This effect may be related to the degradation of the antibodies on the conjugate pad or the antibodies coated on the NC membrane stored at a relatively high temperature for a long time.
1:Experimental Design and Method Selection:
The study utilized up-converted phosphor nanoparticles (UCPs) to bind to PIVKA-II monoclonal antibodies as labeled probes to develop a test card for detecting serum PIVKA-II. The UPT-LF test card was evaluated for its performance in detecting PIVKA-II in serum samples.
2:Sample Selection and Data Sources:
Serum samples were collected from 228 patients with hepatocellular carcinoma (HCC), 170 patients with liver benign lesion (LBL), and 100 healthy controls (HC).
3:List of Experimental Equipment and Materials:
UCPs (NaYF4:Yb3+, Er3+), UPT exclusive shell, absorbent pad, nitrocellulose membrane, glass fiber SB08, PIVKA-II monoclonal antibodies, goat anti-mouse IgG, PIVKA-II recombinant antigen, and various buffers and reagents.
4:Experimental Procedures and Operational Workflow:
The UPT-LF test card was assembled and used to detect PIVKA-II in serum samples. The detection process involved adding serum to the test card, which was then scanned by a biosensor to quantify PIVKA-II levels.
5:Data Analysis Methods:
The performance of the UPT-LF test card was evaluated based on limit of detection, linearity, stability, recovery rate, precision, and interference. The diagnostic performance for HCC was analyzed using receiver operating characteristic (ROC) curve analysis.
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UCPs
NaYF4:Yb3+, Er3+
Beijing Hotgen Biotech
Used as luminescent matrix material of the bio-labelling probe
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UPT exclusive shell
Beijing Hotgen Biotech
Part of the test card assembly
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Nitrocellulose membrane
503C
Used as a solid-phase reaction medium in the test card
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Glass fiber SB08
Used in the assembly of the test card
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PIVKA-II monoclonal antibody
mIgG1, mIgG2
Beijing Hotgen Biotech
Used as labeled probes in the test card
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Goat anti-mouse IgG
Beijing Hotgen Biotech
Used in the assembly of the test card
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PIVKA-II recombinant antigen
Beijing Hotgen Biotech
Used in the evaluation of the test card
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Heterophilic Blocking Reagent mouse IgG
HBR-IgG
Beijing Hotgen Biotech
Used in the assembly of the test card
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UPT-3A-1800 biosensor
Beijing Hotgen Biotech
Used to scan the test card and quantify PIVKA-II levels
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Lumipulse? G1200
Fujirebio Inc.
Used for comparison with the UPT-LF assay
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