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Published on: February 16, 2018
A sandwich HIV p24 amperometric immunosensor based on a direct gold electroplating-modified electrode
1Clinical Laboratory Center, Nanfang Hospital, Southern Medical University, Guangzhou 510515, China.
Insights
A novel immunosensor detects the HIV p24 antigen earlier than antibody tests. This gold nanoparticle-based biosensor offers highly sensitive and rapid human immunodeficiency virus (HIV) diagnosis for improved acquired immune deficiency syndrome (AIDS) control.
Area of Science:
- Biomedical Engineering
- Immunotechnology
- Diagnostic Assays
Background:
- Acquired immune deficiency syndrome (AIDS) is a critical global health issue, necessitating accurate and early diagnosis of human immunodeficiency virus (HIV) infection.
- Laboratory diagnosis of HIV is vital for controlling AIDS transmission and management.
- The HIV-1 p24 antigen is an early biomarker for HIV infection, detectable before host antibodies develop.
Purpose of the Study:
- To develop a novel, highly sensitive sandwich HIV p24 immunosensor for early HIV detection.
- To enhance electrode properties using direct gold nanoparticle electroplating for improved electrochemical performance.
- To evaluate the immunosensor's performance against established diagnostic methods like ELISA.
Main Methods:
- Fabrication of a gold nanoparticle-modified electrode via chronoamperometry for enhanced conductivity and reversibility.
- Development of a sandwich immunosensor assay utilizing the modified electrode to capture the HIV p24 antigen.
- Optimization of electrochemical detection parameters to establish a linear relationship between signal and p24 concentration.
Main Results:
- The developed immunosensor demonstrated a linear response to p24 antigen concentration from 0.01 ng/mL to 100 ng/mL (R > 0.99).
- Achieved a low detection limit of 0.008 ng/mL for the p24 antigen.
- Exhibited sensitivity over two orders of magnitude higher than traditional ELISA methods for p24 detection.
Conclusions:
- The gold nanoparticle-based HIV p24 immunosensor offers a sensitive, rapid, and reproducible method for early HIV diagnosis.
- The biosensor's ease of use, mild conditions, and anti-interference capabilities make it suitable for clinical applications.
- This technology holds significant potential for improving HIV/AIDS diagnostics and public health outcomes.
Abstract:
Acquired immune deficiency syndrome (AIDS) is a severe communicable immune deficiency disease caused by the human immune deficiency virus (HIV). The analysis laboratory diagnosis of HIV infection is a crucial aspect of controlling AIDS. The p24 antigen, the HIV-1 capsid protein, is of considerable diagnostic interest because it is detectable several days earlier than host-generated HIV antibodies following HIV exposure. We present herein a new sandwich HIV p24 immunosensor based on directly electroplating an electrode surface with gold nanoparticles using chronoamperometry, which greatly increased the conductivity and reversibility of the electrode. Under optimum conditions, the electrochemical signal showed a linear relationship with the concentration of p24, ranging from 0.01 ng/mL to 100 ng/mL (R > 0.99), and the detection limit was 0.008 ng/mL. Compared with ELISA, this method increased the sensitivity by more than two orders of magnitude (the sensitivity of ELISA for p24 is about 1 ng/mL). This immunosensor may be broadly applied to clinical samples, being distinguished by its ease of use, mild reaction conditions, guaranteed reproducibility, and good anti-interference ability.
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