A sandwich HIV p24 amperometric immunosensor based on a direct gold electroplating-modified electrode

Lei Zheng1, Liyong Jia, Bo Li

  • 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.