Interactive laser cytometric analysis of retroviral protein expression in HIV-infected lymphocytic cell lines

J T Warren1, J B McMahon, O S Weislow

  • 1Program Development Research Group (PDRG), National Cancer Institute, Frederick Cancer Research and Development Center (NCI-FCRDC), MD 21701.

Insights

Interactive laser cytometry enables ultrasensitive detection of HIV antigens like gp120 and p24 in infected cells. AZT treatment significantly reduced viral glycoprotein expression, demonstrating the method's utility in monitoring HIV infection dynamics.

Area of Science:

  • Virology
  • Immunology
  • Cell Biology

Background:

  • Human immunodeficiency virus (HIV) infection involves the expression of key viral proteins.
  • Monitoring HIV antigen expression is crucial for understanding viral kinetics and treatment efficacy.

Purpose of the Study:

  • To investigate the expression of HIV envelope glycoproteins (gp160, gp41, gp120) and core protein (p24) in infected human lymphocyte cell lines.
  • To evaluate the utility of interactive laser cytometry for ultrasensitive and quantitative detection of HIV antigens at the single-cell level.
  • To assess the impact of AZT treatment on HIV antigen expression.

Main Methods:

  • Utilized interactive laser cytometry for ultrasensitive fluorescence detection of HIV antigens.
  • Employed specific anti-HIV monoclonal and polyclonal antibodies for quantitative antigen detection.
  • Analyzed antigen expression in HIV-infected cell lines (H-9, CEM-SS, C8166) over time and after AZT treatment.

Main Results:

  • Interactive laser cytometry allowed sensitive detection of gp120, gp160, gp41, and p24 in HIV-infected cells.
  • Significant increases in gp120, gp160, gp41, and p24 expression were observed within 48 hours post-infection in C8166 cells.
  • AZT treatment (0.01-1.0 microM) led to a dose-dependent decrease in the expression of gp120, gp160, and p24, with a significant loss of gp120.

Conclusions:

  • Interactive laser cytometry provides a sensitive, early, and statistically robust method for distinguishing HIV antigen expression at the single-cell level.
  • This technique allows for the detection of changes in HIV-associated antigen expression and their kinetics.
  • The findings highlight the effectiveness of AZT in reducing the expression of key HIV proteins.

Related Concept Videos