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Interferon-gamma-primed monocytoid cell lines: optimizing their use for in vitro detection of bacterial pyrogens
A Peterbauer1, S Eperon, T W Jungi
1Institute of Medical Chemistry and Biochemistry, University of Innsbruck, Fritz-Pregl-Str. 3 A-6020, Innsbruck, Austria.
Abstract:
In order to reduce animal testing for quality control of pharmaceutical agents intended for parenteral use, the Limulus amebocyte lysate (LAL) assay is now being accepted in many cases as an alternative to measuring pyrogenic activity of samples in rabbits. However, since the LAL test is specific for cell wall components from Gram-negative bacteria and is sometimes difficult to perform in samples containing large amounts of protein, this alternative still leaves a considerable diagnostic gap. Here, we have optimized a previously established test based on assessing the formation of neopterin or nitrite in interferon-gamma-treated human (THP-1) or murine (J774A.1, RAW264.7) monocytoid cell lines, respectively, in response to bacterial pyrogens. Optimal results were obtained either with THP-1 cells in serum-containing media and using a high concentration of interferon-gamma (IFN-gamma) or with RAW264.7 cells in serum-free media and independent of the IFN-gamma dose. Results were significantly correlated with those obtained by another cell-culture-based assay in which formation of tumor necrosis factor-alpha by THP-1 1G3 cells was assessed. Also in RAW264.7 murine monocytoid cells, formation of nitrite and of tumor necrosis factor-alpha in response to a variety of samples was correlated. Samples shown to be pyrogenic in rabbits in a previous study were unambiguously detected with the test presented here. As expected, the LAL test was negative with cell-free supernatants from Staphylococcus aureus66 kDa). Taken together, these results indicate that the use of monocytoid cell lines and the detection of metabolites which are triggered in the course of immunostimulation could fill the gap left by the LAL test and help to further reduce animal testing for pyrogens.
Insights
This study presents an optimized cell-based assay using monocytoid cell lines to detect bacterial pyrogens, offering an alternative to animal testing and the Limulus amebocyte lysate (LAL) assay. The new method effectively identifies pyrogenic substances, addressing limitations of current diagnostic tools.
Area of Science:
- Biotechnology
- Immunology
- Pharmacology
Background:
- The Limulus amebocyte lysate (LAL) assay is an alternative to rabbit testing for pyrogenicity but has limitations.
- The LAL assay is specific for Gram-negative bacteria and can be challenging with protein-rich samples, creating a diagnostic gap.
Purpose of the Study:
- To optimize a cell-based assay for detecting bacterial pyrogens, aiming to reduce animal testing.
- To evaluate the efficacy of monocytoid cell lines (THP-1, RAW264.7) in detecting pyrogenic activity.
Main Methods:
- Optimized a previously established assay using interferon-gamma (IFN-γ)-treated human (THP-1) or murine (RAW264.7) monocytoid cell lines.
- Assessed the formation of neopterin or nitrite in response to bacterial pyrogens.
- Compared results with a tumor necrosis factor-alpha assay and rabbit pyrogenicity tests.
Main Results:
- Optimal results were achieved with THP-1 cells in serum-containing media with high IFN-γ, or RAW264.7 cells in serum-free media.
- The cell-based assay results correlated significantly with a tumor necrosis factor-alpha assay.
- The optimized assay unambiguously detected pyrogenic samples previously identified in rabbit studies.
Conclusions:
- Monocytoid cell lines and metabolite detection can fill the diagnostic gap left by the LAL assay.
- This cell-based approach offers a promising alternative to reduce animal testing for pyrogen detection.
- The assay effectively identifies pyrogens, including those from Gram-positive bacteria like Staphylococcus aureus.