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Updated: Jun 14, 2026

Reprograming Model of Human Monocyte-derived Macrophages for In-vitro Assays
Published on: April 18, 2025
Delineation of diverse macrophage activation programs in response to intracellular parasites and cytokines
Shuyi Zhang1, Charles C Kim, Sajeev Batra
1Department of Pathology, University of California-San Francisco, CA, USA.
Background:
The ability to reside and proliferate in macrophages is characteristic of several infectious agents that are of major importance to public health, including the intracellular parasites Trypanosoma cruzi (the etiological agent of Chagas disease) and Leishmania species (etiological agents of Kala-Azar and cutaneous leishmaniasis). Although recent studies have elucidated some of the ways macrophages respond to these pathogens, the relationships between activation programs elicited by these pathogens and the macrophage activation programs elicited by bacterial pathogens and cytokines have not been delineated.
Methodology/Principal Findings:
To provide a global perspective on the relationships between macrophage activation programs and to understand how certain pathogens circumvent them, we used transcriptional profiling by genome-wide microarray analysis to compare the responses of mouse macrophages following exposure to the intracellular parasites T. cruzi and Leishmania mexicana, the bacterial product lipopolysaccharide (LPS), and the cytokines IFNG, TNF, IFNB, IL-4, IL-10, and IL-17. We found that LPS induced a classical activation state that resembled macrophage stimulation by the Th1 cytokines IFNG and TNF. However, infection by the protozoan pathogen L. mexicana produced so few transcriptional changes that the infected macrophages were almost indistinguishable from uninfected cells. T. cruzi activated macrophages produced a transcriptional signature characterized by the induction of interferon-stimulated genes by 24 h post-infection. Despite this delayed IFN response by T. cruzi, the transcriptional response of macrophages infected by the kinetoplastid pathogens more closely resembled the transcriptional response of macrophages stimulated by the cytokines IL-4, IL-10, and IL-17 than macrophages stimulated by Th1 cytokines.
Conclusions/Significance:
This study provides global gene expression data for a diverse set of biologically significant pathogens and cytokines and identifies the relationships between macrophage activation states induced by these stimuli. By comparing macrophage activation programs to pathogens and cytokines under identical experimental conditions, we provide new insights into how macrophage responses to kinetoplastids correlate with the overall range of macrophage activation states.
Insights
This study reveals how pathogens like Trypanosoma cruzi and Leishmania species manipulate macrophage activation, differing from bacterial responses. Kinetoplastid pathogens induce distinct immune profiles, offering insights into host-pathogen interactions.
Area of Science:
- Immunology
- Molecular Biology
- Infectious Diseases
Background:
- Macrophage residency is key for pathogens like Trypanosoma cruzi and Leishmania species.
- Understanding macrophage activation by pathogens versus bacterial stimuli is crucial for public health.
Purpose of the Study:
- To globally compare macrophage activation programs induced by various pathogens and cytokines.
- To elucidate how pathogens circumvent macrophage defenses.
Main Methods:
- Transcriptional profiling using genome-wide microarray analysis.
- Comparison of mouse macrophage responses to T. cruzi, Leishmania mexicana, LPS, and cytokines (IFNG, TNF, IFNB, IL-4, IL-10, IL-17).
Main Results:
- LPS induced classical macrophage activation, similar to Th1 cytokines (IFNG, TNF).
- Leishmania mexicana caused minimal transcriptional changes in macrophages.
- T. cruzi induced a delayed interferon response, with kinetoplastid pathogens resembling IL-4, IL-10, and IL-17 stimulation more than Th1 stimulation.
Conclusions:
- Provides comprehensive gene expression data on macrophage activation by diverse stimuli.
- Identifies distinct relationships between macrophage activation states induced by pathogens and cytokines.
- Offers new insights into kinetoplastid pathogen interactions with macrophages.
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