Related Experiment Video
Updated: May 8, 2026

Polarization of M1 and M2 Human Monocyte-Derived Cells and Analysis with Flow Cytometry upon Mycobacterium tuberculosis Infection
Published on: September 18, 2020
Intracellular survival and persistence of Chlamydia muridarum is determined by macrophage polarization
Eric Gracey1, Aifeng Lin, Ali Akram
1Department of Immunology, University of Toronto, Toronto, Ontario, Canada.
Abstract:
Macrophages can display a number of distinct phenotypes, known collectively as polarized macrophages. The best defined of these phenotypes are the classically-activated, interferon gamma (IFNγ)/LPS induced (M1) and alternatively-activated, IL-4 induced (M2) macrophages. The goal of this study is to characterize macrophage-Chlamydia interactions in the context of macrophage polarization. Here we use Chlamydia muridarum and murine bone-marrow derived macrophages to show Chlamydia does not induce M2 polarization in macrophages as a survival strategy. Unexpectedly, the infection of macrophages was silent with no upregulation of M1 macrophage-associated genes. We further demonstrate that macrophages polarized prior to infection have a differential capacity to control Chlamydia. M1 macrophages harbor up to 40-fold lower inclusion forming units (IFU) than non-polarized or M2 polarized macrophages. Gene expression analysis showed an increase in 16sRNA in M2 macrophages with no change in M1 macrophages. Suppressed Chlamydia growth in M1 macrophages correlated with the induction of a bacterial gene expression profile typical of persistence as evident by increased Euo expression and decreased Omp1 and Tal expression. Observations of permissive Chlamydia growth in non-polarized and M2 macrophages and persistence in M1 macrophages were supported through electron microscopy. This work supports the importance of IFNγ in the innate immune response to Chlamydia. However, demonstration that the M1 macrophages, despite an antimicrobial signature, fail to eliminate intracellular Chlamydia supports the notion that host-pathogen co-evolution has yielded a pathogen that can evade cellular defenses against this pathogen, and persist for prolonged periods of time in the host.
Insights
Chlamydia infection does not trigger M2 macrophage polarization. While M1 macrophages limit Chlamydia growth, the bacteria persist, indicating evasion of host defenses.
Area of Science:
- Immunology
- Microbiology
- Cell Biology
Background:
- Macrophages exhibit diverse phenotypes, including classically-activated (M1) and alternatively-activated (M2) states.
- Understanding macrophage polarization's role in Chlamydia infection is crucial for innate immunity research.
Purpose of the Study:
- To investigate how macrophage polarization influences interactions with Chlamydia muridarum.
- To determine if Chlamydia manipulates macrophage polarization for survival.
Main Methods:
- Utilized murine bone-marrow derived macrophages and Chlamydia muridarum.
- Assessed macrophage polarization markers (M1/M2 genes) and Chlamydia load (IFU).
- Analyzed bacterial gene expression and employed electron microscopy.
Main Results:
- Chlamydia infection did not induce M2 polarization or M1 gene upregulation.
- M1 macrophages harbored significantly fewer Chlamydia inclusion-forming units (IFUs) compared to non-polarized or M2 macrophages.
- Chlamydia exhibited a persistence gene expression profile in M1 macrophages, despite suppressed growth, and replicated permissively in M2 macrophages.
Conclusions:
- Interferon gamma (IFNγ) plays a role in controlling Chlamydia, as seen with M1 macrophages.
- Chlamydia evades host defenses and persists in M1 macrophages, suggesting pathogen adaptation.
- Macrophage polarization differentially impacts Chlamydia control and persistence.
Related Concept Videos
Bacterial Phylum Chlamydiae
Immune Surveillance by NK Cells and Phagocytes
Natural Killer Cells: The Fast Responders
NK cells are large granular lymphocytes found in the blood and lymphatic system. These...
Cell-mediated Immune Responses
Defense Against Bacterial Pathogens
Phagocytes
Phagocytes are the frontline soldiers of the immune system. They include neutrophils and macrophages. Neutrophils are the most abundant type of white blood cell and are quickly mobilized to the site of infection. Macrophages are larger cells that patrol...
Colonisation of Pathogens

