Related Experiment Video
Updated: Jul 3, 2025

Isolation, Transfection, and Culture of Primary Human Monocytes
Published on: December 16, 2019
Mayaro virus infection elicits a robust pro-inflammatory and antiviral response in human macrophages
Lady Johana Hernández-Sarmiento1, Y S Tamayo-Molina1, Juan Felipe Valdés-López1
1Grupo Inmunovirología, Facultad de Medicina, Universidad de Antioquia UdeA, Calle 70 No. 52-21, Medellín, Colombia.
Abstract:
Mayaro virus (MAYV), the etiological agent of Mayaro fever (MAYF), is an emergent arbovirus pathogen belonging to Togaviridae family. MAYF is characterized by high inflammatory component that can cause long-lasting arthralgia that persists for months. Macrophages are viral targets and reservoirs, key components of innate immunity and host response. Given the importance of this pathogen, our aim was to determine the inflammatory and antiviral response of human monocyte-derived macrophages (MDMs) infected with MAYV. First, we established the replication kinetics of the virus. Thereafter, we determined the expression of pattern recognition receptors, NF-ĸB complex, interferons (IFNs), two interleukin 27 (IL27) subunits, IFN-stimulated genes (ISGs), and the production of cytokines/chemokines. We found that human MDMs are susceptible to MAYV infection in vitro, with a peak of viral particles released between 24- and 48-hours post-infection (h.p.i) at MOI 0.5, and between 12 and 24 h.p.i at MOI 1. Interestingly, we observed a significant decline in the production of infectious viral particles at 72 h.p.i that was associated with the induction of antiviral response and high cytotoxic effect of MAYV infection in MDMs. We observed modulation of several genes after MAYV infection, as well, we noted the activation of antiviral detection and response pathways (Toll-like receptors, RIG-I/MDA5, and PKR) at 48 h.p.i but not at 6 h.p.i. Furthermore, MAYV-infected macrophages express high levels of the three types of IFNs and the two IL27 subunits at 48 h.p.i. Moreover, we found higher production of IL6, IL1β, CXCL8/IL8, CCL2, and CCL5 at 48 h.p.i as compared to 6 h.p.i. A robust antiviral response (ISG15, APOBEC3A, IFITM1, and MX2) was observed at 48 but not at 6 h.p.i. The innate and antiviral responses of MAYV-infected MDMs differ at 6 and 48 h.p.i. We conclude that MAYV infection induces robust pro-inflammatory and antiviral responses in human primary macrophages.
Insights
Mayaro virus (MAYV) infects human macrophages, triggering significant inflammatory and antiviral responses. This study details the virus
Area of Science:
- Virology
- Immunology
- Infectious Diseases
Background:
- Mayaro virus (MAYV) causes Mayaro fever (MAYF), an emergent arbovirus infection.
- MAYF is characterized by significant inflammation and can lead to prolonged arthralgia.
- Macrophages are crucial targets and reservoirs for MAYV, playing a key role in innate immunity.
Purpose of the Study:
- To investigate the inflammatory and antiviral responses of human monocyte-derived macrophages (MDMs) upon MAYV infection.
- To characterize MAYV replication kinetics in MDMs.
- To analyze the expression of key immune mediators and pathways involved in the host response.
Main Methods:
- Human MDMs were infected with MAYV at different multiplicities of infection (MOI).
- Viral replication kinetics were assessed by measuring infectious viral particles.
- Gene expression analysis included pattern recognition receptors, NF-κB complex, interferons (IFNs), IFN-stimulated genes (ISGs), and cytokines/chemokines.
- Cytokine and chemokine production was quantified.
Main Results:
- Human MDMs are susceptible to MAYV infection in vitro, with peak viral release at 24-48 h.p.i. (MOI 0.5) and 12-24 h.p.i. (MOI 1).
- A decline in infectious viral particles at 72 h.p.i. correlated with induced antiviral responses and high cytotoxicity.
- MAYV infection activated antiviral pathways (TLRs, RIG-I/MDA5, PKR) and upregulated IFNs, IL27 subunits, pro-inflammatory cytokines (IL6, IL1β, CXCL8, CCL2, CCL5), and ISGs at 48 h.p.i. compared to 6 h.p.i.
Conclusions:
- MAYV infection induces robust pro-inflammatory and antiviral responses in human primary macrophages.
- The innate and antiviral responses in MAYV-infected MDMs exhibit distinct kinetics at early (6 h.p.i.) and later (48 h.p.i.) time points.
- Understanding these responses is crucial for developing therapeutic strategies against MAYV.

