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Updated: Nov 30, 2025

Live-Cell Forward Genetic Approach to Identify and Isolate Developmental Mutants in Chlamydia trachomatis
Published on: June 10, 2020
Maraviroc, celastrol and azelastine alter Chlamydia trachomatis development in HeLa cells
Jasmin Kuratli1, Cory Ann Leonard1, Lisbeth Nufer1
1Institute of Veterinary Pathology (IVPZ) and Center for Applied Biotechnology and Molecular Medicine (CABMM), University of Zurich, Zurich, Switzerland.
Abstract:
Introduction . Chlamydia trachomatis (Ct) is an obligate intracellular bacterium, causing a range of diseases in humans. Interactions between chlamydiae and antibiotics have been extensively studied in the past.Hypothesis/Gap statement: Chlamydial interactions with non-antibiotic drugs have received less attention and warrant further investigations. We hypothesized that selected cytokine inhibitors would alter Ct growth characteristics in HeLa cells.Aim. To investigate potential interactions between selected cytokine inhibitors and Ct development in vitro.Methodology. The CCR5 receptor antagonist maraviroc (Mara; clinically used as HIV treatment), the triterpenoid celastrol (Cel; used in traditional Chinese medicine) and the histamine H1 receptor antagonist azelastine (Az; clinically used to treat allergic rhinitis and conjunctivitis) were used in a genital in vitro model of Ct serovar E infecting human adenocarcinoma cells (HeLa).Results. Initial analyses revealed no cytotoxicity of Mara up to 20 µM, Cel up to 1 µM and Az up to 20 µM. Mara exposure (1, 5, 10 and 20 µM) elicited a reduction of chlamydial inclusion numbers, while 10 µM reduced chlamydial infectivity. Cel 1 µM, as well as 10 and 20 µM Az, reduced chlamydial inclusion size, number and infectivity. Morphological immunofluorescence and ultrastructural analysis indicated that exposure to 20 µM Az disrupted chlamydial inclusion structure. Immunofluorescence evaluation of Cel-incubated inclusions showed reduced inclusion sizes whilst Mara incubation had no effect on inclusion morphology. Recovery assays demonstrated incomplete recovery of chlamydial infectivity and formation of structures resembling typical chlamydial inclusions upon Az removal.Conclusion. These observations indicate that distinct mechanisms might be involved in potential interactions of the drugs evaluated herein and highlight the need for continued investigation of the interaction of commonly used drugs with Chlamydia and its host.
Insights
Selected non-antibiotic drugs like maraviroc, celastrol, and azelastine impact Chlamydia trachomatis (Ct) growth. These compounds, including cytokine inhibitors, offer potential new avenues for Chlamydia trachomatis (Ct) treatment strategies.
Area of Science:
- Microbiology and Infectious Diseases
- Pharmacology and Drug Discovery
- Cell Biology
Background:
- Chlamydia trachomatis (Ct) is a significant human pathogen responsible for various infections.
- While antibiotic interactions with Ct are well-documented, the effects of non-antibiotic drugs remain underexplored.
- Cytokine inhibitors represent a class of drugs with potential, yet uninvestigated, interactions with Ct.
Purpose of the Study:
- To investigate the in vitro interactions between selected non-antibiotic drugs and Chlamydia trachomatis (Ct) development.
- To explore the potential of cytokine inhibitors as modulators of Ct growth characteristics in host cells.
Main Methods:
- Utilized an in vitro genital model using HeLa cells infected with Ct serovar E.
- Tested the effects of maraviroc (CCR5 antagonist), celastrol (triterpenoid), and azelastine (histamine H1 antagonist) at various concentrations.
- Assessed drug cytotoxicity, chlamydial inclusion number, size, infectivity, morphology via immunofluorescence and ultrastructural analysis, and recovery post-drug removal.
Main Results:
- Maraviroc, celastrol, and azelastine showed no cytotoxicity within tested ranges.
- Maraviroc reduced Ct inclusion numbers and infectivity; celastrol and azelastine decreased inclusion size, number, and infectivity.
- Azelastine at 20 µM disrupted inclusion structure, and recovery assays showed incomplete restoration of infectivity after azelastine removal.
Conclusions:
- Selected non-antibiotic drugs, including cytokine inhibitors, demonstrate significant interactions with Chlamydia trachomatis (Ct) in vitro.
- Distinct mechanisms appear to underlie the observed effects of maraviroc, celastrol, and azelastine on Ct.
- Further research is warranted to explore the therapeutic potential of commonly used non-antibiotic drugs against Chlamydia infections.

