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Live-Cell Forward Genetic Approach to Identify and Isolate Developmental Mutants in Chlamydia trachomatis
Published on: June 10, 2020
Lead Discovery Strategies for Identification of Chlamydia pneumoniae Inhibitors
1Pharmaceutical Biology, Division of Pharmaceutical Biosciences, Faculty of Pharmacy, University of Helsinki, Helsinki FI-00014, Finland. leena.hanski@helsinki.fi.
Abstract:
Throughout its known history, the gram-negative bacterium Chlamydia pneumoniae has remained a challenging target for antibacterial chemotherapy and drug discovery. Owing to its well-known propensity for persistence and recent reports on antimicrobial resistence within closely related species, new approaches for targeting this ubiquitous human pathogen are urgently needed. In this review, we describe the strategies that have been successfully applied for the identification of nonconventional antichlamydial agents, including target-based and ligand-based virtual screening, ethnopharmacological approach and pharmacophore-based design of antimicrobial peptide-mimicking compounds. Among the antichlamydial agents identified via these strategies, most translational work has been carried out with plant phenolics. Thus, currently available data on their properties as antichlamydial agents are described, highlighting their potential mechanisms of action. In this context, the role of mitogen-activated protein kinase activation in the intracellular growth and survival of C. pneumoniae is discussed. Owing to the complex and often complementary pathways applied by C. pneumoniae in the different stages of its life cycle, multitargeted therapy approaches are expected to provide better tools for antichlamydial therapy than agents with a single molecular target.
Insights
New strategies are needed to combat the persistent and drug-resistant bacterium Chlamydia pneumoniae. This review explores novel antichlamydial agents, including plant phenolics, and suggests multitargeted therapies for effective treatment.
Area of Science:
- Microbiology
- Drug Discovery
- Infectious Diseases
Background:
- Chlamydia pneumoniae is a gram-negative bacterium posing significant challenges to antibacterial chemotherapy.
- Its persistence and emerging antimicrobial resistance necessitate novel therapeutic strategies.
Conclusions:
- Novel strategies, including ethnopharmacology and virtual screening, are crucial for discovering new antichlamydial agents.
- Plant phenolics represent a promising class of compounds for treating Chlamydia pneumoniae infections.
- Multitargeted therapies offer a more robust approach to overcoming bacterial resistance and persistence.
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