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Legionella pneumophila Outer Membrane Vesicles: Isolation and Analysis of Their Pro-inflammatory Potential on Macrophages
Published on: February 22, 2017
High-Throughput Intracellular Antimicrobial Susceptibility Testing of Legionella pneumophila
Lucius Chiaraviglio1, James E Kirby2
1Department of Pathology, Beth Israel Deaconess Medical Center, Boston, Massachusetts, USA.
Abstract:
Legionella pneumophila is a Gram-negative opportunistic human pathogen that causes a severe pneumonia known as Legionnaires' disease. Notably, in the human host, the organism is believed to replicate solely within an intracellular compartment, predominantly within pulmonary macrophages. Consequently, successful therapy is predicated on antimicrobials penetrating into this intracellular growth niche. However, standard antimicrobial susceptibility testing methods test solely for extracellular growth inhibition. Here, we make use of a high-throughput assay to characterize intracellular growth inhibition activity of known antimicrobials. For select antimicrobials, high-resolution dose-response analysis was then performed to characterize and compare activity levels in both macrophage infection and axenic growth assays. Results support the superiority of several classes of nonpolar antimicrobials in abrogating intracellular growth. Importantly, our assay results show excellent correlations with prior clinical observations of antimicrobial efficacy. Furthermore, we also show the applicability of high-throughput automation to two- and three-dimensional synergy testing. High-resolution isocontour isobolograms provide in vitro support for specific combination antimicrobial therapy. Taken together, findings suggest that high-throughput screening technology may be successfully applied to identify and characterize antimicrobials that target bacterial pathogens that make use of an intracellular growth niche.
Insights
This study introduces a high-throughput assay to test antimicrobial drugs against Legionella pneumophila replicating inside host cells. The assay identifies effective nonpolar antimicrobials for treating Legionnaires' disease intracellular infections.
Area of Science:
- Microbiology
- Infectious Diseases
- Pharmacology
Background:
- Legionella pneumophila causes severe pneumonia (Legionnaires' disease).
- This pathogen replicates within host cells (pulmonary macrophages).
- Current drug testing methods do not assess intracellular activity.
Purpose of the Study:
- Develop a high-throughput assay to evaluate antimicrobial efficacy against intracellular bacterial pathogens.
- Identify antimicrobials effective against intracellular Legionella pneumophila growth.
- Assess the utility of high-throughput screening for antimicrobial synergy testing.
Main Methods:
- Utilized a high-throughput assay to screen known antimicrobials for intracellular growth inhibition.
- Performed high-resolution dose-response analysis comparing intracellular and extracellular activity.
- Applied high-throughput automation to two- and three-dimensional synergy testing.
Main Results:
- Identified nonpolar antimicrobials as superior in inhibiting intracellular Legionella pneumophila growth.
- Demonstrated excellent correlation between assay results and clinical antimicrobial efficacy.
- Showcased the applicability of the assay for synergy testing using isobolograms.
Conclusions:
- High-throughput screening is effective for identifying antimicrobials targeting intracellular bacterial pathogens.
- The developed assay can guide the selection of effective therapies for Legionnaires' disease.
- This technology supports the development of novel combination antimicrobial strategies.

