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Published on: July 1, 2018
Simvastatin and ML141 Decrease Intracellular Streptococcus pyogenes Infection
Lindy Caffo1, Bria L Sneed1, Caroline Burcham1
1Ball State University, RH 105, 2100 West Riverside Avenue, Muncie, Indiana 47306, United States.
Background:
Recurrent pharyngotonsillitis due to Streptococcus pyogenes develops regardless of whether infecting strains are resistant or susceptible to first-line antimicrobials. Causation for recurrent infection is associated with the use of first-line antimicrobials that fail to penetrate deep tissue and host cell membranes, enabling intracellular S. pyogenes to survive throughout repeated rounds of antimicrobial therapy.
Objective:
To determine whether simvastatin, a therapeutic approved for use in the treatment of hypercholesterolemia, and ML141, a first-in-class small molecule inhibitor with specificity for human CDC42, limit host cell invasion by S. pyogenes.
Methods:
Assays to assess host cell invasion, bactericidal activity, host cell viability, actin depolymerization, and fibronectin binding were performed using the RAW 267.4 macrophage cell line and Human Umbilical Vein Endothelial Cells (HUVEC) infected with S. pyogenes (90-226) and treated with simvastatin, ML141, structural analogs of ML141, or vehicle control.
Results:
Simvastatin and ML141 decreased intracellular infection by S. pyogenes in a dose-dependent manner. Inhibition by simvastatin persisted following 1 h washout whereas inhibition by ML141 was reversed. During S. pyogenes infection, actin stress fibers depolymerized in vehicle control treated cells, yet remained intact in simvastatin and in ML141 treated cells. Consistent with the previous characterization of ML141, simvastatin decreased host cell binding to fibronectin. Structural analogs of ML141, designated as the RSM series, decreased intracellular infection through non-cytotoxic, nonbactericidal mechanisms.
Conclusion:
Our findings demonstrate the potential of repurposing simvastatin and of developing CDC42-targeted therapeutics for eradicating intracellular S. pyogenes infection to break the cycle of recurrent infection through a host-directed approach.
Insights
Simvastatin and ML141 limit intracellular Streptococcus pyogenes infection by maintaining actin stress fibers. These findings suggest simvastatin repurposing and CDC42 inhibitors for recurrent infections.
Area of Science:
- Microbiology
- Cell Biology
- Pharmacology
Background:
- Recurrent Streptococcus pyogenes (S. pyogenes) pharyngotonsillitis persists despite antimicrobial treatment.
- Intracellular S. pyogenes survival within host cells contributes to treatment failure and recurrent infections.
Purpose of the Study:
- To investigate simvastatin and ML141 (a CDC42 inhibitor) for limiting S. pyogenes host cell invasion.
- To explore host-directed therapies for eradicating intracellular S. pyogenes.
Main Methods:
- Invasion, viability, and actin depolymerization assays using macrophage and endothelial cell lines.
- Treatment with simvastatin, ML141, ML141 analogs (RSM series), or vehicle control.
- Assessment of S. pyogenes binding to fibronectin.
Main Results:
- Simvastatin and ML141 significantly reduced intracellular S. pyogenes in a dose-dependent manner.
- Simvastatin's inhibitory effect was persistent, while ML141's was reversible.
- Both agents maintained actin stress fiber integrity during infection, unlike vehicle controls.
Conclusions:
- Simvastatin repurposing and CDC42 inhibitors offer a promising host-directed strategy against intracellular S. pyogenes.
- Targeting host cell pathways can overcome antimicrobial resistance and break the cycle of recurrent S. pyogenes infections.
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