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Inhalational Gentamicin Treatment Is Effective Against Pneumonic Plague in a Mouse Model
David Gur1, Itai Glinert2, Moshe Aftalion1
1Department of Biochemistry and Molecular Genetics, Israel Institute for Biological Research, Ness Ziona, Israel.
Abstract:
Pneumonic plague is an infectious disease characterized by rapid and fulminant development of acute pneumonia and septicemia that results in death within days of exposure. The causative agent of pneumonic plague, Yersinia pestis (Y. pestis), is a Tier-1 bio-threat agent. Parenteral antibiotic treatment is effective when given within a narrow therapeutic window after symptom onset. However, the non-specific "flu-like" symptoms often lead to delayed diagnosis and therapy. In this study, we evaluated inhalational gentamicin therapy in an infected mouse model as a means to improve antibiotic treatment efficacy. Inhalation is an attractive route for treating lung infections. The advantages include directly dosing the main infection site, the relative accessibility for administration and the lack of extensive enzymatic drug degradation machinery. In this study, we show that inhalational gentamicin treatment administered 24 h post-infection, prior to the appearance of symptoms, protected against lethal intranasal challenge with the fully virulent Y. pestis Kimberley53 strain (Kim53). Similarly, a high survival rate was demonstrated in mice treated by inhalation with another aminoglycoside, tobramycin, for which an FDA-approved inhaled formulation is clinically available for cystic fibrosis patients. Inhalational treatment with gentamicin 48 h post-infection (to symptomatic mice) was also successful against a Y. pestis challenge dose of 10 i.n.LD50. Whole-body imaging using IVIS technology demonstrated that adding inhalational gentamicin to parenteral therapy accelerated the clearance of Y. pestis from the lungs of infected animals. This may reduce disease severity and the risk of secondary infections. In conclusion, our data suggest that inhalational therapy with aerosolized gentamicin may be an effective prophylactic treatment against pneumonic plague. We also demonstrate the benefit of combining this treatment with a conventional parenteral treatment against this rapidly progressing infectious disease. We suggest the inhalational administration route as a clinically relevant treatment modality against pneumonic plague and other respiratory bacterial pathogens.
Insights
Inhaled gentamicin effectively treats pneumonic plague in mice, even after symptom onset. Combining inhaled and traditional antibiotic therapy accelerates bacterial clearance, offering a promising new treatment for this deadly disease.
Area of Science:
- Infectious Diseases
- Microbiology
- Pharmacology
Background:
- Pneumonic plague, caused by *Yersinia pestis* (a Tier-1 bio-threat), is rapidly fatal.
- Current parenteral antibiotic treatment has a narrow therapeutic window due to delayed diagnosis from non-specific symptoms.
Purpose of the Study:
- To evaluate inhalational gentamicin therapy for pneumonic plague treatment.
- To assess the efficacy of inhaled aminoglycosides as a novel therapeutic strategy.
Main Methods:
- A mouse model of intranasal *Yersinia pestis* challenge was used.
- Inhalational gentamicin and tobramycin were administered at various time points post-infection.
- Whole-body imaging (IVIS) tracked bacterial clearance.
Main Results:
- Inhalational gentamicin protected mice from lethal *Y. pestis* challenge when given prophylactically (24h post-infection).
- Inhaled gentamicin and tobramycin showed high survival rates in symptomatic mice (48h post-infection).
- Combined inhalational and parenteral gentamicin accelerated bacterial clearance from lungs.
Conclusions:
- Inhalational gentamicin is a potentially effective prophylactic and therapeutic option for pneumonic plague.
- Combining inhaled therapy with parenteral treatment enhances efficacy against *Y. pestis*.
- Inhaled drug delivery presents a clinically relevant route for treating pneumonic plague and other respiratory bacterial infections.
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