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Levofloxacin cures experimental pneumonic plague in African green monkeys
Robert Colby Layton1, William Mega, Jacob D McDonald
1Lovelace Respiratory Research Institute, Albuquerque, New Mexico, United States of America. CLayton@MRIresearch.org
Background:
Yersinia pestis, the agent of plague, is considered a potential bioweapon due to rapid lethality when delivered as an aerosol. Levofloxacin was tested for primary pneumonic plague treatment in a nonhuman primate model mimicking human disease.
Methods And Results:
Twenty-four African Green monkeys (AGMs, Chlorocebus aethiops) were challenged via head-only aerosol inhalation with 3-145 (mean = 65) 50% lethal (LD(50)) doses of Y. pestis strain CO92. Telemetered body temperature >39 °C initiated intravenous infusions to seven 5% dextrose controls or 17 levofloxacin treated animals. Levofloxacin was administered as a "humanized" dose regimen of alternating 8 mg/kg and 2 mg/kg 30-min infusions every 24-h, continuing until animal death or 20 total infusions, followed by 14 days of observation. Fever appeared at 53-165 h and radiographs found multilobar pneumonia in all exposed animals. All control animals died of severe pneumonic plague within five days of aerosol exposure. All 16 animals infused with levofloxacin for 10 days survived. Levofloxacin treatment abolished bacteremia within 24 h in animals with confirmed pre-infusion bacteremia, and reduced tachypnea and leukocytosis but not fever during the first 2 days of infusions.
Conclusion:
Levofloxacin cures established pneumonic plague when treatment is initiated after the onset of fever in the lethal aerosol-challenged AGM nonhuman primate model, and can be considered for treatment of other forms of plague. Levofloxacin may also be considered for primary presumptive-use, multi-agent antibiotic in bioterrorism events prior to identification of the pathogen.
Insights
Levofloxacin effectively treats pneumonic plague in nonhuman primates when administered after fever onset. This antibiotic shows promise for treating plague and as a potential agent in bioterrorism events.
Area of Science:
- Infectious Diseases
- Pharmacology
- Biodefense
Background:
- Yersinia pestis causes plague, a lethal disease, and is a potential bioweapon threat.
- Pneumonic plague, particularly from aerosolized Yersinia pestis, requires effective treatment strategies.
Purpose of the Study:
- To evaluate levofloxacin as a primary treatment for pneumonic plague.
- To assess levofloxacin efficacy in a nonhuman primate model of aerosolized Yersinia pestis infection.
Main Methods:
- African Green Monkeys (AGMs) were aerosol-challenged with Yersinia pestis.
- Levofloxacin treatment was initiated upon detection of fever (>39 °C).
- A humanized dosing regimen of levofloxacin was administered intravenously.
Main Results:
- All control animals succumbed to severe pneumonic plague within five days.
- 16 out of 17 levofloxacin-treated animals survived the lethal Yersinia pestis challenge.
- Levofloxacin rapidly abolished bacteremia and reduced clinical signs, though fever persisted initially.
Conclusions:
- Levofloxacin cures established pneumonic plague in a nonhuman primate model.
- The antibiotic is a potential treatment for various forms of plague.
- Levofloxacin may serve as a presumptive antibiotic for bioterrorism events.
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