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Antibiotic Susceptibility of Bartonella Grown in Different Culture Conditions
Shiva Kumar Goud Gadila1, Monica E Embers1
1Division of Immunology, Tulane National Primate Research Center, Tulane University Health Sciences, Covington, LA 70433, USA.
Abstract:
Bartonellosis is caused by a Gram-negative intracellular bacterium with a zoonotic transmission. The disease, caused by any of several genospecies of Bartonella can range from a benign, self-limited condition to a highly morbid and life-threatening illness. The current standard of care antibiotics are generally effective in acute infection; these include azithromycin or erythromycin, doxycycline, gentamicin, rifampin, and ciprofloxacin. However, treatment of chronic infection remains problematic. We tested six different antibiotics for their ability to stop the growth of Bartonella sp. in the standard insect media and in an enrichment media. All antibiotics (ceftriaxone, doxycycline, gentamycin, azithromycin, ampicillin, and azlocillin) had minimum inhibitory concentrations (MICs) below 0.5 µg/mL in the BAPGM enrichment media but were ineffective at inhibiting growth when the standard insect media was used. Azlocillin was the most potent, with a MIC of 0.01 µg/mL. When Bartonella was tested under intracellular growth conditions, none of the antibiotics were efficacious singly. However, growth inhibition was observed when azlocillin and azithromycin were combined. These studies illustrate the impact of growth medium and intracellular environment on antibiotic susceptibility testing and indicate that azlocillin combined with azithromycin may be an effective drug combination for the treatment of Bartonellosis.
Insights
Treatment for Bartonellosis, a bacterial infection, is challenging for chronic cases. A combination of azlocillin and azithromycin showed promise in inhibiting Bartonella bacterial growth in intracellular conditions.
Area of Science:
- Microbiology
- Infectious Diseases
- Pharmacology
Background:
- Bartonellosis is a zoonotic disease caused by intracellular bacteria with variable clinical presentations.
- Current antibiotic treatments are effective for acute Bartonellosis but problematic for chronic infections.
Purpose of the Study:
- To evaluate the efficacy of six antibiotics against Bartonella sp. in different growth media.
- To identify potential new therapeutic strategies for chronic Bartonellosis.
Main Methods:
- Minimum inhibitory concentrations (MICs) of azlocillin, azithromycin, ceftriaxone, doxycycline, gentamicin, and ampicillin were determined in standard insect media and BAPGM enrichment media.
- Antibiotic efficacy was assessed under intracellular growth conditions.
Main Results:
- All tested antibiotics showed low MICs in BAPGM enrichment media, with azlocillin being the most potent (0.01 µg/mL).
- No single antibiotic was effective against intracellular Bartonella growth.
- A combination of azlocillin and azithromycin demonstrated growth inhibition of intracellular Bartonella.
Conclusions:
- The growth medium and intracellular environment significantly impact antibiotic susceptibility testing for Bartonella.
- The combination of azlocillin and azithromycin presents a potential effective treatment for Bartonellosis.
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