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Excretion of the Polymyxin Derivative NAB739 in Murine Urine
Martti Vaara1,2, Timo Vaara1, Janis Kuka3
1Northern Antibiotics Ltd., FI-02150 Espoo, Finland.
Abstract:
Extremely multiresistant strains of Enterobacteriaceae are emerging and spreading at a worrisome pace. Polymyxins are used as the last-resort therapy against such strains, in spite of their nephrotoxicity. We have previously shown that novel polymyxin derivatives NAB739 and NAB815 are less nephrotoxic in cynomolgus monkeys than polymyxin B and are therapeutic in murine Escherichia coli pyelonephritis at doses only one-tenth of that needed for polymyxin B. Here we evaluated whether the increased efficacy is due to increased excretion of NAB739 in urine. Mice were treated with NAB739 and polymyxin B four times subcutaneously at doses of 0.25, 0.5, 1, 2, and 4 mg/kg. In plasma, a clear dose-response relationship was observed. The linearity of Cmax with the dose was 0.9987 for NAB739 and 0.975 for polymyxin B. After administration of NAB739 at a dose of 0.25 mg/kg, its plasma concentrations at all tested time points were above 0.5 µg/mL while after administration at a dose of 0.5 mg/kg its plasma concentrations exceeded 1 µg/mL. The Cmax of NAB739 in plasma was up to 1.5-times higher after single (first) administration and up to two-times higher after the last administration when compared to polymyxin B. Polymyxin B was not detected in urine samples even when administered at 4 mg/kg. In contrast, the concentration of NAB739 in urine after single administration at a dose of 0.25 mg/kg was above 1 µg/mL and after administration of 0.5 mg/kg its average urine concentration exceeded 2 µg/mL. At the NAB739 dose of 4 mg/kg, the urinary concentrations were higher than 35 µg/mL. These differences explain our previous finding that NAB739 is much more efficacious than polymyxin B in the therapy of murine E. coli pyelonephritis.
Insights
Novel polymyxin derivatives like NAB739 show increased efficacy against resistant bacteria due to higher urinary excretion compared to polymyxin B. This finding supports their potential as last-resort antibiotics with reduced toxicity.
Area of Science:
- Pharmacology
- Microbiology
- Infectious Diseases
Background:
- Emerging multidrug-resistant Enterobacteriaceae necessitate last-resort antibiotics.
- Polymyxins are effective but nephrotoxic; novel derivatives are being developed.
- Previous studies indicated lower nephrotoxicity and higher efficacy of NAB739 and NAB815.
Purpose of the Study:
- To investigate if increased urinary excretion of NAB739 contributes to its enhanced efficacy.
- To compare the pharmacokinetic profiles of NAB739 and polymyxin B in mice.
Main Methods:
- Mice received subcutaneous administrations of NAB739 and polymyxin B at varying doses.
- Plasma and urine concentrations of both drugs were measured over time.
- Dose-response relationships and maximum concentrations (Cmax) were analyzed.
Main Results:
- NAB739 demonstrated a clear dose-response relationship in plasma.
- NAB739 achieved significantly higher concentrations in urine compared to polymyxin B, which was undetectable.
- NAB739 plasma Cmax was 1.5-2 times higher than polymyxin B.
Conclusions:
- Higher urinary concentrations of NAB739 explain its superior efficacy in treating murine Escherichia coli pyelonephritis.
- NAB739 represents a promising alternative to polymyxin B for multidrug-resistant infections.
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