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Polymyxins-Curcumin Combination Antimicrobial Therapy: Safety Implications and Efficacy for Infection Treatment
Chongshan Dai1, Yang Wang1, Gaurav Sharma2
1Department of Veterinary Pharmacology and Toxicology, College of Veterinary Medicine, China Agricultural University, No.2 Yuanmingyuan West Road, Beijing 100193, China.
Abstract:
The emergence of antimicrobial resistance in Gram-negative bacteria poses a huge health challenge. The therapeutic use of polymyxins (i.e., colistin and polymyxin B) is commonplace due to high efficacy and limiting treatment options for multidrug-resistant Gram-negative bacterial infections. Nephrotoxicity and neurotoxicity are the major dose-limiting factors that limit the therapeutic window of polymyxins; nephrotoxicity is a complication in up to ~60% of patients. The emergence of polymyxin-resistant strains or polymyxin heteroresistance is also a limiting factor. These caveats have catalyzed the search for polymyxin combinations that synergistically kill polymyxin-susceptible and resistant organisms and/or minimize the unwanted side effects. Curcumin-an FDA-approved natural product-exerts many pharmacological activities. Recent studies showed that polymyxins-curcumin combinations showed a synergistically inhibitory effect on the growth of bacteria (e.g., Gram-positive and Gram-negative bacteria) in vitro. Moreover, curcumin co-administration ameliorated colistin-induced nephrotoxicity and neurotoxicity by inhibiting oxidative stress, mitochondrial dysfunction, inflammation and apoptosis. In this review, we summarize the current knowledge-base of polymyxins-curcumin combination therapy and discuss the underlying mechanisms. For the clinical translation of this combination to become a reality, further research is required to develop novel polymyxins-curcumin formulations with optimized pharmacokinetics and dosage regimens.
Insights
Polymyxin-curcumin combinations show synergistic antibacterial effects and reduce polymyxin toxicity. Further research is needed for clinical application of this promising antimicrobial strategy.
Area of Science:
- Microbiology
- Pharmacology
- Toxicology
Background:
- Antimicrobial resistance in Gram-negative bacteria is a major health threat.
- Polymyxins are crucial for treating multidrug-resistant infections but have dose-limiting toxicities (nephrotoxicity, neurotoxicity) and emerging resistance.
- Curcumin, an FDA-approved natural product, exhibits diverse pharmacological activities.
Purpose of the Study:
- To review current knowledge on polymyxin-curcumin combination therapy.
- To discuss the mechanisms underlying synergistic effects and toxicity amelioration.
- To highlight the potential for clinical translation.
Main Methods:
- Literature review of studies investigating polymyxin-curcumin combinations.
- Analysis of in vitro antibacterial efficacy against susceptible and resistant strains.
- Evaluation of curcumin's role in mitigating polymyxin-induced toxicities.
Main Results:
- Polymyxin-curcumin combinations demonstrate synergistic antibacterial activity in vitro.
- Curcumin co-administration significantly reduces colistin-induced nephrotoxicity and neurotoxicity.
- Mechanisms of toxicity amelioration involve inhibition of oxidative stress, mitochondrial dysfunction, inflammation, and apoptosis.
Conclusions:
- Polymyxin-curcumin combination therapy offers a promising strategy against resistant Gram-negative bacteria.
- Curcumin can mitigate polymyxin-associated toxicities, potentially widening the therapeutic window.
- Development of optimized formulations and dosage regimens is essential for clinical implementation.
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