bioRxiv · 10.1101/2025.01.19.633753
A Novel COE-D8-Fosfomycin Conjugate Effectively Against First-line Antibiotic Resistant Uropathogenic Escherichia coli
Abstract
Recurrent urinary tract infections (UTIs) are increasingly associated with antibiotic resistance, posing significant clinical challenges. This study evaluates the antimicrobial efficacy of the membrane-intercalating conjugated oligoelectrolyte COE-D8 against uropathogenic Escherichia coli (UPEC). Among 93 clinical UPEC isolates, over 50% demonstrated resistance to first-line antibiotics, with compound sulfamethoxazole showing the highest resistance (75% at a minimum inhibitory concentration (MIC) >512 g/mL). COE-D8 significantly reduced resistance rates, achieving less than 50% at 32 g/mL and below 5% at 512 g/mL, while demonstrating at least fourfold faster bacterial elimination than standard antibiotics. Mechanistic studies revealed that COE-D8 disrupts bacterial membranes, inducing rapid lysis. However, its cytotoxicity in mammalian cells at 2 g/mL limits clinical application. To address this, a combination therapy with fosfomycin was explored, significantly reducing COE-D8 toxicity by at least fourfold in vitro. In mouse models, fosfomycin co-administration mitigated COE-D8-induced toxicity and prevented mortality at higher doses without compromising antimicrobial efficacy. These findings highlight the potential of COE-D8, particularly in combination with fosfomycin, as a promising strategy to combat antibiotic-resistant UPEC while addressing toxicity challenges.
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Ruan, L., Fan, C., Chen, J., Wang, Y., Ren, Y., Yuan, W., Xiong, X., Guo, C.. 2025-01-19. A Novel COE-D8-Fosfomycin Conjugate Effectively Against First-line Antibiotic Resistant Uropathogenic Escherichia coli. https://doi.org/10.1101/2025.01.19.633753
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