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Enhancing Accumulation and Penetration Efficiency of Next-Generation Antibiotics to Mitigate Antibiotic Resistance in Pseudomonas aeruginosa PAO1
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作者 Godspower Oghenemaroh Sebe Supreme O. Oghenerhoro +3 位作者 Ogbole E. Jonathan Ebuka Victor Anyaogu Adeyemo David Adebowale raymond chidozie ntomchukwu 《Journal of Biomedical Science and Engineering》 2023年第8期107-120,共14页
This study explores the efficacy of advanced antibiotic compounds against P. aeruginosa, focusing on Antibiotic B, an enhanced derivative of Ceftriaxone. The study measured the intracellular uptake of Antibiotic B and... This study explores the efficacy of advanced antibiotic compounds against P. aeruginosa, focusing on Antibiotic B, an enhanced derivative of Ceftriaxone. The study measured the intracellular uptake of Antibiotic B and introduced a novel adjuvant, Influximax, which augmented its antibacterial activity. Results showed a diminished potential for resistance emergence with Antibiotic B, particularly when used in combination with Influximax. The study suggests that optimizing antibiotic delivery into bacterial cells and leveraging syner-gistic adjuvant combinations can enhance drug resistance combat. . 展开更多
关键词 Pseudomonas aeruginosa PAO1 Antibiotic Resistance Next-Generation Antibiotics Adjuvant Synergy Intracellular Accumulation Penetration Rates Minimum Inhibitory Concentration (MIC) Resistance Tra-jectory Fluorescence Quantification
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