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Covalent modification of a ten-residue cationic antimicrobial peptide with levofloxacin

机译:左氧氟沙星对十残基阳离子抗菌肽的共价修饰

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摘要

The rampant spread of antibiotic resistant bacteria has spurred interest in alternative strategies for developing next-generation antibacterial therapies. As such, there has been growing interest in cationic antimicrobial peptides (CAMPs) and their therapeutic applications. Modification of CAMPs via conjugation to auxiliary compounds, including small molecule drugs, is a new approach to developing effective, broad-spectrum antibacterial agents with novel physicochemical properties and versatile antibacterial mechanisms. Here, we've explored design parameters for engineering CAMPs conjugated to small molecules with favorable physicochemical and antibacterial properties by covalently affixing a fluoroquinolone antibiotic, levofloxacin, to the ten-residue CAMP Pep-4. Relative to the unmodified Pep-4, the conjugate was found to demonstrate substantially increased antibacterial potency under high salt concentrations. Historically, it has been observed that most CAMPs lose antibacterial effectiveness in such high ionic strength environments, a fact that has presented a challenge to their development as therapeutics. Physicochemical studies revealed that P4LC was more hydrophobic than Pep-4, while mechanistic findings indicated that the conjugate was more effective at disrupting bacterial membrane integrity. Although the inherent antibacterial effect of the incorporated levofloxacin molecules did not appear to be substantially realized in this conjugate, these findings nevertheless suggest that covalent attachment of small molecule antibiotics with favorable physicochemical properties to CAMPs could be a promising strategy for enhancing peptide performance and overall therapeutic potential. These results have broader applicability to the development of future CAMP-antibiotic conjugates for potential therapeutic applications.
机译:抗生素抗性细菌的广泛传播激发了人们对开发下一代抗菌疗法的替代策略的兴趣。因此,对阳离子抗微生物肽(CAMP)及其治疗应用的兴趣日益增长。通过与包括小分子药物在内的辅助化合物结合来修饰CAMP是开发具有新颖理化性质和多功能抗菌机制的有效,广谱抗菌剂的新方法。在这里,我们通过将氟喹诺酮类抗生素左氧氟沙星共价附于十残基的CAMP Pep-4,探索了工程CAMP的设计参数,这些CAMP与具有良好的理化和抗菌性能的小分子缀合。相对于未修饰的Pep-4,发现缀合物在高盐浓度下显示出显着提高的抗菌效力。历史上,已经观察到大多数CAMP在这种高离子强度的环境中会丧失抗菌作用,这一事实对它们作为治疗剂的发展提出了挑战。物理化学研究表明,P4LC比Pep-4更具疏水性,而机理研究表明,缀合物在破坏细菌膜完整性方面更有效。尽管掺入的左氧氟沙星分子的固有抗菌作用似乎并未在该偶联物中得到实质性实现,但这些发现仍然表明,具有良好理化特性的小分子抗生素与CAMP的共价结合可能是增强肽性能和整体治疗的有前途的策略。潜在。这些结果对于潜在的治疗应用的未来CAMP-抗生素缀合物的开发具有更广泛的适用性。

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