Yu Guozhi, Baeder Desiree Y, Regoes Roland R, Rolff Jens
Evolutionary Biology, Institut für Biologie, Freie Universität Berlin, Berlin, Germany.
Institute of Integrative Biology, ETH Zurich, Zurich, Switzerland.
Antimicrob Agents Chemother. 2016 Jan 4;60(3):1717-24. doi: 10.1128/AAC.02434-15.
Antimicrobial peptides (AMPs) are ancient and conserved across the tree of life. Their efficacy over evolutionary time has been largely attributed to their mechanisms of killing. Yet, the understanding of their pharmacodynamics both in vivo and in vitro is very limited. This is, however, crucial for applications of AMPs as drugs and also informs the understanding of the action of AMPs in natural immune systems. Here, we selected six different AMPs from different organisms to test their individual and combined effects in vitro. We analyzed their pharmacodynamics based on the Hill function and evaluated the interaction of combinations of two and three AMPs. Interactions of AMPs in our study were mostly synergistic, and three-AMP combinations displayed stronger synergism than two-AMP combinations. This suggests synergism to be a common phenomenon in AMP interaction. Additionally, AMPs displayed a sharp increase in killing within a narrow dose range, contrasting with those of antibiotics. We suggest that our results could lead a way toward better evaluation of AMP application in practice and shed some light on the evolutionary consequences of antimicrobial peptide interactions within the immune system of organisms.
抗菌肽(AMPs)古老且在整个生命之树中保守。它们在进化过程中的功效很大程度上归因于其杀伤机制。然而,对其体内和体外药效学的了解非常有限。然而,这对于抗菌肽作为药物的应用至关重要,也有助于理解抗菌肽在天然免疫系统中的作用。在这里,我们从不同生物体中选择了六种不同的抗菌肽,以测试它们在体外的单独和联合作用。我们基于希尔函数分析了它们的药效学,并评估了两种和三种抗菌肽组合的相互作用。我们研究中抗菌肽的相互作用大多是协同的,三种抗菌肽组合比两种抗菌肽组合表现出更强的协同作用。这表明协同作用是抗菌肽相互作用中的常见现象。此外,抗菌肽在狭窄的剂量范围内杀伤作用急剧增加,这与抗生素不同。我们认为,我们的结果可能为更好地评估抗菌肽在实践中的应用指明方向,并为生物体免疫系统中抗菌肽相互作用的进化后果提供一些启示。