Department of Chemistry, University of Manitoba, Winnipeg, Manitoba R3T 2N2, Canada.
Antimicrob Agents Chemother. 2010 Oct;54(10):4049-58. doi: 10.1128/AAC.00530-10. Epub 2010 Aug 9.
Naturally occurring cationic antimicrobial peptides (AMPs) and their mimics form a diverse class of antibacterial agents currently validated in preclinical and clinical settings for the treatment of infections caused by antimicrobial-resistant bacteria. Numerous studies with linear, cyclic, and diastereomeric AMPs have strongly supported the hypothesis that their physicochemical properties, rather than any specific amino acid sequence, are responsible for their microbiological activities. It is generally believed that the amphiphilic topology is essential for insertion into and disruption of the cytoplasmic membrane. In particular, the ability to rapidly kill bacteria and the relative difficulty with which bacteria develop resistance make AMPs and their mimics attractive targets for drug development. However, the therapeutic use of naturally occurring AMPs is hampered by the high manufacturing costs, poor pharmacokinetic properties, and low bacteriological efficacy in animal models. In order to overcome these problems, a variety of novel and structurally diverse cationic amphiphiles that mimic the amphiphilic topology of AMPs have recently appeared. Many of these compounds exhibit superior pharmacokinetic properties and reduced in vitro toxicity while retaining potent antibacterial activity against resistant and nonresistant bacteria. In summary, cationic amphiphiles promise to provide a new and rich source of diverse antibacterial lead structures in the years to come.
天然阳离子抗菌肽 (AMPs) 及其模拟物形成了一个多样化的抗菌剂类别,目前已在临床前和临床环境中得到验证,可用于治疗由抗微生物耐药菌引起的感染。大量关于线性、环状和非对映异构体 AMP 的研究强烈支持了这样一种假设,即它们的物理化学性质而不是任何特定的氨基酸序列负责它们的微生物学活性。人们普遍认为,两亲拓扑结构对于插入和破坏细胞质膜是必不可少的。特别是,快速杀死细菌的能力以及细菌产生耐药性的相对难度,使得 AMP 及其模拟物成为药物开发的有吸引力的目标。然而,天然 AMP 的治疗用途受到高制造成本、差的药代动力学特性和在动物模型中低细菌学功效的阻碍。为了克服这些问题,最近出现了各种新型和结构多样的阳离子两亲物,它们模拟 AMP 的两亲拓扑结构。这些化合物中的许多都表现出优越的药代动力学特性和降低的体外毒性,同时保持对耐药和非耐药细菌的有效抗菌活性。总之,阳离子两亲物有望在未来几年提供新的、丰富的多样化抗菌先导结构来源。