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首页> 外文期刊>Current medicinal chemistry >The antibacterial effect of a proline-rich antibacterial peptide A3-APO.
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The antibacterial effect of a proline-rich antibacterial peptide A3-APO.

机译:富含脯氨酸的抗菌肽A3-APO的抗菌作用。

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Antimicrobial resistance is an emerging worldwide concern in light of the widespread antimicrobial drug use in humans, livestock and companion animals. The treatment of life-threatening infections is especially problematic because clinical strains rapidly acquire multiple-drug resistance. Antimicrobial peptides have long been considered to be viable alternatives to small molecule antibiotics. However, the peptides' parenteral use is frequently hampered by inadequate safety margins and rapid renal clearance leaving them suitable only for topical applications. The proline-rich peptide A3-APO represents a family of a new class of synthetic dimers that kill bacteria by a dual mode of action and carry domains for interaction with both the bacterial membrane and an intracellular target. From a series of designer antibacterial peptides, A3-APO emerged as a viable preclinical candidate by virtue of its superior ability to disintegrate the bacterial membrane, inhibit the 70-kDa heat shock protein DnaK alone or in synergy with small molecule antibiotics, lack of eukaryotic toxicity and withstand proteolytic degradation in body fluids. As many other proline-rich peptides, A3-APO binds to the C-terminal helical lid of bacterial DnaK and inhibits chaperone-assisted protein folding in bacteria but not in mammalian Hsp70. In this review, the structure, pharmacokinetic properties, antimicrobial spectrum of peptide A3-APO and its in vivo metabolite are summarized and the in vitro and in vivo antimicrobial effects (antimicrobial susceptibilities, postantibiotic effects, resistance induction) are discussed in detail.
机译:鉴于人类,牲畜和伴侣动物中广泛使用抗菌药物,因此抗菌素耐药性已成为世界范围内关注的焦点。威胁生命的感染的治疗尤其成问题,因为临床菌株迅速获得了多重耐药性。长期以来,抗菌肽一直被认为是小分子抗生素的可行替代品。然而,该肽的肠胃外使用经常由于安全系数不足和快速的肾清除而受到阻碍,从而使其仅适于局部应用。富含脯氨酸的肽A3-APO代表了一类新的合成二聚体家族,该二聚体通过双重作用模式杀死细菌,并携带与细菌膜和细胞内靶标相互作用的结构域。 A3-APO从一系列设计的抗菌肽中脱颖而出,因为它具有出色的分解细菌膜,抑制70-kDa热激蛋白DnaK或与小分子抗生素协同作用,缺乏真核生物的能力,因此成为可行的临床前候选药物。毒性并能抵抗体液中的蛋白水解降解。像许多其他富含脯氨酸的肽一样,A3-APO与细菌DnaK的C末端螺旋盖结合,并抑制细菌中伴侣伴侣辅助的蛋白质折叠,而在哺乳动物Hsp70中则不然。在这篇综述中,总结了肽A3-APO及其体内代谢产物的结构,药代动力学特性,抗菌谱,并详细讨论了其体内和体外抗菌作用(抗菌药敏感性,抗生素后作用,耐药诱导)。

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