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Discovery and development of a synthetic peptide derived from lactoferrin for clinical use.

机译:乳铁蛋白合成肽的发现和开发,用于临床。

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There is an urgent need to develop new antimicrobial drugs especially for combating the rise of infections caused by multi-resistant pathogens such as MRSA and VRSA. The problem of antibiotic resistant micro-organisms is expected to increase disproportionally and controlling of infections is becoming difficult because of the rapid spread of those micro-organisms. Primary therapy with classical antibiotics is becoming more ineffective. Combinational therapy of antibiotics with antimicrobial peptides (AMP's) has been suggested as an alternative approach to improve treatment outcome. Their unique mechanism of action and safety profile makes AMP's appealing candidates for simultaneous or sequential use in different cases of infections. In this review, for antimicrobial treatment the application of synthetic antimicrobial peptide hLF(1-11), derived from the first 11 amino acids of human lactoferrin is evaluated in both pre-clinical and clinical settings. Present information indicates that this derivate from lactoferrin is well tolerated in pre-clinical tests and clinical trials and thus hLF(1-11) is an interesting candidate for further exploration in various clinical indications of obscure infections, including meningitis. Another approach of using AMP's is their use in prevention of infections e.g. as coating for dental or bone implants or in biosensing applications or useful as infection specific radiopharmaceutical.
机译:迫切需要开发新的抗微生物药物,尤其是用于对抗由多重耐药病原体(例如MRSA和VRSA)引起的感染的上升。抗生素抗性微生物的问题预计会成比例地增加,并且由于这些微生物的快速传播,感染的控制变得越来越困难。用经典抗生素进行的初级治疗越来越无效。已建议将抗生素与抗菌肽(AMP's)联合治疗作为改善治疗效果的替代方法。它们独特的作用机理和安全性使AMP能够在不同感染病例中同时或顺序使用,颇具吸引力。在这篇综述中,对于抗菌治疗,在临床前和临床环境中都评估了源自人乳铁蛋白前11个氨基酸的合成抗菌肽hLF(1-11)的应用。目前的信息表明,这种源自乳铁蛋白的衍生物在临床前测试和临床试验中具有良好的耐受性,因此hLF(1-11)是在各种临床症状(包括脑膜炎)中进一步探索的有趣候选物。使用AMP的另一种方法是将其用于预防感染,例如用作牙科或骨植入物的涂层,或用于生物传感应用,或用作感染特定的放射性药物。

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