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抗菌肽:与脂多糖的联系。

Antimicrobial peptides: the LPS connection.

作者信息

Giuliani Andrea, Pirri Giovanna, Rinaldi Andrea C

机构信息

Research and Development Unit, SpiderBiotech S.r.l, Colleretto Giacosa, Italy.

出版信息

Methods Mol Biol. 2010;618:137-54. doi: 10.1007/978-1-60761-594-1_10.

Abstract

An expanding body of evidence is rendering manifest that many cationic antimicrobial peptides are endowed with different properties and activities, well beyond their direct action on microbes. One of the most interesting and potentially important research avenue on the alternative use of antimicrobial peptides grounds on their affinity toward lipopolysaccharide (LPS), the endotoxin, responsible for the systemic inflammatory response syndrome (SIRS) and related, often fatal, disorders that can follow Gram-negative infections. Indeed, not only do several antimicrobial peptides, such as cathelicidins, display an ability to strongly bind LPS and break its aggregates, but they have also been demonstrated to suppress LPS-induced pro-inflammatory responses in vitro and to protect from sepsis in animal models. Although many aspects still need to be carefully evaluated - some of which are highlighted here - a mix of antimicrobial, LPS-sequestering/neutralization, and immunomodulatory features make cationic peptides, and especially synthetic or semi-synthetic amphiphilic compounds built on their scheme, attractive candidates for novel drugs to be administered in antisepsis therapies. These therapies will probably hinge either on compounds able to intervene at multiple points in the sepsis cascade or on the combination of two or more immunomodulators.

摘要

越来越多的证据表明,许多阳离子抗菌肽具有不同的特性和活性,远远超出了它们对微生物的直接作用。抗菌肽替代用途最有趣且可能最重要的研究途径之一基于它们对脂多糖(LPS)(即内毒素)的亲和力,内毒素会引发全身炎症反应综合征(SIRS)以及革兰氏阴性菌感染后可能出现的相关且往往致命的疾病。事实上,不仅几种抗菌肽(如cathelicidins)具有强烈结合LPS并破坏其聚集体的能力,而且它们还被证明在体外能抑制LPS诱导的促炎反应,并在动物模型中预防败血症。尽管许多方面仍需仔细评估——这里强调了其中一些——抗菌、LPS螯合/中和以及免疫调节特性的结合使阳离子肽,尤其是基于其结构设计的合成或半合成两亲性化合物,成为抗菌治疗中新型药物的有吸引力的候选者。这些治疗可能依赖于能够在败血症级联反应的多个点进行干预的化合物,或者依赖于两种或更多种免疫调节剂的组合。

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