首页> 外文期刊>Journal of combinatorial chemistry >Structure-Activity Relationships in Lipopolysaccharide Neutralizers:Design,Synthesis,and Biological Evaluation of a 540-Membered Amphipathic Bisamide Library
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Structure-Activity Relationships in Lipopolysaccharide Neutralizers:Design,Synthesis,and Biological Evaluation of a 540-Membered Amphipathic Bisamide Library

机译:脂多糖中和剂中的结构活性关系:540元两亲双酰胺库的设计,合成和生物学评估

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Lipopolysaccharides(LPS),also called "endotoxins",are outer-membrane constituents of Gram-negative bacteria.Lipopolysaccharides play a key role in the pathogenesis of "septic shock",a major cause of mortality in the critically ill patient.We had earlier shown that small molecules bind and neutralize LPS if they contain(i)two protonatable cationic groups separated by a distance of approx 14 A to facilitate interactions with the phosphate moieties on the lipid A component of LPS and(ii)a long-chain aliphatic hydrocarbon to promote hydrophobic interactions.In an effort to identify optimal scaffolds possessing the above structural requirements,we now present an evaluation of a rationally designed combinatorial library in which the elements of the scaffold are systematically varied to maximize sampling of chemical space.Leads obtained via molecular analyses of the screening results were resynthesized and evaluated in greater detail with regard to the affinity of the interaction with LPS,as well as neutralization of endotoxicity in in vitro assays.The examination of a moderately sized 6 X 6 X 15(540-membered)focused library allowed the assessment of the structural contributions to binding by the long-chain aliphatic tails,distance between charged amino groups,and potential aromatic CH-pi or OH-pi interactions.These findings are of value in further iterations of design and development of specific and potent endotoxin sequestrants.
机译:脂多糖(LPS),也称为“内毒素”,是革兰氏阴性细菌的外膜成分。脂多糖在“败血性休克”的发病机理中起着关键作用,“败血性休克”是重症患者的主要死亡原因。结果表明,如果小分子包含(i)两个质子化的阳离子基团,且它们之间的距离约为14 A,则它们将结合并中和LPS,以促进与LPS脂质A组分上的磷酸部分和(ii)长链脂肪烃的相互作用为了促进具有上述结构要求的最佳支架,我们现在对合理设计的组合文库进行评估,其中系统地改变了支架的元素以最大化化学空间的采样。通过分子获得的铅重新合成了筛选结果的分析并就与LPS相互作用的亲和力进行了更详细的评估,如下对中等大小的6 X 6 X 15(540成员)聚焦文库的检查可以评估长链脂族尾部对结合的结构贡献,带电氨基之间的距离以及潜在的芳香族CH-pi或OH-pi相互作用。这些发现在特定和有效内毒素螯合剂的设计和开发的进一步迭代中具有价值。

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