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从基于混合物的组合文库中鉴定出的对耐药革兰氏阳性病原体具有抗菌活性的吡咯烷双环胍。

Pyrrolidine bis-cyclic guanidines with antimicrobial activity against drug-resistant Gram-positive pathogens identified from a mixture-based combinatorial library.

作者信息

Hensler Mary E, Bernstein Gregory, Nizet Victor, Nefzi Adel

机构信息

Department of Pediatrics, University of California San Diego, La Jolla, USA.

出版信息

Bioorg Med Chem Lett. 2006 Oct 1;16(19):5073-9. doi: 10.1016/j.bmcl.2006.07.037. Epub 2006 Aug 4.

Abstract

The rapid rise in antibiotic-resistant Gram-positive bacterial infections prompted us to explore the development of novel strategies for synthesis of large chemical libraries amenable to high-throughput screening for antimicrobial activities. Here we report the solid-phase synthesis of a 738,192 member pyrrolidine bis-cyclic guanidine chemical library with 26 different amino acids at three positions of diversity and 42 carboxylic acids at the fourth position. This synthetic combinatorial library was developed for positional scanning and screened for bacteriostatic and bactericidal activities against the important human pathogen methicillin-resistant Staphylococcus aureus (MRSA). The eight compound mixtures exhibiting bactericidal activity (10 microg/mL) against MRSA were used to direct the synthesis of 36 individual compounds that were then screened for activity against MRSA, vancomycin-resistant Enterococcus faecalis (VRE), and two Gram-negative bacterial species. At least 20 individual compounds were bactericidal for MRSA at 2.5 microg/mL, with a subset of these compounds showing bactericidal activities (10 microg/mL) against the other species tested. This approach demonstrates the capability to synthesize and screen a complex library to yield promising antimicrobials that address a critical need for novel infectious disease therapeutics.

摘要

革兰氏阳性菌对抗生素耐药性的迅速上升促使我们探索开发新的策略,以合成适合高通量筛选抗菌活性的大型化学文库。在此,我们报告了一个包含738,192个成员的吡咯烷双环胍化学文库的固相合成,该文库在三个多样性位置具有26种不同的氨基酸,在第四个位置有42种羧酸。这个合成组合文库是为位置扫描而开发的,并针对重要的人类病原体耐甲氧西林金黄色葡萄球菌(MRSA)进行了抑菌和杀菌活性筛选。对MRSA具有杀菌活性(10微克/毫升)的八种化合物混合物被用于指导36种单个化合物的合成,然后对这些化合物针对MRSA、耐万古霉素粪肠球菌(VRE)和两种革兰氏阴性菌的活性进行筛选。至少有20种单个化合物在2.5微克/毫升时对MRSA具有杀菌作用,其中一部分化合物对其他测试菌种也显示出杀菌活性(10微克/毫升)。这种方法展示了合成和筛选复杂文库以产生有前景的抗菌药物的能力,满足了对新型传染病治疗药物的迫切需求。

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