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首页> 外文期刊>Journal of Medicinal Chemistry >Synthesis and antimicrobial activity of 4H-4-oxoquinolizine derivatives: consequences of structural modification at the C-8 position.
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Synthesis and antimicrobial activity of 4H-4-oxoquinolizine derivatives: consequences of structural modification at the C-8 position.

机译:4H-4-氧喹喹嗪衍生物的合成和抗菌活性:在C-8位置进行结构修饰的结果。

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The antibacterial 4H-4-oxoquinolizines were introduced recently to overcome bacterial resistance to fluoroquinolones. They exhibit potent antibacterial activity against Gram-positive, Gram-negative, and anaerobic organisms and are highly active against some quinolone-resistant bacteria including quinolone-resistant MRSA. Preliminary studies indicated that oxoquinolizines possess distinct activity and toxicity profiles as compared with their parent quinolones. In order to develop a potent antibacterial agent with the desired spectrum of activity, good tolerability, and balanced pharmacokinetic profile, we synthesized and evaluated a series of oxoquinolizines with various substituents at the C-8 position. Most compounds tested in this study demonstrated better activity against Gram-positive bacteria than ciprofloxacin and exhibited good susceptibility against ciprofloxacin- and methicillin-resistant S. aureus. While maintaining potent in vitro activity, several compounds showed improved in vivo efficacy over ABT-719 as indicated by the mouse protection test. As an example, the oral ED(50) values for the cis-3-amino-4-methylpiperidine analogue 3ss against S. aureus NCTC 10649M, S. pneumoniae ATCC 6303, and E. coli JUHL were 0. 8, 2.0, and 1.4 mg/kg, compared to 3.0, 10.0, and 8.3 mg/kg for ABT-719. The current study revealed that the steric and electronic environment, conformation, and absolute stereochemistry of the C-8 group are very important to the antibacterial profiles. Structural modifications of the C-8 group provide a useful means to improve the antibacterial activities, physicochemical properties, and pharmacokinetic profiles. Manipulation of the C-8 group also allows us to generate analogues with the desired spectrum of activity, such as analogues that are selective against respiratory pathogens.
机译:最近引入了抗菌的4H-4-氧喹诺酮类药物,以克服细菌对氟喹诺酮类药物的耐药性。它们对革兰氏阳性,革兰氏阴性和厌氧菌显示有效的抗菌活性,对某些对喹诺酮类耐药的细菌(包括对喹诺酮类耐药的MRSA)具有很高的活性。初步研究表明,与它们的母体喹诺酮类相比,氧喹诺酮类具有独特的活性和毒性。为了开发一种具有所需活性谱,良好的耐受性和平衡的药代动力学特征的有效抗菌剂,我们合成并评估了一系列在C-8位带有各种取代基的氧喹啉。在这项研究中测试的大多数化合物对革兰氏阳性细菌的活性均优于环丙沙星,并且对环丙沙星和耐甲氧西林的金黄色葡萄球菌具有良好的敏感性。小鼠保护试验表明,在保持有效的体外活性的同时,几种化合物的体内功效优于ABT-719。例如,针对金黄色葡萄球菌NCTC 10649M,肺炎链球菌ATCC 6303和大肠杆菌JUHL的顺式-3-氨基-4-甲基哌啶类似物3ss的口服ED(50)值为0、8、2.0和1.4 mg / kg,而ABT-719为3.0、10.0和8.3 mg / kg。当前的研究表明,C-8基团的空间和电子环境,构象和绝对立体化学对抗菌谱非常重要。 C-8基团的结构修饰提供了改善抗菌活性,理化性质和药代动力学特性的有用手段。 C-8组的操纵还使我们能够产生具有所需活性谱的类似物,例如对呼吸道病原体具有选择性的类似物。

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