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Screening a library of 1600 adamantyl ureas for anti-Mycobacterium tuberculosis activity in vitro and for better physical chemical properties for bioavailability

机译:在体外筛选1600个抗分组结核病活性的蛋白酶并为生物利用度进行更好的物理化学性质

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摘要

Adamantyl ureas were previously identified as a group of compounds active against Mycobacterium tuberculosis in culture with minimum inhibitor concentrations (MICs) below 0.1 μg/ml. These compounds have been shown to target MmpL3, a protein involved in secretion of trehalose mono-mycolate. They also inhibit both human soluble epoxide hydrolase (hsEH) and M. tuberculosis epoxide hydrolases. However, active compounds to date have high cLogP’s and are poorly soluble, leading to low bioavailability and thus limiting any therapeutic application. In this study, a library of 1,600 ureas (mostly adamantyl ureas), which were synthesized for the purpose of increasing the bioavailability of inhibitors of hsEH, was screened for activity against M. tuberculosis. 1-Adamantyl-3-phenyl ureas with a polar para substituent were found to retain moderate activity against M. tuberculosis and one of these compounds was shown to be present in serum after oral administration to mice. However, neither it, nor a closely related analog, reduced M. tuberculosis infection in mice. No correlation between in vitro potency against M. tuberculosis and the hsEH inhibition were found supporting the concept that activity against hsEH and M. tuberculosis can be separated. Also there was a lack of correlation with cLogP and inhibition of the growth of M. tuberculosis. Finally, members of two classes of adamantyl ureas that contained polar components to increase their bioavailability, but lacked efficacy against growing M. tuberculosis, were found to taken up by the bacterium as effectively as a highly active apolar urea suggesting that these modifications to increase bioavailability affected the interaction of the urea against its target rather than making them unable to enter the bacterium.
机译:先前鉴定了亚氨基铀铀脲,其含有针对培养物中的结核分枝杆菌的一组化合物,其最小抑制剂浓度(MIC)低于0.1μg/ mL。这些化合物已被显示为靶标mmpl3,该蛋白质参与海藻糖单岩晶体分泌的蛋白质。它们还抑制人可溶性环氧化物水解酶(HSEH)和M.Tuberculosis环氧化物水解酶。然而,迄今为止的活性化合物具有高嵌段且溶于差,导致生物利用度低,因此限制了任何治疗应用。在该研究中,为提高Hseh抑制剂的生物利用度而合成的1,600脲(大多数亚氨基脲脲)的文库被筛选用于针对肺部结核病的活性。发现具有极性对取代基的1-亚氨基氨基-3-苯基脲,以保留对M.结核病的中等活性,并且这些化合物之一显示在口服给小鼠后存在于血清中。然而,它既不是小鼠患有小鼠的结核病感染也不是密切相关的类似物。没有对肺部结核病和Hseh抑制的体外效力之间没有相关性,该概念可以分离对抗Hseh和M.Tuberculosis的活性。此外,与CLOGP缺乏相关性和抑制结核病的生长。最后,含有极性成分的两类亚氨基脲脲的成员,以增加其生物利用度,但缺乏对生长型结核病的疗效,因此被细菌被用作高活性的尿素尿布,表明这些改进增加生物利用度影响尿素对其目标的相互作用,而不是使它们无法进入细菌。

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