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二苯基呋喃及其氮杂类似物:结构修饰对体外活性、DNA结合以及锥虫体内积累和分布的影响。

Diphenyl furans and aza analogs: effects of structural modification on in vitro activity, DNA binding, and accumulation and distribution in trypanosomes.

作者信息

Mathis Amanda M, Bridges Arlene S, Ismail Mohamed A, Kumar Arvind, Francesconi Iris, Anbazhagan Mariappan, Hu Qiyue, Tanious Farial A, Wenzler Tanja, Saulter Janelle, Wilson W David, Brun Reto, Boykin David W, Tidwell Richard R, Hall James Edwin

机构信息

Molecular Pharmaceutics, UNC School of Pharmacy, 3312 Kerr Hall, CB#7360, Chapel Hill, NC 27599, USA.

出版信息

Antimicrob Agents Chemother. 2007 Aug;51(8):2801-10. doi: 10.1128/AAC.00005-07. Epub 2007 May 21.

Abstract

Human African trypanosomiasis is a devastating disease with only a few treatment options, including pentamidine. Diamidine compounds such as pentamidine, DB75, and DB820 are potent antitrypanosomal compounds. Previous investigations have shown that diamidines accumulate to high concentrations in trypanosomes. However, the mechanism of action of this class of compounds remains unknown. A long-hypothesized mechanism of action has been binding to DNA and interference with DNA-associated enzymes. The fluorescent diamidines, DB75 and DB820, have been shown to localize not only in the DNA-containing nucleus and kinetoplast of trypanosomes but also to the acidocalcisomes. Here we investigate two series of analogs of DB75 and DB820 with various levels of in vitro antitrypanosomal activity to determine whether any correlation exists between trypanosome accumulation, distribution, and in vitro activity. Despite wide ranges of in vitro antitrypanosomal activity, all of the compounds investigated accumulated to millimolar concentrations in trypanosomes over a period of 8 h. Interestingly, some of the less potent compounds accumulated to concentrations much higher than those of more potent compounds. All of the compounds were localized to the DNA-containing nucleus and/or kinetoplast, and many were also found in the acidocalcisomes. Accumulation in the nucleus and kinetoplast should be important to the mechanism of action of these compounds. The acidocalcisomes may also play a role in the mechanism of action of these compounds. This investigation suggests that the extent of accumulation alone is not responsible for killing trypanosomes and that organelle-specific accumulation may not predict in vitro activity.

摘要

人类非洲锥虫病是一种极具毁灭性的疾病,治疗选择有限,包括喷他脒。双脒类化合物如喷他脒、DB75和DB820是有效的抗锥虫化合物。先前的研究表明,双脒类化合物在锥虫体内积累到高浓度。然而,这类化合物的作用机制仍然未知。一个长期以来被假设的作用机制是与DNA结合并干扰与DNA相关的酶。荧光双脒类化合物DB75和DB820不仅已被证明定位于锥虫含DNA的细胞核和动基体,还定位于酸性钙泡。在这里,我们研究了DB75和DB820的两个系列类似物,它们具有不同水平的体外抗锥虫活性,以确定锥虫积累、分布与体外活性之间是否存在任何相关性。尽管体外抗锥虫活性范围广泛,但在8小时内,所有研究的化合物在锥虫体内都积累到了毫摩尔浓度。有趣的是,一些活性较低的化合物积累到的浓度比活性较高的化合物高得多。所有化合物都定位于含DNA的细胞核和/或动基体,并且许多也在酸性钙泡中被发现。在细胞核和动基体中的积累对于这些化合物的作用机制应该很重要。酸性钙泡也可能在这些化合物的作用机制中发挥作用。这项研究表明,仅积累程度并不能决定杀死锥虫,而且细胞器特异性积累可能无法预测体外活性。

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