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针对血红素的抗疟9-苯胺基吖啶化合物。

Antimalarial 9-anilinoacridine compounds directed at hematin.

作者信息

Auparakkitanon Saranya, Noonpakdee Wilai, Ralph Raymond K, Denny William A, Wilairat Prapon

机构信息

Department of Biochemistry, Faculty of Science, Mahidol University, Bangkok 10400, Thailand.

出版信息

Antimicrob Agents Chemother. 2003 Dec;47(12):3708-12. doi: 10.1128/AAC.47.12.3708-3712.2003.

Abstract

Antimalarial 9-anilinoacridines are potent inhibitors of parasite DNA topoisomerase II both in vitro and in situ. 3,6-diamino substitution on the acridine ring greatly improves parasiticidal activity against Plasmodium falciparum by targeting DNA topoisomerase II. A series of 9-anilinoacridines were investigated for their abilities to inhibit beta-hematin formation, to form drug-hematin complexes, and to enhance hematin-induced lysis of red blood cells. Inhibition of beta-hematin formation was minimal with 3,6-diamino analogs of 9-anilinoacridine and greatest with analogs with a 3,6-diCl substitution together with an electron-donating group in the 1'-anilino position. On the other hand, the presence of a 1'-N(CH3)2 group in the anilino ring produced compounds that strongly inhibited beta-hematin formation but which did not appear to be sensitive to the nature of the substitutions in the acridine nucleus. The derivatives bound hematin, and Job's plots of UV-visible absorbance changes in drug-hematin complexes at various molar ratios indicated a stoichiometric ratio of 1:2. The drugs enhanced hematin-induced red blood cell lysis at low concentrations (<4 microM). These studies open up the novel possibility of development of 9-anilinoacridine antimalarials that target not only DNA topoisomerase II but also beta-hematin formation, which should help delay the rapid onset of resistance to drugs acting at only a single site.

摘要

抗疟9-苯胺基吖啶在体外和体内都是寄生虫DNA拓扑异构酶II的有效抑制剂。吖啶环上的3,6-二氨基取代通过靶向DNA拓扑异构酶II大大提高了对恶性疟原虫的杀寄生虫活性。研究了一系列9-苯胺基吖啶抑制β-血红素形成、形成药物-血红素复合物以及增强血红素诱导的红细胞裂解的能力。9-苯胺基吖啶的3,6-二氨基类似物对β-血红素形成的抑制作用最小,而在1'-苯胺基位置带有3,6-二氯取代以及供电子基团的类似物抑制作用最大。另一方面,苯胺环中存在1'-N(CH3)2基团产生的化合物强烈抑制β-血红素形成,但似乎对吖啶核中取代基的性质不敏感。这些衍生物与血红素结合,不同摩尔比的药物-血红素复合物紫外可见吸收变化的Job曲线表明化学计量比为1:2。这些药物在低浓度(<4 microM)时增强了血红素诱导的红细胞裂解。这些研究为开发不仅靶向DNA拓扑异构酶II而且靶向β-血红素形成的9-苯胺基吖啶抗疟药开辟了新的可能性,这应该有助于延缓对仅作用于单一靶点的药物的快速耐药性的出现。

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