首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Bis(benzyl)polyamine analogs inhibit the growth of chloroquine-resistant human malaria parasites (Plasmodium falciparum) in vitro and in combination with alpha-difluoromethylornithine cure murine malaria.
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Bis(benzyl)polyamine analogs inhibit the growth of chloroquine-resistant human malaria parasites (Plasmodium falciparum) in vitro and in combination with alpha-difluoromethylornithine cure murine malaria.

机译:双(苄基)多胺类似物在体外以及与α-二氟甲基鸟氨酸可治愈鼠类疟疾时,可抑制耐氯喹的人类疟疾寄生虫(恶性疟原虫)的生长。

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摘要

A number of bis(benzyl)polyamine analogs were found to be potent inhibitors of both chloroquine-resistant and chloroquine-sensitive strains of the human malaria parasite Plasmodium falciparum in vitro (IC50 values = 0.2-14 microM). Administration of one of the compounds, MDL 27695, which is N,N'-bis(3-[(phenylmethyl)amino]propyl)-1,7-diaminoheptane (C6H5CH2NH(CH2)3NH(CH2)7NH(CH2)3NHCH2C6H5), at 10-15 mg/kg i.p. three times per day for 3 days in combination with 2% alpha-difluoromethylornithine (DFMO; eflornithine) in drinking water effected cures of 47/54 mice infected with Plasmodium berghei. Cured mice were found to be immune upon rechallenge with the same P. berghei strain 4 months after the initial infection and drug-induced cure. MDL 27695 rapidly inhibited the incorporation of [3H]hypoxanthine into P. falciparum RNA and DNA, whereas the incorporation of [3H]isoleucine was not affected until much later. We conclude, therefore, that the major cytotoxic event may be direct binding of MDL 27695 to DNA with subsequent disruption of macromolecular biosynthesis and cell death. These compounds offer a lead in the search for new agents for chemotherapy of malaria.
机译:发现许多双(苄基)多胺类似物是人疟疾寄生虫恶性疟原虫的氯喹抗性和氯喹敏感菌株的有效抑制剂(IC50值= 0.2-14 microM)。给予一种化合物MDL 27695,即N,N'-双(3-[((苯基甲基)氨基]丙基)-1,7-二氨基庚烷(C6H5CH2NH(CH2)3NH(CH2)7NH(CH2)3NHCH2C6H5) ,剂量为10-15 mg / kg ip每天3次,每天3次,与2%α-二氟甲基鸟氨酸(DFMO; eflornithine)组合,可治愈47/54只感染了伯氏疟原虫的小鼠。在初始感染和药物诱导的治愈后4个月,发现治愈的小鼠在挑战相同的伯氏疟原虫菌株后具有免疫力。 MDL 27695快速抑制[3H]次黄嘌呤掺入恶性疟原虫RNA和DNA,而[3H]异亮氨酸的掺入直到很晚才受到影响。因此,我们得出结论,主要的细胞毒性事件可能是MDL 27695与DNA的直接结合,随后破坏了大分子生物合成和细胞死亡。这些化合物在寻找新的疟疾化学治疗药物方面发挥了主导作用。

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