Massimine Kristen M, McIntosh Michael T, Doan Lanxuan T, Atreya Chloé E, Gromer Stephan, Sirawaraporn Worachart, Elliott David A, Joiner Keith A, Schirmer R Heiner, Anderson Karen S
Department of Pharmacology, Yale University School of Medicine, New Haven, CT 06520, USA.
Antimicrob Agents Chemother. 2006 Sep;50(9):3132-41. doi: 10.1128/AAC.00621-06.
4',5'-Dibromo-2',7'-dinitrofluorescein, a red dye commonly referred to as eosin B, inhibits Toxoplasma gondii in both enzymatic and cell culture studies with a 50% inhibitory concentration (IC(50)) of 180 microM. As a non-active-site inhibitor of the bifunctional T. gondii dihydrofolate reductase-thymidylate synthase (DHFR-TS), eosin B offers a novel mechanism for inhibition of the parasitic folate biosynthesis pathway. In the present study, eosin B was further evaluated as a potential antiparasitic compound through in vitro and cell culture testing of its effects on Plasmodium falciparum. Our data revealed that eosin B is a highly selective, potent inhibitor of a variety of drug-resistant malarial strains, with an average IC(50) of 124 nM. Furthermore, there is no indication of cross-resistance with other clinically utilized compounds, suggesting that eosin B is acting via a novel mechanism. The antimalarial mode of action appears to be multifaceted and includes extensive damage to membranes, the alteration of intracellular organelles, and enzymatic inhibition not only of DHFR-TS but also of glutathione reductase and thioredoxin reductase. In addition, preliminary studies suggest that eosin B is also acting as a redox cycling compound. Overall, our data suggest that eosin B is an effective lead compound for the development of new, more effective antimalarial drugs.
4',5'-二溴-2',7'-二硝基荧光素,一种通常被称为伊红B的红色染料,在酶学和细胞培养研究中对刚地弓形虫具有抑制作用,其50%抑制浓度(IC50)为180微摩尔。作为刚地弓形虫双功能二氢叶酸还原酶-胸苷酸合成酶(DHFR-TS)的非活性位点抑制剂,伊红B为抑制寄生虫叶酸生物合成途径提供了一种新机制。在本研究中,通过体外和细胞培养测试伊红B对恶性疟原虫的影响,进一步评估其作为潜在抗寄生虫化合物的作用。我们的数据显示,伊红B是多种耐药疟原虫菌株的高度选择性、强效抑制剂,平均IC50为124纳摩尔。此外,没有迹象表明与其他临床使用的化合物存在交叉耐药性,这表明伊红B通过一种新机制发挥作用。抗疟作用模式似乎是多方面的,包括对膜的广泛损伤、细胞内细胞器的改变,以及不仅对DHFR-TS而且对谷胱甘肽还原酶和硫氧还蛋白还原酶的酶抑制作用。此外,初步研究表明伊红B还作为一种氧化还原循环化合物发挥作用。总体而言,我们的数据表明伊红B是开发新型、更有效的抗疟药物的有效先导化合物。