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环孢素衍生物SDZ 215-918的抗弓形虫活性特征:缺乏免疫抑制和肽基脯氨酰异构酶抑制活性:P糖蛋白在弓形虫生理学中的可能作用

Characterization of anti-Toxoplasma activity of SDZ 215-918, a cyclosporin derivative lacking immunosuppressive and peptidyl-prolyl-isomerase-inhibiting activity: possible role of a P glycoprotein in Toxoplasma physiology.

作者信息

Silverman J A, Hayes M L, Luft B J, Joiner K A

机构信息

Department of Internal Medicine, Yale University School of Medicine, New Haven, Connecticut 06520-8022, USA.

出版信息

Antimicrob Agents Chemother. 1997 Sep;41(9):1859-66. doi: 10.1128/AAC.41.9.1859.

Abstract

The immunosuppressive agent cyclosporin A (CsA) also possesses broad-spectrum antimicrobial activity. Previous investigators have reported that the obligate intracellular protozoan Toxoplasma gondii is sensitive to CsA. We have measured the sensitivity of Toxoplasma to 26 CsA derivatives that maintain only a subset of the parent compound's activity. We identified one compound, SDZ 215-918, that is a particularly potent inhibitor of parasite invasion and replication, with a 50% inhibitory concentration of 0.45 microg/ml, which is 10-fold lower than that of CsA. Kinetic studies demonstrate that activity has a rapid onset (half-life, < or = 20 min) and is initially reversible, although long-term exposure (> 24 h) to 5 microg/ml is lethal; in contrast, this concentration had no effect on host cell protein synthesis or cell division. SDZ 215-918 acts directly on the parasite, as demonstrated by inhibition of macromolecular synthesis in host-free extracellular parasites. Inhibition of invasion is due to a reduction in parasite motility. SDZ 215-918 does not bind to cyclophilins, the ubiquitous cyclosporin-binding proteins, but is a potent inhibitor of the mammalian P glycoprotein, a member of the ATP binding cassette transporter superfamily and the pump responsible for multidrug resistance in cancer and parasite cell lines. SDZ 215-918 blocks the efflux of rhodamine 123 from extracellular parasites, consistent with inhibition of a P glycoprotein-like pump. We suggest that a P glycoprotein or a related transporter plays a crucial role in the biology of Toxoplasma and may be a novel target for antiparasitic compounds. Preliminary studies with animals indicate that SDZ 215-918 inhibits parasite growth in vivo; its relationship to CsA may make it suitable for clinical development.

摘要

免疫抑制剂环孢素A(CsA)也具有广谱抗菌活性。先前的研究人员报告称,专性细胞内原生动物弓形虫对CsA敏感。我们测定了弓形虫对26种仅保留母体化合物部分活性的CsA衍生物的敏感性。我们鉴定出一种化合物SDZ 215 - 918,它是寄生虫侵袭和复制的特别有效抑制剂,50%抑制浓度为0.45微克/毫升,比CsA低10倍。动力学研究表明,其活性起效迅速(半衰期≤20分钟),最初是可逆的,尽管长期暴露于5微克/毫升(>24小时)是致命的;相比之下,该浓度对宿主细胞蛋白质合成或细胞分裂没有影响。SDZ 215 - 918直接作用于寄生虫,这在无宿主的细胞外寄生虫中大分子合成受到抑制得到了证明。侵袭抑制是由于寄生虫运动性降低。SDZ 215 - 918不与亲环蛋白(普遍存在的环孢素结合蛋白)结合,但却是哺乳动物P糖蛋白的有效抑制剂,P糖蛋白是ATP结合盒转运体超家族的成员,也是癌症和寄生虫细胞系中多药耐药的泵。SDZ 215 - 918阻止若丹明123从细胞外寄生虫中流出,这与抑制一种类似P糖蛋白的泵一致。我们认为P糖蛋白或相关转运体在弓形虫生物学中起关键作用,可能是抗寄生虫化合物的新靶点。对动物的初步研究表明,SDZ 215 - 918在体内抑制寄生虫生长;它与CsA的关系可能使其适合临床开发。

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