In vitro and in vivo activities of a trithiolato-diRuthenium complex conjugated with sulfadoxine against the apicomplexan parasite Toxoplasma gondii

IF 4.1 2区 医学 Q1 PARASITOLOGY
Ghalia Boubaker , Alice Bernal , Anitha Vigneswaran , Dennis Imhof , Maria Cristina Ferreira de Sousa , Kai Pascal Alexander Hänggeli , Noé Haudenschild , Julien Furrer , Emilia Păunescu , Oksana Desiatkina , Andrew Hemphill
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Abstract

Organometallic compounds, including Ruthenium complexes, have been widely developed as anti-cancer chemotherapeutics, but have also attracted much interest as potential anti-parasitic drugs. Recently hybrid drugs composed of organometallic Ruthenium moieties that were complexed to different antimicrobial agents were synthesized. One of these compounds, a trithiolato-diRuthenium complex (RU) conjugated to sulfadoxine (SDX), inhibited proliferation of Toxoplasma gondii tachyzoites grown in human foreskin fibroblast (HFF) monolayers with an IC50 < 150 nM, while SDX and the non-modified RU complex applied either individually or as an equimolar mixture were much less potent. In addition, conjugation of SDX to RU lead to decreased HFF cytotoxicity. RU-SDX did not impair the in vitro proliferation of murine splenocytes at concentrations ranging from 0.1 to 0.5 μM but had an impact at 2 μM, and induced zebrafish embryotoxicity at 20 μM, but not at 2 or 0.2 μM. RU-SDX acted parasitostatic but not parasiticidal, and induced transient ultrastructural changes in the mitochondrial matrix of tachyzoites early during treatment. While other compounds that target the mitochondrion such as the uncouplers FCCP and CCCP and another trithiolato-Ruthenium complex conjugated to adenine affected the mitochondrial membrane potential, no such effect was detected for RU-SDX. Evaluation of the in vivo efficacy of RU-SDX in a murine T. gondii oocyst infection model comprised of non-pregnant outbred CD1 mice showed no effects on the cerebral parasite burden, but reduced parasite load in the eyes and in heart tissue.

Abstract Image

与磺胺多辛共轭的三硫醇二钌复合物对弓形虫寄生虫的体内外活性
包括钌复合物在内的有机金属化合物已被广泛开发为抗癌化疗药物,但作为潜在的抗寄生虫药物也引起了人们的极大兴趣。最近,人们合成了由与不同抗菌剂络合的有机金属钌分子组成的混合药物。其中一种化合物是与磺胺多辛(SDX)轭合的三硫醇二钌复合物(RU),它能抑制生长在人包皮成纤维细胞(HFF)单层中的弓形虫蝌蚪的增殖,其 IC50 值为 150 nM,而单独使用或等摩尔混合物使用 SDX 和未修饰的 RU 复合物的药效则要差得多。此外,SDX 与 RU 共轭会降低 HFF 的细胞毒性。浓度为 0.1 至 0.5 μM 的 RU-SDX 不影响小鼠脾细胞的体外增殖,但浓度为 2 μM 时会产生影响;浓度为 20 μM 时会诱发斑马鱼胚胎毒性,但浓度为 2 或 0.2 μM 时不会。RU-SDX 有抑制寄生虫生长的作用,但没有杀寄生虫的作用,而且在处理早期会诱导蝌蚪线粒体基质发生短暂的超微结构变化。其他针对线粒体的化合物,如解偶联剂 FCCP 和 CCCP 以及另一种与腺嘌呤结合的三硫醇-钌复合物会影响线粒体膜电位,而 RU-SDX 则没有发现这种影响。对 RU-SDX 在小鼠淋病卵囊感染模型中的体内疗效进行了评估,该模型由未怀孕的 CD1 杂交小鼠组成,评估结果显示,RU-SDX 对大脑寄生虫负荷没有影响,但减少了眼睛和心脏组织中的寄生虫负荷。
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来源期刊
CiteScore
7.90
自引率
7.50%
发文量
31
审稿时长
48 days
期刊介绍: The International Journal for Parasitology – Drugs and Drug Resistance is one of a series of specialist, open access journals launched by the International Journal for Parasitology. It publishes the results of original research in the area of anti-parasite drug identification, development and evaluation, and parasite drug resistance. The journal also covers research into natural products as anti-parasitic agents, and bioactive parasite products. Studies can be aimed at unicellular or multicellular parasites of human or veterinary importance.
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