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首页> 外文期刊>Biochemical Pharmacology >The lignan glycosides lyoniside and saracoside poison the unusual type IB topoisomerase of Leishmania donovani and kill the parasite both in vitro and in vivo
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The lignan glycosides lyoniside and saracoside poison the unusual type IB topoisomerase of Leishmania donovani and kill the parasite both in vitro and in vivo

机译:木脂糖苷莱尼糖苷和saracoside会中毒利什曼原虫的异常IB型拓扑异构酶,并在体内和体外杀死该寄生虫

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摘要

Lignans are diphenyl propanoids with vast range of biological activities. The present study provides an important insight into the anti-leishmanial activities of two lignan glycosides, viz. lyoniside and saracoside. These compounds inhibit catalytic activities of topoisomerase IB (LdTopIB) of Leishmania donovani in non-competitive manner and stabilize the LdTopIB mediated cleavage complex formation both in vitro and in Leishmania promastigotes and subsequently inhibit the religation of cleaved strand. These two compounds not only poison LdTopIB but also can interact with the free enzyme LdTopIB. We have also shown that lyoniside and saracoside are cytotoxic to promastigotes and intracellular amastigotes. The protein-DNA complex formation leads to double strand breaks in DNA which ultimately triggers apoptosis-like cell death in the parasite. Along with their cytotoxicity towards sodium antimony gluconate (SAG) sensitive AG83 strain, their ability to kill SAG resistant GE1 strain makes these two compounds potential anti-leishmanial candidates. Not only they effectively kill L. donovani amastigotes inside macrophages in vitro, lyoniside and saracoside demonstrated strong anti-leishmanial efficacies in BALB/c mice model of leishmaniasis. Treatment with these lignan glycosides produce nitric oxide and reactive oxygen species which result in almost complete clearance of the liver and splenic parasite burden. These compounds do not inhibit human topoisomerase IB upto 200 μM concentrations and had poor cytotoxic effect on uninfected cultured murine peritoneal macrophages upto 100 μM concentrations. Taken together it can be concluded that these compounds can be developed into excellent therapeutic agent against deadly disease leishmaniasis.
机译:木质素是具有广泛生物活性的二苯丙烷。本研究提供了对两种木脂素苷的抗利什曼活性的重要见解。 lyoniside和saracoside。这些化合物以非竞争性方式抑制多形利什曼原虫的拓扑异构酶IB(LdTopIB)的催化活性,并在体外和利什曼原虫前鞭毛体中稳定LdTopIB介导的裂解复合物的形成,并随后抑制裂解链的重新连接。这两种化合物不仅会毒化LdTopIB,而且还会与游离酶LdTopIB相互作用。我们还表明,莱尼甙和saracoside对前鞭毛体和胞内变形虫具有细胞毒性。蛋白质-DNA复合物的形成导致DNA的双链断裂,最终触发寄生虫中的凋亡样细胞死亡。除了它们对葡萄糖酸锑钠(SAG)敏感的AG83菌株的细胞毒性外,它们杀死SAG抗性GE1菌株的能力使这两种化合物成为潜在的抗利什曼原虫候选物。它们不仅在体外有效杀死巨噬细胞内的多诺氏乳酸杆菌,莱尼甙和saracoside在利什曼病的BALB / c小鼠模型中显示出强大的抗利什曼病功效。用这些木脂素糖苷处理会产生一氧化氮和活性氧,从而几乎完全清除肝脏和脾脏的寄生虫负担。这些化合物不会抑制浓度高达200μM的人类拓扑异构酶IB,并且对浓度高达100μM的未感染鼠腹膜巨噬细胞的细胞毒性作用较差。综上所述,可以得出结论,这些化合物可以发展成为针对致命疾病利什曼病的极好的治疗剂。

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