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Structure and Antiparasitic Activity Relationship of Alkylphosphocholine Analogues against Leishmania donovani

机译:烷基磷光胆碱类似物对Leishmania donovani的结构和抗脂质活性关系

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摘要

Miltefosine (Milt) is the only oral treatment for visceral leishmaniasis (VL) but its use is associated with adverse effects, e.g., teratogenicity, vomiting, diarrhoea. Understanding how its chemical structure induces cytotoxicity, whilst not compromising its anti-parasitic efficacy, could identify more effective compounds. Therefore, we systemically modified the compound’s head, tail and linker tested the in vitro activity of three alkylphosphocholines (APC) series against strains with different sensitivities to antimony. The analogue, APC12, with an alkyl carbon chain of 12 atoms, was also tested for anti-leishmanial in vivo activity in a murine VL model. All APCs produced had anti-leishmanial activity in the micromolar range (IC and IC , 0.46– > 82.21 µM and 4.14–739.89 µM; 0.01– > 8.02 µM and 0.09–72.18 µM, respectively, against promastigotes and intracellular amastigotes). The analogue, APC12 was the most active, was 4–10 fold more effective than the parent Milt molecule (APC16), irrespective of the strain’s sensitivity to antimony. Intravenous administration of 40 mg/kg APC12 to infected BALB/c mice reduced liver and spleen parasite burdens by 60 ± 11% and 60 ± 19%, respectively, while oral administration reduced parasite load in the bone marrow by 54 ± 34%. These studies confirm that it is possible to alter the Milt structure and produce more active anti-leishmanial compounds.
机译:Miltefosine(Milt)是内脏Leishmaniaisis(VL)的唯一口服处理,但其使用与不良反应有关,例如致畸性,呕吐,腹泻。了解其化学结构如何诱导细胞毒性,同时不损害其抗寄生功效,可以鉴定更有效的化合物。因此,我们系统性地修饰了化合物的头部,尾部和接头测试了三种烷基磷胺(APC)系列的体外活性与不同敏感性的菌株对锑。还测试了12个原子的烷基碳链的类似物,APC12,用于鼠VL模型中的体内活性的抗LeishManial。产生的所有APC在微摩拉范围(IC和IC,0.46->82.21μm和4.14-739.89μm和4.14-739.89μm; 0.01->8.02μm和0.09-72.18μm的抗LeishManialsial,分别对抗Promastigotes和细胞内amastiges)。类似物,APC12是最活跃的,比母体MILT分子(APC16)更有效,而不管菌株对锑的敏感性如何,都是4-10倍。静脉施用40mg / kg APC12至受感染的BALB / C小鼠的肝脏和脾脏寄生虫分别减少60±11%和60±19%,而口服给药将骨髓中的寄生虫载量减少54±34%。这些研究证实,可以改变MILT结构并产生更活跃的抗LeishManial化合物。

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