In Vitro Study of Ag2O, MgO Nanoparticles and Sb Drug Cytotoxic Effects on Leishmania donovani

Hawraa H. Esmail
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Abstract

Background: Leishmania is a parasitic protozoan that causes severe illness in humans. While pentavalent antimony compounds (Sb Drug) are used as antileishmanic drugs but are linked to limitations and many adverse complications. Objective: Therefore, commitment is still needed to find a new and successful treatment. Material & methods: In this study, the effect of Ag2O, MgO nanoparticles with mean particles size of (12-28)nm and(7-12)nm respectively on Leishmania was evaluated. Viability percentage of promastigotes following the addition of different concentrations of Ag2O, MgO nanoparticles and Sb drugs (25, 50, 100, 200  and 300 μg / ml ) to the parasite culture, assessed using colorimetric ALAMAR stain in (24,48 72)hours. Results: The concentration that the number of parasite by half (IC50) value was measured after 24, 48 and 72 hours for Sb, Ag2O NPs and MgO NPs. For Ag2O NPs   the IC50 was 2.404 after 72 hours only, and doesn’t reveal any value in 24 hour, 48 hour, in comparison to Sb drug and MgO NPs which doesn't reveal IC50 value in all used concentration and periods. Conclusion: Our data determine the superiority of Ag2O NPs and MgO NPs over standard in vitro pentostam that's it. Provides the possibility of using these Ag2O NPs and MgO NPs as a drug target for candidates with better antileishmanial efficacy.
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Ag2O、MgO纳米颗粒和Sb药物对多诺瓦利什曼原虫细胞毒性的体外研究
背景:利什曼原虫是一种引起人类严重疾病的寄生原生动物。虽然五价锑化合物(Sb药物)被用作抗利什曼病药物,但与局限性和许多不良并发症有关。目的:因此,仍然需要致力于寻找新的和成功的治疗方法。材料与方法:本研究考察了平均粒径分别为(12-28)nm和(7-12)nm的Ag2O、MgO纳米颗粒对利什曼原虫的影响。分别添加不同浓度的Ag2O、MgO纳米颗粒和Sb药物(25、50、100、200和300 μg / ml)后,分别于(24、48、72)h采用ALAMAR比色法测定promastigotes的存活率。结果:Sb、Ag2O NPs和MgO NPs在24、48和72 h后的IC50值为寄生虫数量减半的浓度。与Sb药物和MgO药物NPs相比,Ag2O NPs的IC50仅在72小时后为2.404,在24小时和48小时内没有任何值,而MgO NPs在所有使用浓度和时间段内都没有显示IC50值。结论:我们的数据确定Ag2O NPs和MgO NPs优于标准的体外戊氧胺。提供了使用这些Ag2O NPs和MgO NPs作为抗利什曼病疗效更好的候选药物靶点的可能性。
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