Hasan Y Alniss, Sreedevi Sajeev, Ruqaiyyah Siddiqui, Meshal Daalah, Bader S Alawfi, Hadeel M Al-Jubeh, Anil Ravi, Naveed A Khan
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引用次数: 0
Abstract
DNA minor groove binders exhibit a high degree of sequence specificity and have a variety of biological actions including antiviral, anticancer, antibacterial, and anti-protozoal properties. Since it is the location of non-covalent interactions, the minor groove of double helical B-DNA is gaining significant interest as therapeutic targets. For the purpose of this investigation, the synthesis of five novel DNA minor groove binding agents was accomplished and antiparasitic efficacies were determined against Acanthamoeba castellanii of the T4 genotype in vitro. Using amoebicidal assays, the results revealed that all inhibitors tested showed significant killing of amoebae (P<0.05). Pre-treatment of amoebae with DNA minor groove binders inhibited parasite-mediated human cell death by measuring lactate dehydrogenase release using cytopathogenicity assays. Cytotoxicity assays revealed minimal effects on human cells. As phenotypic switching leads to infection recurrence, assays revealed that the inhibitors blocked amoebae transformation. These are promising findings and suggest that DNA minor groove binders may hold promise for further research in the effective eradication of pathogenic A. castellanii.
DNA 小沟结合剂具有高度的序列特异性,并具有多种生物作用,包括抗病毒、抗癌、抗菌和抗原虫特性。由于它是非共价相互作用的位置,双螺旋 B-DNA 的小沟作为治疗靶点正受到越来越多的关注。为了进行这项研究,我们合成了五种新型 DNA 小沟结合剂,并在体外测定了它们对 T4 基因型卡斯特阿米巴的抗寄生虫效果。通过变形虫杀灭试验,结果表明所有测试的抑制剂都能显著杀灭变形虫(P
期刊介绍:
Acta Tropica, is an international journal on infectious diseases that covers public health sciences and biomedical research with particular emphasis on topics relevant to human and animal health in the tropics and the subtropics.