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糖基修饰核苷类似物的体外和体内抗疟原虫活性评价。

In vitro and in vivo antiplasmodial evaluation of sugar-modified nucleoside analogues.

机构信息

Department of Pharmaceutical Chemistry, University of Debrecen, Egyetem Tér 1, Debrecen, 4032, Hungary.

Institute of Healthcare Industry, University of Debrecen, Nagyerdei Körút 98, Debrecen, 4032, Hungary.

出版信息

Sci Rep. 2023 Jul 28;13(1):12228. doi: 10.1038/s41598-023-39541-4.

Abstract

Drug-resistant Plasmodium falciparum (Pf) infections are a major burden on the population and the healthcare system. The establishment of Pf resistance to most existing antimalarial therapies has complicated the problem, and the emergence of resistance to artemisinin derivatives is even more concerning. It is increasingly difficult to cure malaria patients due to the limited availability of effective antimalarial drugs, resulting in an urgent need for more efficacious and affordable treatments to eradicate this disease. Herein, new nucleoside analogues including morpholino-nucleoside hybrids and thio-substituted nucleoside derivatives were prepared and evaluated for in vitro and in vivo antiparasitic activity that led a few hits especially nucleoside-thiopyranoside conjugates, which are highly effective against Pf3D7 and PfRKL-9 strains in submicromolar concentration. One adenosine derivative and four pyrimidine nucleoside analogues significantly reduced the parasite burden in mouse models infected with Plasmodium berghei ANKA. Importantly, no significant hemolysis and cytotoxicity towards human cell line (RAW) was observed for the hits, suggesting their safety profile. Preliminary research suggested that these thiosugar-nucleoside conjugates could be used to accelerate the antimalarial drug development pipeline and thus deserve further investigation.

摘要

耐青蒿素疟原虫(Pf)感染对人群和医疗保健系统造成了重大负担。Pf 对大多数现有抗疟疗法的耐药性的建立使问题更加复杂,而青蒿素衍生物的耐药性的出现则更加令人担忧。由于有效的抗疟药物供应有限,治疗疟疾患者越来越困难,因此迫切需要更有效和更实惠的治疗方法来消除这种疾病。在此,我们制备并评估了包括吗啉核苷杂合体和硫代取代核苷衍生物在内的新型核苷类似物的体外和体内抗寄生虫活性,这些活性产生了一些具有潜力的化合物,特别是核苷-硫代吡喃糖苷缀合物,它们在亚微摩尔浓度下对 Pf3D7 和 PfRKL-9 菌株具有高效活性。一种腺苷衍生物和四种嘧啶核苷类似物显著降低了感染疟原虫伯氏疟原虫 ANKA 的小鼠模型中的寄生虫负担。重要的是,这些具有潜力的化合物对人细胞系(RAW)没有明显的溶血和细胞毒性,表明它们具有安全性。初步研究表明,这些硫代糖-核苷缀合物可用于加速抗疟药物开发管道,因此值得进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5ce/10382589/eea7619dd7a9/41598_2023_39541_Fig1_HTML.jpg

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