Malaria is caused by Plasmodium parasites and remains a significant health concern for almost half the world's population. There are estimated to be > 240 million malaria cases and approximately 600,000 malaria-related deaths annually, mainly due to infection with P. falciparum parasites. Parasite drug resistance is impacting malaria prevention and control efforts, and as part of the malaria eradication agenda, new drugs with novel mechanisms of action are needed. Histone/lysine deacetylase (HDAC) enzymes play essential roles in Plasmodium biology and are potential targets for the development of new antiplasmodial agents. In this study, a panel of 24 HDAC inhibitors with hydroxamic acid zinc binding group, a pentyloxyamide connecting unit linker region and substituted 4-phenyl and 4(pyridinyl)thiazole cap groups were investigated for in vitro activity against asexual intraerythrocytic stage P. falciparum parasites, the life cycle stage responsible for the clinical symptoms of malaria. The most potent compound (4o) had a P. falciparum IC(50) of 20 nM and >250-fold greater selectivity for P. falciparum versus human cells. Compound 4o was also active against exoerythrocytic stage parasites (IC(50) 24 nM), which are a target for malaria prevention. In contrast, 4o lacked potent activity against late-stage gametocytes (IC(50) > 2 μM), which are a target for malaria transmission-blocking drugs. Compound 4o and analogues caused in situ hyperacetylation of P. falciparum histone H4, indicating deacetylase inhibition. Furthermore, 4o was found to stabilise PfHDAC1 in P. falciparum protein lysates using solvent-induced protein stability Western blot assays with anti-PfHDAC1 antibody. Together, these data provide new structure-activity relationship and mechanistic insights on pentyloxyamide-based HDAC inhibitors as potential therapeutic starting points for malaria.
Antiplasmodial activity of pentyloxyamide-based histone deacetylase inhibitors against Plasmodium falciparum parasites.
基于戊氧基酰胺的组蛋白去乙酰化酶抑制剂对恶性疟原虫的抗疟活性
阅读:6
作者:Dawood Wisam A, Fisher Gillian M, Kremeyer Josefa, Fischer Fabian, Home Jessica L, Goodman Christopher D, Lam Kwong Sum, Maier Alexander G, Kurz Thomas, Andrews Katherine T
| 期刊: | International Journal for Parasitology-Drugs and Drug Resistance | 影响因子: | 3.400 |
| 时间: | 2025 | 起止号: | 2025 Aug 16; 29:100608 |
| doi: | 10.1016/j.ijpddr.2025.100608 | 研究方向: | 其它 |
特别声明
1、本文转载旨在传播信息,不代表本网站观点,亦不对其内容的真实性承担责任。
2、其他媒体、网站或个人若从本网站转载使用,必须保留本网站注明的“来源”,并自行承担包括版权在内的相关法律责任。
3、如作者不希望本文被转载,或需洽谈转载稿费等事宜,请及时与本网站联系。
4、此外,如需投稿,也可通过邮箱info@biocloudy.com与我们取得联系。
