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赤藓糖醇,一种安全的天然甜味剂,通过水通道蛋白渗透进入恶性疟原虫,表现出多阶段抗疟活性。

'Erythritol', a safe natural sweetener exhibits multi-stage anti-malarial activity by permeating into Plasmodium falciparum through aquaglyceroporin channel.

机构信息

Special Centre for Molecular Medicine, Jawaharlal Nehru University, New Delhi, India; Department of Life Sciences, Shiv Nadar University, Greater Noida, New Delhi, India.

Special Centre for Molecular Medicine, Jawaharlal Nehru University, New Delhi, India.

出版信息

Biochem Pharmacol. 2022 Nov;205:115287. doi: 10.1016/j.bcp.2022.115287. Epub 2022 Oct 6.

Abstract

The increased resistance of human malaria parasite Plasmodium falciparum (Pf) to currently used drugs necessities the development of novel anti-malarials. Here, we examine the potential of erythritol, a sugar substitute for therapeutic intervention. Erythritol is a permeant of Plasmodium falciparum aquaglyceroporin (PfAQP) which is a multifunctional channel responsible for maintaining hydro-homeostasis. We show that erythritol effectively inhibited growth and progression of asexual blood stage malaria parasite, and effect invasion and egress processes. It also inhibited the liver stage (sporozoites) and transmission stage parasite (gametocytes) development. Interestingly, erythritol inhibited in vivo growth of malaria parasite in mouse experimental model. It was more effective in inhibiting parasite growth both in vivo and in vitro when tested together with a known anti-malarial 'artesunate'. Additionally, erythritol showed cytokine-modulating effect which suggests its direct effect on the host immune system. Ammonia detection assay demonstrated that erythritol uptake effects the amount of ammonia release across the parasite. Our functional complementation assays suggest that PfAQP expression in yeast mutant restores its growth in hyperosmotic conditions but showed reduced growth in the presence of erythritol. Osmotic lysis assay suggests that erythritol creates osmotic stress for killing the parasite. Overall, our data bestow erythritol as a promising lead compound with an attractive antimalarial profile and could possibly be combined with known drugs without losing its efficacy. We propose the use of erythritol based sweet candies for protection against malaria specially in children living in the endemic area.

摘要

疟原虫对目前使用的药物的抗药性不断增强,这使得我们有必要开发新的抗疟药物。在这里,我们研究了赤藓糖醇作为一种治疗干预手段的潜力。赤藓糖醇是疟原虫aquaglyceroporin(PfAQP)的通透物,PfAQP 是一种多功能通道,负责维持水稳态。我们发现赤藓糖醇能有效抑制无性血期疟原虫的生长和发育,并能抑制入侵和出芽过程。它还能抑制肝期(子孢子)和传播期寄生虫(配子体)的发育。有趣的是,赤藓糖醇能抑制小鼠实验模型中的疟原虫体内生长。当与已知的抗疟药青蒿琥酯一起测试时,它在体内和体外都更有效地抑制寄生虫的生长。此外,赤藓糖醇还表现出细胞因子调节作用,这表明它对宿主免疫系统有直接影响。氨检测实验表明,赤藓糖醇的摄取会影响寄生虫释放的氨的量。我们的功能互补实验表明,在酵母突变体中表达 PfAQP 能恢复其在高渗条件下的生长,但在赤藓糖醇存在的情况下,其生长能力会降低。渗透压溶解实验表明,赤藓糖醇会给寄生虫造成渗透压胁迫,从而杀死寄生虫。总的来说,我们的数据表明赤藓糖醇是一种很有前途的先导化合物,具有吸引人的抗疟特性,并且可以与已知药物联合使用而不会降低其疗效。我们建议使用基于赤藓糖醇的甜糖果来预防疟疾,特别是在疟疾流行地区的儿童中使用。

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