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

赤藓糖醇 恶性疟原虫 生物 免疫系统 微生物学 疟疾 生物化学 细胞生物学 免疫学
作者
Jyoti Kumari,Vikash Kumar,Ankita Behl,Raj Kumar Sah,Geeta Kumari,Swati Garg,Aashima Gupta,S. Nazar Mohomed Mohaideen,Sadat Shafi,Soumya Pati,Kirandeep Samby,Jeremy N. Burrows,Narla Mohandas,Shailja Singh
出处
期刊:Biochemical Pharmacology [Elsevier]
卷期号:205: 115287-115287 被引量:3
标识
DOI:10.1016/j.bcp.2022.115287
摘要

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.
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