Iloneoside, an antimalarial pregnane glycoside isolated from Gongronema latifolium leaf, potentiates the activity of chloroquine against multidrug resistant Plasmodium falciparum

IF 1.4 4区 医学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular and biochemical parasitology Pub Date : 2022-05-01 DOI:10.1016/j.molbiopara.2022.111474
J.O. Adebayo , I.P. Ceravolo , G.A. Gyebi , O.E. Olorundare , A.S. Babatunde , J.P. Penna-Coutinho , M. Koketsu , A.U. Krettli
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引用次数: 1

Abstract

The rapid spread of drug resistant malaria parasites has necessitated the search for novel antimalarials and chemosensitizers capable of reversing drug resistance in the parasites. A number of studies have revealed the resistance reversal activities of pregnane glycosides and the antimalarial activity of a pregnane glycoside obtained from Gongronema species. However, the pregnane (2) and pregnane glycosides (1, 3–4) isolated from Gongronema latifolium leaf have not been evaluated for these activities. This study was therefore carried out to evaluate the antiplasmodial and chloroquine resistance reversal activities of a pregnane and three pregnane glycosides isolated from G. latifolium leaf in vitro. The compounds were evaluated for their inhibitory activities against P. falciparum 3D7 (a chloroquine-sensitive strain) and P. falciparum W2 (a chloroquine-resistant clone) in vitro. The activities of chloroquine in separate combination with each of the compounds against P. falciparum W2 were also evaluated. Moreover, the interaction of the active compounds (1 and 4) with selected P. falciparum proteins (PfProteins) were evaluated in silico. The results revealed that only 1 and 4 were active against P. falciparum 3D7 and P. falciparum W2. Also, 2 and 3 did not exhibit chloroquine resistance reversal activity. Activity of chloroquine against P. falciparum W2 was potentiated by 1 by 3200% at concentrations higher than 0.625 µg/mL. Also, 1 and 4 demonstrated similar binding patterns and higher binding tendencies to the selected PfProteins compared to chloroquine. Thus, 1 (iloneoside) is an antimalarial pregnane glycoside which can potentiate the activity of chloroquine against multidrug resistant P. falciparum.

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从红草叶中分离的抗疟孕酮苷,可增强氯喹对多重耐药恶性疟原虫的活性
耐药疟疾寄生虫的迅速传播使得有必要寻找能够逆转寄生虫耐药性的新型抗疟药和化学增敏剂。大量研究揭示了孕酮苷类药物的抗疟活性,以及从黄麻属植物中提取的孕酮苷类药物的抗疟活性。然而,从贡竹叶中分离的孕烷(2)和孕烷苷(1,3 - 4)尚未对其活性进行评价。因此,本研究对从阔叶中分离的一种孕烷和三种孕烷苷进行了体外抗疟原虫和抗氯喹活性的研究。研究了化合物对恶性疟原虫3D7(一种氯喹敏感菌株)和恶性疟原虫W2(一种氯喹耐药克隆)的体外抑制活性。并对氯喹与各化合物单独联用对恶性疟原虫W2的活性进行了评价。此外,用计算机评价了活性化合物(1和4)与选定的恶性疟原虫蛋白(PfProteins)的相互作用。结果显示,仅有1株和4株对恶性疟原虫3D7和W2有活性。2和3也不表现出氯喹抗性逆转活性。当氯喹浓度高于0.625µg/mL时,对恶性疟原虫W2的抑制活性提高了1倍3200%。此外,与氯喹相比,1和4与选定的PfProteins表现出相似的结合模式和更高的结合倾向。因此,1 (iloneoside)是一种抗疟妊娠糖苷,可以增强氯喹对多重耐药恶性疟原虫的活性。
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来源期刊
CiteScore
2.90
自引率
0.00%
发文量
51
审稿时长
63 days
期刊介绍: The journal provides a medium for rapid publication of investigations of the molecular biology and biochemistry of parasitic protozoa and helminths and their interactions with both the definitive and intermediate host. The main subject areas covered are: • the structure, biosynthesis, degradation, properties and function of DNA, RNA, proteins, lipids, carbohydrates and small molecular-weight substances • intermediary metabolism and bioenergetics • drug target characterization and the mode of action of antiparasitic drugs • molecular and biochemical aspects of membrane structure and function • host-parasite relationships that focus on the parasite, particularly as related to specific parasite molecules. • analysis of genes and genome structure, function and expression • analysis of variation in parasite populations relevant to genetic exchange, pathogenesis, drug and vaccine target characterization, and drug resistance. • parasite protein trafficking, organelle biogenesis, and cellular structure especially with reference to the roles of specific molecules • parasite programmed cell death, development, and cell division at the molecular level.
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