Universidad Nacional de Córdoba, Facultad de Ciencias Médicas, Instituto de Virología "Dr. J. M. Vanella", Cdad. Universitaria, Córdoba X5000HUA, Argentina; Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Argentina.
Universidad Nacional de Córdoba, Facultad de Ciencias Químicas, Departamento de Ciencias Farmacéuticas, Farmacognosia. Haya de la Torre y Medina Allende, Ciudad Universitaria, Córdoba X5000HUA, Argentina; Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Instituto Multidisciplinario de Biología Vegetal (IMBIV), Av. Vélez Sarsfield 1666. CP, Córdoba X5016GCN, Argentina.
Phytomedicine. 2022 Nov;106:154424. doi: 10.1016/j.phymed.2022.154424. Epub 2022 Sep 2.
Dengue virus (DENV) is considered one of the most important pathogens in the world causing 390 million infections each year. Currently, the development of vaccines against DENV presents some shortcomings and there is no antiviral therapy available for its infection. An important challenge is that both treatments and vaccines must be effective against all four DENV serotypes. Nordihydroguaiaretic acid (NDGA), isolated from Larrea divaricata Cav. (Zygophyllaceae) has shown a significant inhibitory effect on a broad spectrum of viruses, including DENV serotypes 2 and 4.
We evaluated the in vitro virucidal and antiviral activity of NDGA on DENV serotype 1 (DENV1), including the study of its mechanism of action, to provide more evidence on its antiviral activity.
The viability of viral particles was quantified by the plaque-forming unit reduction method. NDGA effects on DENV1 genome and viral proteins were evaluated by qPCR and immunofluorescence, respectively. Lysosomotropic activity was assayed using acridine orange and neutral red dyes.
NDGA showed in vitro virucidal and antiviral activity against DENV1. The antiviral effect would be effective within the first 2 h after viral internalization, when the uncoating process takes place. In addition, we determined by qPCR that NDGA decreases the amount of intracellular RNA of DENV1 and, by immunofluorescence, the number of cells infected. These results indicate that the antiviral effect of NDGA would have an intracellular mechanism of action, which is consistent with its ability to be incorporated into host cells. Considering the inhibitory activity of NDGA on the cellular lipid metabolism, we compared the antiviral effect of two inhibitors acting on two different pathways of this type of metabolism: 1) resveratrol that inhibits the sterol regulatory element of binding proteins, and 2) caffeic acid that inhibits the 5-lipoxygenase (5-LOX) enzyme. Only caffeic acid produced an inhibitory effect on DENV1 infection. We studied the lysosomotropic activity of NDGA on host cells and found, for the first time, that this compound inhibited the acidification of cell vesicles which would prevent DENV1 uncoating process.
The present work contributes to the knowledge of NDGA activity on DENV. We describe its activity on DENV1, a serotype different to those that have been already reported. Moreover, we provide evidence on which stage/s of the viral replication cycle NDGA exerts its effects. We suggest that the mechanism of action of NDGA on DENV1 is related to its lysosomotropic effect, which inhibits the viral uncoating process.
登革病毒(DENV)被认为是世界上最重要的病原体之一,每年导致 3.9 亿例感染。目前,针对 DENV 的疫苗开发存在一些缺点,并且没有针对其感染的抗病毒疗法。一个重要的挑战是,治疗方法和疫苗都必须对所有四种 DENV 血清型有效。从 Larrea divaricata Cav.(Zygophyllaceae)中分离出的 Nordihydroguaiaretic acid(NDGA)对广谱病毒表现出显著的抑制作用,包括 DENV 血清型 2 和 4。
我们评估了 NDGA 对 DENV 血清型 1(DENV1)的体外病毒杀灭和抗病毒活性,包括研究其作用机制,为其抗病毒活性提供更多证据。
通过噬斑减少法定量测定病毒颗粒的存活率。通过 qPCR 和免疫荧光分别评估 NDGA 对 DENV1 基因组和病毒蛋白的影响。使用吖啶橙和中性红染料测定溶酶体趋药性。
NDGA 对 DENV1 表现出体外病毒杀灭和抗病毒活性。抗病毒作用将在病毒内化后 2 小时内有效,此时发生脱壳过程。此外,我们通过 qPCR 确定 NDGA 减少了 DENV1 细胞内 RNA 的数量,并且通过免疫荧光确定了感染细胞的数量。这些结果表明,NDGA 的抗病毒作用具有细胞内作用机制,这与其能够进入宿主细胞一致。考虑到 NDGA 对细胞脂质代谢的抑制活性,我们比较了两种作用于这种代谢途径的不同途径的抑制剂的抗病毒作用:1)白藜芦醇,抑制固醇调节元件结合蛋白,和 2)咖啡酸,抑制 5-脂氧合酶(5-LOX)酶。只有咖啡酸对 DENV1 感染产生抑制作用。我们研究了 NDGA 对宿主细胞的溶酶体趋药性,首次发现该化合物抑制了细胞囊泡的酸化,这将阻止 DENV1 的脱壳过程。
本工作有助于了解 NDGA 对 DENV 的活性。我们描述了它对 DENV1 的活性,这是一种与已报道的不同的血清型。此外,我们提供了 NDGA 对病毒复制周期的哪个阶段/阶段发挥作用的证据。我们认为,NDGA 对 DENV1 的作用机制与其溶酶体趋药性有关,该作用抑制了病毒的脱壳过程。