Antiparasitic Effects and Cellular Mechanisms of Formononetin (a Natural Isoflavone) Against Hydatid Cyst Protoscoleces

IF 1 Q4 PHARMACOLOGY & PHARMACY Jundishapur Journal of Natural Pharmaceutical Products Pub Date : 2023-03-30 DOI:10.5812/jjnpp-129302
Setareh Dastyar Haghighi, Amal Khudair Khalaf, H. Mahmoudvand, A. Adineh, Ali Mohammad Maleki, Javad Ghasemian Yadegari
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Abstract

Background: The chemical agents applied to reduce the complications of hydatid cyst surgery are not free of side effects. Formononetin (FMN), as a natural isoflavone, has been shown to have various therapeutic benefits. Objectives: We studied the in vitro and ex vivo protoscolicidal activity and cellular mechanisms of FMN against hydatid cyst protoscoleces. Methods: Formononetin at 75, 150, and 300 μg/mL was mixed with hydatid cyst protoscoleces (103/mL), and the viability was determined in 5 to 60 min through eosin staining assay. The effect of FMN on caspase-3 activity was tested through a commercial colorimetric protease kit. In addition, the penetrability of the plasma membrane of protoscoleces after exposure to FMN was also determined by the SYTOX assay. Results: Formononetin at 300 μg/mL completely destroyed hydatid cyst protoscoleces after 30 minutes. While at 150 μg/mL, after 60 minutes of contact, 100% of protoscoleces were eliminated. By ex vivo assay, FMN showed its antiparasitic effect for longer periods. Based on these results, FMN at 300 μg/mL concentration completely eliminated hydatid cyst protoscoleces after 60 minutes of exposure. While at a concentration of 150 μg/mL after 60 minutes, 89.6% of protoscoleces were destroyed. Formononetin noticeably increased (P < 0.001) the activity of caspase-3 and the permeability of protoscoleces dose-dependently. Conclusions: Formononetin as a natural product showed promising effects on the protoscoleces of hydatid cysts, indicating that it can be considered a valuable scolicidal agent. However, additional investigations are necessary to evaluate its efficacy in animal models and human subjects.
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Formononetin(一种天然的异黄酮)对棘球蚴的抗寄生虫作用及其细胞机制
背景:用于减少棘球蚴手术并发症的化学制剂并非没有副作用。马齿苋素(FMN)作为一种天然异黄酮,已被证明具有多种治疗作用。目的:研究FMN对棘球蚴原头节的体外和离体原头节活性及细胞机制。方法:将75、150和300μg/mL的Formononetin与103个/mL的棘球蚴混合,用伊红染色法在5~60min内测定其活力。通过商业比色蛋白酶试剂盒测试FMN对胱天蛋白酶-3活性的影响。此外,还通过SYTOX测定法测定了FMN暴露后原头节细胞质膜的穿透性。结果:300μg/mL的甲素在30分钟后完全破坏了棘球蚴的原头节。而在150μg/mL下,接触60分钟后,100%的原头节被消除。离体实验表明,FMN具有较长时间的抗寄生虫作用。基于这些结果,300μg/mL浓度的FMN在暴露60分钟后完全消除了棘球蚴原头节。当浓度为150μg/mL时,60分钟后,89.6%的原头节被破坏。Formononetin显著增加胱天蛋白酶-3的活性和原皮质的通透性(P<0.001)。结论:Formononetin作为一种天然产物,对棘球蚴囊肿的原头节有很好的治疗作用,是一种有价值的治疗棘球蚴病的药物。然而,还需要进一步的研究来评估其在动物模型和人类受试者中的疗效。
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CiteScore
1.40
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0.00%
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26
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