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植物合成和化学合成的银/勃姆石纳米复合材料对细粒棘球蚴原头蚴的杀幼虫和凋亡作用。

Scolicidal and apoptotic effects of phyto- and chemically synthesized silver/boehmite nanocomposites on Echinococcus granulosus protoscoleces.

机构信息

Department of Organic and Biochemistry, Faculty of Chemistry, University of Tabriz, Tabriz, Iran.

Department of Organic and Biochemistry, Faculty of Chemistry, University of Tabriz, Tabriz, Iran; Research Institute of Bioscience and Biotechnology, University of Tabriz, Tabriz, Iran.

出版信息

Biomater Adv. 2024 Feb;157:213723. doi: 10.1016/j.bioadv.2023.213723. Epub 2023 Dec 4.

Abstract

Cystic hydatid disease (CHD) is a zoonotic disease caused by the larval stage of Echinococcus granulosus (E. granulosus). This study aimed to synthesize silver nanoparticles (Ag NPs), silver boehmite nanocomposite (Ag/Bhm NC), and silver boehmite nanocomposite modified with chitosan (Ag/Bhm/Chit NC) using Rosmarinus officinalis (R. officinalis) extract and chemical method, and to evaluate their scolicidal and apoptotic effects on protoscoleces (PSCs) in vitro. The nanomaterials (NMs) were characterized by XRD, FTIR, FESEM, EDS, DLS, PDI, and zeta potential (ZP). The NMs were tested against PSCs at different concentrations (0.2-1.6 mg/mL) and exposure times (10-60 min). The size of Ag NPs, phytosynthesized Ag/Bhm NC, Ag/Bhm/Chit NC, and chemically synthesized Ag/Bhm NC were 25.55, 43, 72.3, and 60.8 nm, respectively. Ag NPs and phytosynthesized Ag/Bhm NC showed the highest scolicidal effect, with 65.34 % and 51.60 % mortality rate at 1.6 mg/mL and 60 min, respectively. Caspase-3 mRNA expression was higher in PSCs treated with Ag NPs and Ag/Bhm NC than in control groups (P < 0.05). Phytosynthesized Ag/Bhm NC had stronger scolicidal and apoptotic effect than chemically synthesized Ag/Bhm NC. Ag/Bhm/Chit NC had a weaker scolicidal effect but higher gene expression than Ag/Bhm NC. In conclusion, this study demonstrates the potential of phytosynthesized Ag NPs and Ag/Bhm NC as effective scolicidal and apoptotic agents against PSCs of hydatid cysts, which may be useful for the treatment of this disease.

摘要

棘球蚴病(CHD)是一种由细粒棘球绦虫(E. granulosus)幼虫期引起的人畜共患疾病。本研究旨在使用迷迭香(R. officinalis)提取物和化学方法合成银纳米粒子(Ag NPs)、银勃姆石纳米复合物(Ag/Bhm NC)和壳聚糖修饰的银勃姆石纳米复合物(Ag/Bhm/Chit NC),并评估它们对原头蚴(PSCs)的杀囊和凋亡作用。纳米材料(NMs)通过 XRD、FTIR、FESEM、EDS、DLS、PDI 和 ZP 进行表征。将 NMs 在不同浓度(0.2-1.6 mg/mL)和暴露时间(10-60 min)下进行测试。Ag NPs 和植物合成的 Ag/Bhm NC 的大小分别为 25.55、43、72.3 和 60.8 nm。Ag NPs 和植物合成的 Ag/Bhm NC 表现出最高的杀囊效果,在 1.6 mg/mL 和 60 min 时死亡率分别为 65.34%和 51.60%。与对照组相比,用 Ag NPs 和 Ag/Bhm NC 处理的原头蚴中 Caspase-3 mRNA 的表达更高(P < 0.05)。植物合成的 Ag/Bhm NC 比化学合成的 Ag/Bhm NC 具有更强的杀囊和凋亡作用。Ag/Bhm/Chit NC 的杀囊效果较弱,但基因表达高于 Ag/Bhm NC。综上所述,本研究表明植物合成的 Ag NPs 和 Ag/Bhm NC 作为针对棘球蚴原头蚴的有效杀囊和凋亡剂具有潜力,这可能对治疗这种疾病有用。

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