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铜纳米粒子:生物合成、特性鉴定,以及单独和联合阿苯达唑对包虫蚴原头节的杀原头节效果。

Copper nanoparticles: Biosynthesis, characterization, and protoscolicidal effects alone and combined with albendazole against hydatid cyst protoscoleces.

机构信息

Department of Laboratory Sciences, Sirjan School of Medical Sciences, Sirjan, Iran.

Department of Microbiology, College of Medicine, University of Thiqar, Thiqar, Iraq.

出版信息

Biomed Pharmacother. 2021 Apr;136:111257. doi: 10.1016/j.biopha.2021.111257. Epub 2021 Jan 12.

Abstract

BACKGROUND

Surgery remains the preferred treatment option for hydatid cyst (cystic echinococcosis); however, recent studies have demonstrated that the current protoscolicidal agents used during surgery are associated with some adverse side effects such as biliary fibrosis, hepatic necrosis, and cirrhosis. The present study aims to evaluate the in vitro and ex vivo anti-parasitic effects of copper nanoparticles (CuNPs) alone and combined with albendazole on hydatid cyst protoscoleces.

METHODS

CuNPs was green synthesized using C. spinosa extract. Various concentrations of CuNPs (250, 500, and 750 mg/mL) alone and combined with albendazole (ALZ, 200 mg/mL) were exposed to protoscoleces collected from the liver fertile hydatid cysts of infected sheep for 5-60 min in vitro and ex vivo. Next, the eosin exclusion test was applied to determine the viability of protoscoleces. Caspase-3 like activity of CuNPs-treated protoscoleces was then evaluated using the colorimetric protease assay Sigma Kit based on the manufacturer's instructions.

RESULTS

Scanning electron microscopy (SEM) results showed that the particle size of CuNPs was 17 and 41 nm with the maximum peak at the wavelength of 414 nm. The maximum protoscolicidal activity of CuNPs was observed at the concentration of 750 mg/mL in vitro, so that 73.3 % of protoscoleces were killed after 60 min of exposure. Meanwhile, the mortality of protoscoleces was 100 % after 10 min of exposure to 750 mg/mL of CuNPs along with ALZ (200 mg/mL). Nevertheless, the findings proved that CuNPs even in combination with ALZ required a longer time to kill protoscoleces ex vivo. After 48 h of treating protoscoleces, CuNPs in a dose-dependent manner and at doses of 250, 500, and 750 mg/mL induced the caspase enzyme activation by 20.5 %, 32.3 %, and 36.1 %, respectively.

CONCLUSION

The findings of the present investigation showed potent protoscolicidal effects of CuNPs, especially combined with albendazole, which entirely eliminated the parasite after 10-20 min of exposure. The results also showed that although the possible protoscolicidal mechanisms of CuNPs are not clearly understood, the inducing apoptosis through caspases is one of the main protoscolicidal mechanisms of CuNPs. However, supplementary studies, especially in animal models and clinical settings, are needed to approve these results.

摘要

背景

手术仍然是治疗包虫囊肿(囊性包虫病)的首选方法;然而,最近的研究表明,手术中使用的当前原头蚴杀虫药物与一些不良副作用有关,如胆管纤维化、肝坏死和肝硬化。本研究旨在评估铜纳米粒子(CuNPs)单独使用和与阿苯达唑联合使用对肝包虫囊肿原头蚴的体外和离体抗寄生虫作用。

方法

使用 C. spinosa 提取物绿色合成 CuNPs。将不同浓度的 CuNPs(250、500 和 750 mg/mL)单独和与阿苯达唑(ALZ,200 mg/mL)联合暴露于从感染绵羊肝脏有活力的包虫囊肿中收集的原头蚴 5-60 分钟,在体外和离体条件下。然后,应用伊红排除试验来确定原头蚴的活力。然后根据制造商的说明,使用比色蛋白酶测定试剂盒 Sigma 试剂盒评估 CuNPs 处理的原头蚴中的半胱天冬氨酸蛋白酶样活性。

结果

扫描电子显微镜(SEM)结果表明,CuNPs 的粒径为 17 和 41nm,最大峰值在 414nm 处。CuNPs 的最大原头蚴杀伤活性在体外浓度为 750mg/mL 时观察到,因此暴露 60 分钟后 73.3%的原头蚴被杀死。同时,在用 750mg/mL 的 CuNPs 联合 ALZ(200mg/mL)处理 10 分钟后,原头蚴的死亡率为 100%。然而,研究结果证明,即使 CuNPs 与 ALZ 联合使用,也需要更长的时间才能杀死离体原头蚴。在用 CuNPs 处理原头蚴 48 小时后,CuNPs 以剂量依赖性方式并以 250、500 和 750mg/mL 的剂量分别诱导了 20.5%、32.3%和 36.1%的半胱天冬氨酸蛋白酶的激活。

结论

本研究的结果表明,CuNPs 具有很强的原头蚴杀伤作用,尤其是与阿苯达唑联合使用时,在 10-20 分钟的暴露后完全消除寄生虫。结果还表明,尽管 CuNPs 的可能原头蚴杀伤机制尚不清楚,但通过半胱天冬氨酸蛋白酶诱导细胞凋亡是 CuNPs 的主要原头蚴杀伤机制之一。然而,需要进行补充研究,特别是在动物模型和临床环境中,以证实这些结果。

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