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Samarium enriches antitumor activity of ZnO nanoparticles via downregulation of CXCR4 receptor and cytochrome P450

机译:钐通过CXCR4受体的下调和细胞色素P450富集ZnO纳米粒子的抗肿瘤活性

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Cancer is the leading cause of death and exhausts human and economic resources for treatment and protection. Zinc oxide nanoparticles play an effective role in tumor treatment but with some cautions, such as overexpression of cytochrome P450, hepatic overload, and the mammalian target of rapamycin pathway resistance. Although lanthanides have antitumor activity, their use is limited. Therefore, the current study aims to improve the effectiveness of zinc oxide nanoparticle via doping with lanthanides, such as samarium. In vitro study revealed that samarium doped with zinc oxide showed more antitumor activity than the other lanthanides, and the antitumor activity depends on the concentration of samarium in the nanocomposite. The in vivo experiment on mice bearing Ehrlich solid tumor revealed that intramuscular injection of samarium/zinc oxide downregulates the expressions of CXCR4 and PI3K/Akt/mammalian target of rapamycin pathway in respect to Ehrlich solid tumor group. Regarding the apoptotic biomarkers, samarium/zinc oxide upregulates the apoptotic biomarker; Bax accompanied with the mitotic catastrophe which was indicated by cell cycle arrest in G2 phase. Moreover, samarium:zinc oxide nanoparticles exhibited minimum toxicity which was indicated by suppressed activities of cytochrome P450 and hepatic enzymes, including alanine transaminase and aspartate transaminase. In addition, the histopathological finding, as well as immunophenotyping results, appreciated the biochemical finding. Therefore, samarium:zinc oxide might be offered a new approach to improve the effectiveness of zinc oxide nanoparticles along with lower toxic effect. Also, samarium:zinc oxide nanoparticles can be a candidate as a new antitumor compound to detect its mode of action.
机译:癌症是死亡的主要原因,疲惫的人类和经济资源治疗和保护。氧化锌纳米颗粒在肿瘤治疗中起着有效作用,但用一些注意事项,例如过表达细胞色素P450,肝脏过载和哺乳动物途径途径的哺乳动物靶向。虽然镧系有抗肿瘤活性,但它们的使用受到限制。因此,目前的研究旨在通过掺杂含镧,例如钐来改善氧化锌纳米颗粒的有效性。体外研究表明,掺杂有氧化锌的钐显示比其他镧系元素更高的抗肿瘤活性,并且抗肿瘤活性取决于纳米复合材料中钐的浓度。轴承EHRLICH固体肿瘤的小鼠体内实验表明,肌内注射钐/氧化锌在eHRLICH固体瘤型关于EHRLICH固体瘤途径上的CXCR4和PI3K / AKT /哺乳动物靶标的表达。关于凋亡生物标志物,钐/氧化锌上调凋亡生物标志物; Bax伴随着薄虫灾难,该灾难由G2相中的细胞周期停滞表示。此外,钐:氧化锌纳米颗粒表现出最小的毒性,其通过抑制细胞色素P450和肝酶的抑制活性,包括丙氨酸转氨酶和天冬氨酸转氨酶。此外,组织病理学发现以及免疫表型结果,赞赏生物化学发现。因此,钐:氧化锌可以提供一种提高氧化锌纳米颗粒的有效性以及较低毒性效应的新方法。此外,钐:氧化锌纳米颗粒可以是候选物作为新的抗肿瘤化合物,以检测其作用方式。

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