Basic Sciences Department, Deanship of Preparatory Year, University of Ha'il, Hail 2240, Saudi Arabia; Faculty of Biotechnology, October University for Modern Science and Arts, Giza 12451, Egypt.
Basic Sciences Department, Deanship of Preparatory Year, University of Ha'il, Hail 2240, Saudi Arabia.
J Integr Med. 2022 Jan;20(1):65-72. doi: 10.1016/j.joim.2021.11.002. Epub 2021 Nov 7.
The chemo-preventative and therapeutic properties of selenium nanoparticles (SeNPs) have been documented over recent decades and suggest the potential uses of SeNPs in medicine. Biogenic SeNPs have higher biocompatibility and stability than chemically synthesized nanoparticles, which enhances their medical applications, especially in the field of cancer therapy. This study evaluated the potential of green-synthetized SeNPs by using berberine (Ber) as an antitumor agent and elucidated the mechanism by which these molecules combat Ehrlich solid tumors (ESTs).
SeNPs containing Ber (SeNPs-Ber) were synthesized using Ber and NaSeO and characterized with Fourier transform infrared spectroscopy. Sixty male Swiss albino mice were then acclimatized for one week, injected with Ehrlich ascites tumor cells, and divided into four groups: EST, EST + cisplatin (5 mg/kg), EST + Ber (20 mg/kg), and EST + SeNPs-Ber (0.5 mg/kg). At the end of a 16-day observation period, 12 mice from each group were euthanized to analyze differences in the body weight, tumor size, gene expression, and oxidative stress markers in the four groups. Three mice from each group were kept alive to compare the survival rates.
Treatment with SeNPs-Ber significantly improved the survival rate and decreased the body weight and tumor size, compared to the EST group. SeNPs-Ber reduced oxidative stress in tumor tissue, as indicated by a decrease in the lipid peroxidation and nitric oxide levels and an increase in the glutathione levels. Moreover, SeNPs-Ber activated an apoptotic cascade in the tumor cells by downregulating the B-cell lymphoma 2 (Bcl-2) expression rate and upregulating the Bcl-2-associated X protein and caspase-3 expression rates. SeNPs-Ber also considerably improved the histopathological alterations in the developed tumor tissue, compared to the EST group.
Our study provides a new insight into the potential role of green-synthesized SeNPs by using Ber as a promising anticancer agent, these molecules could be used alone or as supplementary medication during chemotherapy.
近几十年来,已有研究证明了硒纳米粒子(SeNPs)的化学预防和治疗特性,这表明 SeNPs 在医学领域具有潜在的应用价值。与化学合成的纳米粒子相比,生物合成的 SeNPs 具有更高的生物相容性和稳定性,这增强了它们在医学中的应用,特别是在癌症治疗领域。本研究通过使用小檗碱(Ber)作为抗肿瘤药物来评估绿色合成的 SeNPs 的潜力,并阐明了这些分子对抗艾氏腹水瘤(ESTs)的作用机制。
使用 Ber 和 NaSeO 合成含 Ber 的 SeNPs(SeNPs-Ber),并采用傅里叶变换红外光谱进行表征。然后,将 60 只雄性瑞士白化病小鼠适应环境 1 周,注射艾氏腹水瘤细胞,并分为四组:EST、EST+顺铂(5mg/kg)、EST+Ber(20mg/kg)和 EST+SeNPs-Ber(0.5mg/kg)。在 16 天的观察期结束时,每组处死 12 只小鼠,分析四组小鼠的体重、肿瘤大小、基因表达和氧化应激标志物的差异。每组保留 3 只小鼠以比较存活率。
与 EST 组相比,SeNPs-Ber 治疗显著提高了存活率,降低了体重和肿瘤大小。SeNPs-Ber 降低了肿瘤组织中的氧化应激,表现为脂质过氧化和一氧化氮水平降低,谷胱甘肽水平升高。此外,SeNPs-Ber 通过下调 B 细胞淋巴瘤 2(Bcl-2)表达率,上调 Bcl-2 相关 X 蛋白和半胱天冬酶-3 表达率,激活肿瘤细胞中的凋亡级联。与 EST 组相比,SeNPs-Ber 还显著改善了肿瘤组织的组织病理学改变。
本研究通过使用 Ber 作为有前途的抗癌药物,为绿色合成的 SeNPs 的潜在作用提供了新的见解,这些分子可单独使用或作为化疗的辅助药物。