Key Laboratory of Health Risk Factors for Seafood of Zhejiang Province, College of Food Science and Pharmacy, Zhejiang Ocean University, Zhoushan 316000, China.
College of Marine Science and Technology, Zhejiang Ocean University, Zhoushan 316000, China.
Mar Drugs. 2018 Jan 11;16(1):23. doi: 10.3390/md16010023.
The nanocomposite of half-fin anchovy hydrolysates (HAHp) and zinc oxide nanoparticles (ZnO NPs) (named as HAHp(3.0)/ZnO NPs) demonstrated increased antibacterial activity compared to either HAHp(3.0) or ZnO NPs as per our previous studies. Also, reactive oxygen species (ROS) formation was detected in cells after treatment with HAHp(3.0)/ZnO NPs. The aim of the present study was to evaluate the acute toxicity of this nanocomposite and to investigate its effect on intestinal microbiota composition, short-chain fatty acids (SCFAs) production, and oxidative status in healthy mice. The limit test studies show that this nanoparticle is non-toxic at the doses tested. The administration of HAHp(3.0)/ZnO NPs, daily dose of 1.0 g/kg body weight for 14 days, increased the number of goblet cells in jejunum. High-throughput 16S ribosomal RNA gene sequencing of fecal samples revealed that HAHp(3.0)/ZnO NPs increased Firmicutes and reduced Bacteriodetes abundances in female mice. Furthermore, the microbiota for probiotic-type bacteria, including and , and SCFAs-producing bacteria in the Clostridia class, e.g., and , were enriched in the feces of female mice. Increases of SCFAs, especially statistically increased propionic and butyric acids, indicated the up-regulated anti-inflammatory activity of HAHp(3.0)/ZnO NPs. Additionally, some positive responses in liver, like markedly increased glutathione and decreased malonaldehyde contents, indicated the improved oxidative status. Therefore, our results suggest that HAHp(3.0)/ZnO NPs could have potential applications as a safe regulator of intestinal microbiota or also can be used as an antioxidant used in food products.
半滑舌鳎鱼水解物(HAHp)和氧化锌纳米粒子(ZnO NPs)的纳米复合物(命名为 HAHp(3.0)/ZnO NPs)与我们之前的研究相比,表现出了更强的抗菌活性。此外,在细胞中还检测到了活性氧(ROS)的形成。本研究的目的是评估这种纳米复合物的急性毒性,并研究其对健康小鼠肠道微生物群落组成、短链脂肪酸(SCFAs)产生和氧化状态的影响。极限试验研究表明,该纳米颗粒在测试剂量下没有毒性。给予 HAHp(3.0)/ZnO NPs,每天 1.0 g/kg 体重,连续 14 天,可增加空肠中的杯状细胞数量。粪便样本的高通量 16S 核糖体 RNA 基因测序显示,HAHp(3.0)/ZnO NPs 增加了雌性小鼠的厚壁菌门数量,减少了拟杆菌门数量。此外,HAHp(3.0)/ZnO NPs 还富集了粪便中的拟杆菌属和双歧杆菌属等益生菌型细菌,以及梭菌属等产 SCFAs 的细菌。SCFAs 的增加,特别是丙酸和丁酸的显著增加,表明 HAHp(3.0)/ZnO NPs 具有上调的抗炎活性。此外,肝脏中一些积极的反应,如谷胱甘肽含量显著增加和丙二醛含量降低,表明氧化状态得到了改善。因此,我们的结果表明,HAHp(3.0)/ZnO NPs 具有作为肠道微生物群调节剂的应用潜力,也可以作为食品中的抗氧化剂使用。