State Key Laboratory of Silkworm Genome Biology, Southwest University, Chongqing 400716, China.
Key Laboratory of Sericultural Biology and Genetic Breeding, Ministry of Agricultureand Rural Affairs, Southwest University, Chongqing 400716, China.
Int J Mol Sci. 2022 Jun 5;23(11):6325. doi: 10.3390/ijms23116325.
nucleopolyhedrovirus (BmNPV) causes major economic losses in sericulture. A number of agents have been employed to treat viral diseases. Silver nanoparticles (AgNPs) have wide applications in biomedical fields due to their unique properties. The anti-BmNPV effect of AgNPs has been evaluated, however, there are insufficient studies concerning its toxicity to other organisms and the environment. We chemically synthesized biocompatible BSA-AgNPs with a diameter range of 2-4 nm and characterized their physical properties. The toxicity of AgNPs towards cells and larvae with different concentrations was examined; the results indicated a biofriendly effect on cells and larvae within specific concentration ranges. The SEM observation of the surface of BmNPV after treatment with AgNPs suggested that AgNPs could destroy the polyhedral structure, and the same result was obtained by Coomassie blue staining. Further assays confirmed the weakened virulence of AgNPs-treated BmNPV toward cells and larvae. AgNPs also could effectively inhibit the replication of BmNPV in infected cells and larvae. In summary, our research provides valuable data for the further development of AgNPs as an antiviral drug for sericulture.
核多角体病毒(BmNPV)给蚕业造成了重大的经济损失。已经有许多药剂被用于治疗病毒疾病。由于其独特的性质,银纳米粒子(AgNPs)在生物医学领域有广泛的应用。AgNPs 的抗 BmNPV 效果已经得到了评估,然而,关于其对其他生物和环境的毒性的研究还不够充分。我们通过化学方法合成了具有 2-4nm 直径范围的生物相容性 BSA-AgNPs,并对其物理性质进行了表征。AgNPs 对不同浓度的细胞和幼虫的毒性进行了检测;结果表明在特定浓度范围内对细胞和幼虫具有生物友好效应。用 AgNPs 处理后 BmNPV 表面的 SEM 观察表明,AgNPs 可以破坏多角体结构,考马斯亮蓝染色也得到了同样的结果。进一步的实验证实了 AgNPs 处理的 BmNPV 对细胞和幼虫的毒力减弱。AgNPs 还可以有效地抑制感染细胞和幼虫中 BmNPV 的复制。总之,我们的研究为进一步开发 AgNPs 作为蚕业抗病毒药物提供了有价值的数据。