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Synthesis, characterization, and immune efficacy of layered double hydroxide@SiO2 nanoparticles with shell-core structure as a delivery carrier for Newcastle disease virus DNA vaccine

机译:具有壳核结构的层状双氢氧化物@ SiO2纳米颗粒作为新城疫病毒DNA疫苗的传递载体的合成,表征和免疫功效

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Abstract: Layered double hydroxide (LDH)@SiO2 nanoparticles were developed as a delivery carrier for the plasmid DNA expressing the Newcastle disease virus F gene. The LDH was hydrotalcite-like materials. The plasmid DNA encapsulated in the LDH@SiO2 nanoparticles (pFDNA-LDH@SiO2-NPs) was prepared by the coprecipitation method, and the properties of pFDNA-LDH@SiO2-NPs were characterized by transmission electron microscopy, zeta potential analyzer, Fourier transform infrared spectroscopy, and X-ray diffraction analysis. The results demonstrated that the pFDNA-LDH@SiO2-NPs had a regular morphology and high stability with a mean diameter of 371.93 nm, loading capacity of 39.66%±0.45%, and a zeta potential of +31.63 mV. A release assay in vitro showed that up to 91.36% of the total plasmid DNA could be sustainably released from the pFDNA-LDH@SiO2-NPs within 288 hours. The LDH@SiO2 nanoparticles had very low toxicity. Additionally, their high transfection efficiency in vitro was detected by fluorescent microscopy. Intranasal immunization of specific pathogen-free chickens with pFDNA-LDH@SiO2-NPs induced stronger cellular, humoral, and mucosal immune responses and achieved a greater sustained release effect than intramuscular naked plasmid DNA, and the protective efficacy after challenge with the strain F48E9 with highly virulent (mean death time of chicken embryos ≤60 hours, intracerebral pathogenicity index in 1 -day-old chickens >1.6) was 100%. Based on the results, LDH@SiO2 nanoparticles can be used as a delivery carrier for mucosal immunity of Newcastle disease DNA vaccine, and have great application potential in the future.
机译:摘要:研究了层状双氢氧化物(LDH)@ SiO2纳米粒作为表达新城疫病毒F基因质粒DNA的载体。 LDH是类水滑石材料。采用共沉淀法制备了包裹在LDH @ SiO2纳米颗粒中的质粒DNA(pFDNA-LDH @ SiO2-NPs),并通过透射电镜,ζ电势分析仪,傅里叶变换对pFDNA-LDH @ SiO2-NPs进行了表征。红外光谱和X射线衍射分析。结果表明,pFDNA-LDH @ SiO2-NPs具有规则的形态和较高的稳定性,平均直径为371.93 nm,负载能力为39.66%±0.45%,ζ电位为+31.63 mV。体外释放试验表明,在288小时内,可从pFDNA-LDH @ SiO2-NPs持续释放高达91.36%的质粒DNA。 LDH @ SiO2纳米颗粒的毒性非常低。此外,通过荧光显微镜检测到它们在体外的高转染效率。用pFDNA-LDH @ SiO2-NP对特定的无病原体的鸡进行鼻内免疫诱导的细胞,体液和粘膜免疫反应更强,并且比肌肉内裸质粒DNA产生更大的持续释放效果,以及用F48E9菌株攻击后的保护功效。高毒力(鸡胚平均死亡时间≤60小时,1日龄鸡的脑致病性指数> 1.6)为100%。基于上述结果,LDH @ SiO2纳米颗粒可作为新城疫DNA疫苗粘膜免疫的载体,在未来具有广阔的应用前景。

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