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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Hepatitis B-surface antigen (HBsAg) vaccine fabricated chitosan-polyethylene glycol nanocomposite (HBsAg-CS-PEG- NC) preparation, immunogenicity, controlled release pattern, biocompatibility or non-target toxicity
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Hepatitis B-surface antigen (HBsAg) vaccine fabricated chitosan-polyethylene glycol nanocomposite (HBsAg-CS-PEG- NC) preparation, immunogenicity, controlled release pattern, biocompatibility or non-target toxicity

机译:乙型肝炎表面抗原(HBsAg)疫苗制备壳聚糖 - 聚乙二醇纳米复合材料(HBsAg-CS-PEG-NC)制剂,免疫原性,控释图案,生物相容性或非靶标毒性

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摘要

Antigen delivery framework utilising polymer-based nanomaterial is broadly used in biomedicine because of their high efficacy, antigenicity and biocompatibility. In this study, hepatitis B surface antigen fabricated chitosan-polyethylene glycol nanocomposite (HBsAg-CS-PEG NC) was prepared by in situ ionic gelation method which brought about highly stable nanoformulation that was characterised by electron microscopy, atomic force microscopy (AFM) Fourier transform infrared spectroscopy (FTIR). Particles morphology by electron microscopy studies reveals spherical, electron-dense, nanostructure with 100-120 nm. AFM studies show a uniform distribution of particles with distinct roughness. Specific interaction of polymers with the vaccine or surface modification and functionalization were confirmed by FTIR analysis. Synthesised nanocomposite exhibited high antigen loading and entrapment efficiency. Release profile study carried out under in vitro condition indicates that a gradual increase in release at increasing time intervals which confirms noteworthy stability and release pattern. Enhanced immunogenicity of the nanocomposite was determined by induction of rosette formation and rate of phagocytosis using T cell rosette formation assay (TCRF assay) and mouse leukemic monocyte macrophage phagocytosis assay. Notable enhancement on rosette formation and phagocytosis percentage was recorded in nanocomposite treatment as dose-dependent manner. Biocompatibility or non-target effect was done by evaluating acute or subacute toxicity against Wistar rat model and hemocompatibility. Hemocompatibility was measured by determination of hemolysis, antioxidative enzymes, erythrocytes aggregation and serum protein profiling. No sign of toxicity and mortality was observed in all the tested parameters of nanocomposite treated animal model. Hemocompatibility studies indicate that nanocomposite treatment was not shown hemolysis, changes in antioxidative enzymes and serum protein profiling which all confirms the best biocompatibility of the synthesised nanocomposite. Phytotoxic effect of the nanocomposite studied with Vigna mango, Vigna radiata) and Brassica nigra seeds indicate that the nanocomposite treatment was not affecting seedlings emergence or germination index. All these findings unmistakably uncover that the nanocomposite fabricated HBsAg vaccine nanoformulation utilised as a successful immunising agent which constructed from its high immunogenic property and best biocompatibility against appropriate test model framework and investigated another sight in inoculation immunology part. (C) 2019 Elsevier B.V. All rights reserved.
机译:利用基于聚合物的纳米材料的抗原输送框架广泛用于生物医学中,因为它们具有高疗效,抗原性和生物相容性。在本研究中,通过原位离子凝胶化方法制备乙型肝炎表面抗原制造了壳聚糖 - 聚乙二醇纳米复合材料(HBsAg-CS-PEG NC),该方法是由电子显微镜,原子力显微镜(AFM)傅立叶的高度稳定的纳米造型化的高度稳定的纳米型。变换红外光谱(FTIR)。通过电子显微镜研究的颗粒形态显示球形,电子致密,纳米结构100-120nm。 AFM研究表明,具有明显粗糙度的颗粒的均匀分布。通过FTIR分析证实了聚合物与疫苗或表面改性和官能化的比相互作用。合成的纳米复合材料表现出高抗原负载和夹带效率。在体外条件下进行的释放型谱研究表明,在增加时间间隔时释放逐渐增加,这证实了稳定性和释放模式。通过使用T细胞莲叶形成测定(TCRF测定)和小鼠白血病单核细胞巨噬细胞吞噬作用测定通过诱导玫瑰花形成和吞噬速率来确定纳米复合材料的免疫原性。纳米复合材料处理以剂量依赖性方式记录对玫瑰花形成和吞噬作用百分比的显着增强。通过评估对Wistar大鼠模型和血液相位性的急性或亚急性毒性来完成生物相容性或非目标效果。通过测定溶血,抗氧化酶,红细胞聚集和血清蛋白质分析来测量血液相色。在纳米复合物处理的动物模型的所有测试参数中没有观察到毒性和死亡率的迹象。血液化性研究表明,纳米复合物处理未显示出溶血性,抗氧化酶的变化和血清蛋白质分析,所有这些都证实了合成的纳米复合材料的最佳生物相容性。用Vigna Mango,Vigna radiata和Brassica Nigra种子研究的纳米复合材料的植物毒性作用表明,纳米复合材料治疗不影响幼苗出苗或萌发指数。所有这些发现不可突出的纳米复合材料制造的HBsAg疫苗纳米型纳米型,其用作成功的免疫剂,其由其高免疫原性和针对适当的测试模型框架的最佳生物相容性构成,并在接种免疫部件中研究了另一个镜头。 (c)2019 Elsevier B.v.保留所有权利。

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