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首页> 外文期刊>International Journal of Nanomedicine >Vaccine delivery system for tuberculosis based on nano-sized hepatitis B virus core protein particles
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Vaccine delivery system for tuberculosis based on nano-sized hepatitis B virus core protein particles

机译:基于纳米乙型肝炎病毒核心蛋白颗粒的结核病疫苗输送系统

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Abstract: Nano-sized hepatitis B virus core virus-like particles (HBc-VLP) are suitable for uptake by antigen-presenting cells. Mycobacterium tuberculosis antigen culture filtrate protein 10 (CFP-10) is an important vaccine candidate against tuberculosis. The purified antigen shows low immune response without adjuvant and tends to have low protective efficacy. The present study is based on the assumption that expression of these proteins on HBc nanoparticles would provide higher protection when compared to the native antigen alone. The cfp-10 gene was expressed as a fusion on the major immunodominant region of HBc-VLP, and the immune response in Balb/c mice was studied and compared to pure proteins, a mixture of antigens, and fusion protein-VLP, all without using any adjuvant. The humoral, cytokine, and splenocyte cell proliferation responses suggested that the HBc-VLP bearing CFP-10 generated an antigen-specific immune response in a Th1-dependent manner. By virtue of its self-adjuvant nature and ability to form nano-sized particles, HBc-VLPs are an excellent vaccine delivery system for use with subunit protein antigens identified in the course of recent vaccine research.
机译:摘要:纳米乙肝病毒核心病毒样颗粒(HBc-VLP)适合抗原呈递细胞摄取。结核分枝杆菌抗原培养物滤液蛋白10(CFP-10)是抗结核的重要候选疫苗。纯化的抗原在没有佐剂的情况下显示出较低的免疫应答,并且倾向于具有低的保护功效。本研究基于以下假设:与单独的天然抗原相比,这些蛋白在HBc纳米颗粒上的表达将提供更高的保护。 cfp-10基因在HBc-VLP的主要免疫优势区域表达为融合蛋白,研究了Balb / c小鼠的免疫应答,并将其与纯蛋白,抗原混合物和融合蛋白-VLP进行了比较。使用任何佐剂。体液,细胞因子和脾细胞增殖反应表明,携带CFP-10的HBc-VLP以Th1依赖性方式产生抗原特异性免疫反应。由于其自佐剂性质和形成纳米级颗粒的能力,HBc-VLP是一种出色的疫苗输送系统,可与最近的疫苗研究过程中鉴定出的亚单位蛋白抗原一起使用。

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