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首页> 外文期刊>Vaccine >Construction of an HBV DNA vaccine by fusion of the GM-CSF gene to the HBV-S gene and examination of its immune effects in normal and HBV-transgenic mice.
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Construction of an HBV DNA vaccine by fusion of the GM-CSF gene to the HBV-S gene and examination of its immune effects in normal and HBV-transgenic mice.

机译:通过将GM-CSF基因与HBV-S基因融合来构建HBV DNA疫苗,并检查其在正常和HBV转基因小鼠中的免疫作用。

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Background: The hepatitis B virus (HBV) DNA vaccine can generate both HBsAg-specific humoral and cellular immune responses. The immune response can be improved by inclusion of an adjuvant, such as the cytokine GM-CSF which is known to be a very good adjuvant. Methods: To investigate the ability of GM-CSF to enhance HBV-DNA vaccines, we constructed the plasmids by fusion of GM-CSF gene to the HBV-S gene. Normal and HBV-transgenic mice were then immunized with these plasmids. Results: Our results show that pCDNA3.1-GM-CSF-S induced the most powerful HBsAg-specific humoral and cellular immune response, and that it was able to overcome the non-response to HBsAg in HBV-transgenic mice. In contrast, pCDNA3.1-S-GM-CSF was able to induce only a very poor immune response. Conclusions: When the HBV-S gene is fused to the GM-CSF gene, the immune effects of the HBV DNA vaccine both in normal and HBV-transgenic mice can be strengthened and HBV-DNA plasmids fused with GM-CSF may be useful for both preventative and therapeutic purposes.
机译:背景:乙型肝炎病毒(HBV)DNA疫苗可产生HBsAg特异性的体液和细胞免疫反应。可以通过包含佐剂来改善免疫应答,例如已知是非常好的佐剂的细胞因子GM-CSF。方法:为了研究GM-CSF增强HBV-DNA疫苗的能力,我们通过将GM-CSF基因与HBV-S基因融合构建了质粒。然后用这些质粒免疫正常和HBV转基因小鼠。结果:我们的结果表明,pCDNA3.1-GM-CSF-S诱导了最有力的HBsAg特异性体液和细胞免疫反应,并且它能够克服HBV转基因小鼠对HBsAg的无反应。相反,pCDNA3.1-S-GM-CSF只能诱导非常差的免疫反应。结论:将HBV-S基因与GM-CSF基因融合后,可以增强HBV DNA疫苗在正常和HBV转基因小鼠中的免疫作用,与GM-CSF融合的HBV-DNA质粒可能对预防和治疗目的。

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