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首页> 外文期刊>Chinese Medical Journal >Enhancing DNA vaccine potency against hantavirus by co-administration of interleukin-12 expression vector as a genetic adjuvant
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Enhancing DNA vaccine potency against hantavirus by co-administration of interleukin-12 expression vector as a genetic adjuvant

机译:通过共同使用白介素12表达载体作为遗传佐剂来增强针对汉坦病毒的DNA疫苗效力

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Background The heavy incidence and mortality of hemorrhagic fever with renal syndrome, as well as no specific drugs in curing the disease, clearly indicate the need for development of the more effective hantavirus vaccine. Refining the DNA vaccination strategy to elicit more clinically efficacious immune responses is now under intensive investigation. In the present study, we examined the effects of using an interleukin-12 expression plasmid as a genetic adjuvant to enhance the immune responses induced by a DNA vaccine based on the S gene encoding nucleocapsid protein against hantavirus. Methods BALB/c mice were immunized three times by intramuscular inoculations of DNA vaccine encoding of hantanvirus nucleocapsid protein alone or in combination with a plasmid expressing murine interleukin-12 (pcIL-12). Booster immunizations were employed 2 times at 2-week interval. To evaluate the humoral and cellular immune responses, antigen-specific lymphocyte proliferation and antibody production were assayed by MTT method and ELISA respectively. The level of interleukin-4 and interferon-γ in the splenic lymphocytic cultured supernatant were detected with ELISA kit at day 5, 10, 17, 35 and 42 after primary immunization. Results Antigen-specific IgG antibodies was increased markedly at day 17 in the experiment groups and reached a plateau after day 35. As pcIL-12 co-injected, a significant inhibition of antigen-specific IgG levels was displayed over the period and the antibody mean titre was decreased to only about 1:50 at day 42 after primary immunization, significantly lower than the group immunized with pcDNA3.1 + S alone, in which the mean litre was about 1:70. Interferon-γ was increased remarkably by the co-injection of pcIL-12 compared with the injection of pcDNA3.1 + S alone. However, the production of interleukin-4 was inhibited by pcIL-12 co-injection. Furthermore, pcIL-12 co-injection efficiently enhanced antigen-specific lymphocyte proliferation. Conclusion Humoral and cytokine responses elicited by pcDNA3.1 + S inoculation can be modulated by co-inoculation with pcIL-12 and efficiently induced Th1-dominant immune responses.
机译:背景技术肾综合征出血热的高发病率和死亡率,以及用于治愈该疾病的特定药物,显然表明需要开发更有效的汉坦病毒疫苗。现在正在深入研究完善DNA疫苗接种策略以引发更多临床上有效的免疫反应。在本研究中,我们研究了使用白介素12表达质粒作为遗传佐剂来增强DNA疫苗诱导的免疫应答的效果,该DNA疫苗基于编码针对汉坦病毒的核衣壳蛋白的S基因。方法单独或与表达鼠白介素12(pcIL-12)的质粒组合肌肉注射编码汉坦病毒核衣壳蛋白的DNA疫苗,对BALB / c小鼠进行3次免疫。每隔2周进行2次加强免疫。为了评估体液和细胞免疫应答,分别通过MTT法和ELISA法测定了抗原特异性淋巴细胞的增殖和抗体的产生。初次免疫后第5、10、17、35和42天,用ELISA试剂盒检测脾淋巴细胞培养上清中白细胞介素4和干扰素-γ的水平。结果在实验组中,抗原特异性IgG抗体在第17天显着增加,并在第35天达到平稳。当共注射pcIL-12时,在此期间对抗原特异性IgG的水平有明显的抑制作用,并且抗体平均值初次免疫后第42天,效价下降至仅约1:50,这明显低于仅用pcDNA3.1 + S免疫的组(平均升约1:70)。与单独注射pcDNA3.1 + S相比,通过共同注射pcIL-12可以显着增加干扰素-γ。然而,白细胞介素4的生产被pcIL-12共注射抑制。此外,pcIL-12共注射可有效增强抗原特异性淋巴细胞的增殖。结论pcDNA3.1 + S接种引起的体液和细胞因子反应可与pcIL-12共接种来调节,并能有效诱导Th1主导的免疫反应。

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