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首页> 外文期刊>Journal of immunotherapy >Mutual helper effect in copulsing of dendritic cells with 2 antigens: a novel approach for improvement of dendritic-based vaccine efficacy against tumors and infectious diseases simultaneously.
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Mutual helper effect in copulsing of dendritic cells with 2 antigens: a novel approach for improvement of dendritic-based vaccine efficacy against tumors and infectious diseases simultaneously.

机译:用2种抗原推动树突状细胞的互助作用:一种同时改善基于树突状疫苗的抗肿瘤和传染病功效的新方法。

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摘要

To develop an efficient dendritic cell (DC)-based immunotherapy protocol, we examined whether simultaneous pulsing of DCs with a given antigen and a third-party antigen could enhance their antigen presentation capacity. Purified splenic DCs of Balb/c mice were pulsed separately with immunoglobulin G, ovalbumin, conalbumin, P15 peptide of Mycobacterium tuberculosis, and prostate-specific antigen or double combinations of the aforementioned antigens. In some settings, DCs pulsed with 1 antigen were mixed equally with those pulsed with another antigen. Antigen-pulsed DCs were injected into the footpad of syngeneic mice and proliferation of whole, CD4 and CD8 depleted lymph node cells was measured after restimulation with cognate antigen. Antigen-specific production of interferon-gamma (IFNgamma) was tested in culture supernatants. Frequency of responding lymph node cells was determined by IFNgamma enzyme-linked immunosorbent spot assay. Our results showed that copulsing of DCs with 2 unrelated antigens increased the capacity of DCs to induce antigen-specific T-cell proliferation against both antigens up to 16-fold. Injection of 2 populations of DCs each pulsed with a different antigen, increased proliferation of primed T cells significantly as well. Both CD4 and CD8 depleted populations showed vigorous proliferative response in copulsing system. In addition, copulsing of DCs with 2 antigens resulted in higher frequency of antigen-specific responding cells and significantly more IFNgamma production. Our results clearly showed that unrelated peptides and proteins could be used to enhance efficacy of DC-based vaccines and in this system, each antigen served to help the other one, a condition that we termed as "mutual helper effect."
机译:为了开发一种有效的基于树突状细胞(DC)的免疫疗法方案,我们检查了同时给定抗原和第三方抗原的DC脉冲是否可以增强其抗原呈递能力。用免疫球蛋白G,卵清蛋白,伴清蛋白,结核分枝杆菌的P15肽和前列腺特异性抗原或上述抗原的双重组合分别对Balb / c小鼠的纯化脾脏DC脉冲。在某些情况下,用一种抗原脉冲过的DC与那些用另一种抗原脉冲过的DC均等混合。将抗原脉冲的DC注射到同系小鼠的足垫中,并用同源抗原再刺激后,测量整个,CD4和CD8耗尽的淋巴结细胞的增殖。在培养上清液中测试了干扰素-γ(IFNgamma)的抗原特异性产生。通过IFNγ酶联免疫吸附点测定法确定响应的淋巴结细胞的频率。我们的研究结果表明,用2个无关抗原对DC进行脉冲增强,DC诱导针对两种抗原的抗原特异性T细胞增殖的能力提高了16倍。注入2个DC种群,每个种群都用不同的抗原脉冲,同样也显着增加了初免T细胞的增殖。 CD4和CD8耗尽的人群在搏动系统中均显示出强烈的增殖反应。另外,用2种抗原对DC进行脉冲驱动导致更高的抗原特异性应答细胞频率和明显更多的IFNγ产生。我们的结果清楚地表明,不相关的肽和蛋白质可用于增强基于DC的疫苗的效力,并且在该系统中,每种抗原都可以帮助另一种抗原,这种情况被我们称为“互助效应”。

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