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Disrupted Adenovirus-Based Vaccines Against Small Addictive Molecules Circumvent Anti-Adenovirus Immunity

机译:抗小分子上瘾分子的基于腺病毒的疫苗可避免抗腺病毒免疫

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摘要

Adenovirus (Ad) vaccine vectors have been used for many applications due to the capacity of the Ad capsid proteins to evoke potent immune responses, but these vectors are often ineffective in the context of pre-existing anti-Ad immunity. Leveraging the knowledge that E1E3 Ad gene transfer vectors are potent immunogens, we have developed a vaccine platform against small molecules by covalently coupling analogs of small molecules to the capsid proteins of disrupted Ad (dAd5). We hypothesized that the dAd5 platform would maintain immunopotency even in the context of anti-Ad neutralizing antibodies. To test this hypothesis, we coupled cocaine and nicotine analogs, GNE and AM1, to dAd5 capsid proteins to generate dAd5GNE and dAd5AM1, respectively. Mice were pre-immunized with Ad5Null, resulting in high titer anti-Ad5 neutralizing antibodies comparable to those observed in the human population. The dAd5GNE and dAd5AM1 vaccines elicited high anti-cocaine and anti-nicotine antibody titers, respectively, in both naive and Ad5-immune mice, and both functioned to prevent cocaine or nicotine from reaching the brain of anti-Ad immune mice. Thus, disrupted Ad5 evokes potent humoral immunity that is effective in the context of pre-existing neutralizing anti-Ad immunity, overcoming a major limitation for current Ad-based vaccines.
机译:腺病毒(Ad)疫苗载体由于Ad衣壳蛋白引起有效免疫应答的能力而已被用于许多应用,但是这些载体在预先存在的抗Ad免疫的情况下通常无效。利用E1 - E3 - Ad基因转移载体是有效的免疫原的知识,我们通过将小分子类似物与衣壳蛋白共价偶联,开发了针对小分子的疫苗平台广告数量(dAd5)。我们假设dAd5平台即使在抗Ad中和抗体的情况下也将保持免疫效力。为了验证这一假设,我们将可卡因和尼古丁类似物GNE和AM1与dAd5衣壳蛋白偶联,分别生成dAd5GNE和dAd5AM1。用Ad5Null对小鼠进行了预免疫,从而产生了与人群中观察到的抗体相比可效价高的抗Ad5中和抗体。 dAd5GNE和dAd5AM1疫苗分别在幼稚和Ad5免疫小鼠中引起高的可卡因和抗尼古丁抗体滴度,并且两者均具有防止可卡因或尼古丁到达抗Ad免疫小鼠大脑的功能。因此,破坏的Ad5引起有效的体液免疫,其在先前存在的中和抗-Ad免疫的情况下是有效的,克服了目前基于Ad的疫苗的主要局限性。

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