首页> 外文OA文献 >DNA-Encoded Flagellin Activates Toll-Like Receptor 5 (TLR5), Nod-like Receptor Family CARD Domain-Containing Protein 4 (NRLC4), and Acts as an Epidermal, Systemic, and Mucosal-Adjuvant
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DNA-Encoded Flagellin Activates Toll-Like Receptor 5 (TLR5), Nod-like Receptor Family CARD Domain-Containing Protein 4 (NRLC4), and Acts as an Epidermal, Systemic, and Mucosal-Adjuvant

机译:DNA编码的鞭毛蛋白激活类似Toll的受体5(TLR5),Nod样受体家族含有CARD域的蛋白质4(NRLC4),并起表皮,全身和粘膜佐剂的作用

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摘要

Eliciting effective immune responses using non-living/replicating DNA vaccines is a significant challenge. We have previously shown that ballistic dermal plasmid DNA-encoded flagellin (FliC) promotes humoral as well as cellular immunity to co-delivered antigens. Here, we observe that a plasmid encoding secreted FliC (pFliC(-gly)) produces flagellin capable of activating two innate immune receptors known to detect flagellin; Toll-like Receptor 5 (TLR5) and Nod-like Receptor family CARD domain-containing protein 4 (NRLC4). To test the ability of pFliC(-gly) to act as an adjuvant we immunized mice with plasmid encoding secreted FliC (pFliC(-gly)) and plasmid encoding a model antigen (ovalbumin) by three different immunization routes representative of dermal, systemic, and mucosal tissues. By all three routes we observed increases in antigen-specific antibodies in serum as well as MHC Class I-dependent cellular immune responses when pFliC(-gly) adjuvant was added. Additionally, we were able to induce mucosal antibody responses and Class II-dependent cellular immune responses after mucosal vaccination with pFliC(-gly). Humoral immune responses elicited by heterologus prime-boost immunization with a plasmid encoding HIV-1 from gp160 followed by protein boosting could be enhanced by use of pFliC(-gly). We also observed enhancement of cross-clade reactive IgA as well as a broadening of B cell epitope reactivity. These observations indicate that plasmid-encoded secreted flagellin can activate multiple innate immune responses and function as an adjuvant to non-living/replicating DNA immunizations. Moreover, the capacity to elicit mucosal immune responses, in addition to dermal and systemic properties, demonstrates the potential of flagellin to be used with vaccines designed to be delivered by various routes.
机译:使用非活体/复制型DNA疫苗激发有效的免疫反应是一项重大挑战。我们以前已经表明,弹道真皮质粒DNA编码的鞭毛蛋白(FliC)促进体液以及细胞对共同释放的抗原的免疫力。在这里,我们观察到编码分泌的FliC的质粒(pFliC(-gly))产生鞭毛蛋白,该鞭毛蛋白能够激活两个已知检测鞭毛蛋白的先天免疫受体。 Toll样受体5(TLR5)和Nod样受体家族含CARD域的蛋白质4(NRLC4)。为了测试pFliC(-gly)充当佐剂的能力,我们通过三种不同的代表皮肤,系统性,免疫性和免疫性的免疫途径,用编码分泌性FliC的质粒(pFliC(-gly))和编码模型抗原(卵清蛋白)的质粒免疫小鼠。和粘膜组织。通过所有这三种途径,我们观察到当添加pFliC(-gly)佐剂时血清中抗原特异性抗体以及MHC I类依赖的细胞免疫反应的增加。另外,在用pFliC(-gly)进行粘膜疫苗接种后,我们能够诱导粘膜抗体应答和II类依赖性细胞免疫应答。通过使用pFliC(-gly)可以增强用gp160编码HIV-1的质粒进行异源初免-加强免疫所引起的体液免疫反应。我们还观察到跨层反应性IgA的增强以及B细胞表位反应性的拓宽。这些观察结果表明,质粒编码的分泌鞭毛蛋白可以激活多种先天免疫应答,并作为非活体/复制性DNA免疫的佐剂。此外,除具有皮肤和全身特性外,引起粘膜免疫反应的能力还证明了鞭毛蛋白有可能与旨在通过多种途径传递的疫苗一起使用。

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