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首页> 外文期刊>Immunology Letters >Combination of cell penetrating peptides and heterologous DNA prime/protein boost strategy enhances immune responses against HIV-1 Nef antigen in BALB/c mouse model
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Combination of cell penetrating peptides and heterologous DNA prime/protein boost strategy enhances immune responses against HIV-1 Nef antigen in BALB/c mouse model

机译:细胞穿透肽和异源DNA素/蛋白增强策略的组合增强了BALB / C小鼠模型中对HIV-1 NEF抗原的免疫反应

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摘要

To develop a strong HIV specific T-cell response, the HIV-1 Tat and Nef regulatory proteins have been known as attractive antigenic candidates in vaccine design. A peptide transduction domain of Tat (48-60 aa) could act to deliver other therapeutic molecules into different cells. In this line, several cell-penetrating peptides (CPPs) have been designed to transfer DNA, siRNA, polypeptides and proteins into cells through non-covalent approach such as CADY and PEP families. Some studies showed that the endogenous adjuvants including heat shock protein Gp96 could stimulate antigen-specific T cell immune responses. In this study, different Nef DNA and protein constructs were generated, and their abilities were evaluated to induce T cell immune responses and humoral immunity in mouse model. A novel prime-boost immunization approach was also used in which the priming injections consisted of Nef/Tat (PTD)-Nef DNA plus Gp96 DNA followed by Nef/Tat (PTD)-Nef protein formulated in Freund's adjuvant or the Pep-1 and Cady-2 CPPs. Generally, our results indicated that Tat (PTD)-Nef fusion DNA or protein could significantly elicit higher humoral and cellular immune responses than Nef DNA or protein, respectively. Analysis of the immune responses demonstrated that the Tat (PTD)-Nef + Gp96 DNA prime/Tat (PTD)-Nef protein + Cady-2 boost regimen significantly enhanced the Nef/Tat (PTD)-Nef-specific T cell responses. This modality induced high levels of IgG2a and IFN-gamma directed toward Th1 responses, and also Cytotoxic T Lymphocytes (CTLs) activity as compared to other immunization strategies. The immunostimulatory properties of Pep-1 and Freund's adjuvant were almost similar in different immunization strategies. These findings showed that the use of Tat (PTD)-Nef antigen in prime-boost strategy along with Gp96 adjuvant and Cady-2 CPP may have practical implications for developing HIV-1 vaccine in large animal model.
机译:为了开发强烈的HIV特异性T细胞反应,HIV-1 TAT和NEF调节蛋白已被称为疫苗设计中有吸引力的抗原候选者。 TAT(48-60AA)的肽转导域可以采用其他治疗分子将其它治疗分子递送到不同的细胞中。在这条线中,通过非共价方法如CADY和PEP系列,设计了几种细胞穿透肽(CPP)以将DNA,siRNA,多肽和蛋白质转移到细胞中。一些研究表明,包括热休克蛋白GP96的内源佐剂可以刺激特异性特异性T细胞免疫反应。在该研究中,产生了不同的NEF DNA和蛋白质构建体,并评估其能力以诱导小鼠模型中的T细胞免疫应答和体液免疫。还使用了一种新的蛋白增强免疫方法,其中灌注注射由Nef / Tat(PTD)-NEF DNA加上GP96 DNA和在弗氏佐剂或PEP-1中配制的Nef / Tat(PTD)-NEF蛋白组成。 CADY-2 CPPS。通常,我们的结果表明,TAT(PTD)-NEF融合DNA或蛋白质分别可以分别显着引起比NEF DNA或蛋白质的更高的液体和细胞免疫应答。免疫应答的分析证明TAT(PTD)-NEF + GP96 DNA Prime / TAT(PTD)-NEF蛋白+ CADY-2升压方案显着增强了NEF / TAT(PTD)-NEF特异性T细胞反应。该模态诱导高水平的IgG2A和IFN-GAMMA,其针对TH1反应,以及与其他免疫策略相比的细胞毒性T淋巴细胞(CTLS)活性。 PEP-1和Freud的佐剂的免疫刺激性质在不同免疫策略中几乎相似。这些发现表明,使用TAT(PTD)-NEF抗原在Prime-Boost策略以及GP96佐剂和CADY-2 CPP中的使用可能对大型动物模型中的HIV-1疫苗具有实际意义。

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