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慢病毒蛋白转导载体是一种高效的疫苗平台,可诱导强烈的抗原特异性细胞毒性T细胞反应。

Lentiviral Protein Transfer Vectors Are an Efficient Vaccine Platform and Induce a Strong Antigen-Specific Cytotoxic T Cell Response.

作者信息

Uhlig Katharina M, Schülke Stefan, Scheuplein Vivian A M, Malczyk Anna H, Reusch Johannes, Kugelmann Stefanie, Muth Anke, Koch Vivian, Hutzler Stefan, Bodmer Bianca S, Schambach Axel, Buchholz Christian J, Waibler Zoe, Scheurer Stephan, Mühlebach Michael D

机构信息

Oncolytic Measles Viruses and Vaccine Vectors, Paul-Ehrlich-Institut, Langen, Germany.

Molecular Allergology, Paul-Ehrlich-Institut, Langen, Germany.

出版信息

J Virol. 2015 Sep;89(17):9044-60. doi: 10.1128/JVI.00844-15. Epub 2015 Jun 17.

Abstract

UNLABELLED

To induce and trigger innate and adaptive immune responses, antigen-presenting cells (APCs) take up and process antigens. Retroviral particles are capable of transferring not only genetic information but also foreign cargo proteins when they are genetically fused to viral structural proteins. Here, we demonstrate the capacity of lentiviral protein transfer vectors (PTVs) for targeted antigen transfer directly into APCs and thereby induction of cytotoxic T cell responses. Targeting of lentiviral PTVs to APCs can be achieved analogously to gene transfer vectors by pseudotyping the particles with truncated wild-type measles virus (MV) glycoproteins (GPs), which use human SLAM (signaling lymphocyte activation molecule) as a main entry receptor. SLAM is expressed on stimulated lymphocytes and APCs, including dendritic cells. SLAM-targeted PTVs transferred the reporter protein green fluorescent protein (GFP) or Cre recombinase with strict receptor specificity into SLAM-expressing CHO and B cell lines, in contrast to broadly transducing vesicular stomatitis virus G protein (VSV-G) pseudotyped PTVs. Primary myeloid dendritic cells (mDCs) incubated with targeted or nontargeted ovalbumin (Ova)-transferring PTVs stimulated Ova-specific T lymphocytes, especially CD8(+) T cells. Administration of Ova-PTVs into SLAM-transgenic and control mice confirmed the observed predominant induction of antigen-specific CD8(+) T cells and demonstrated the capacity of protein transfer vectors as suitable vaccines for the induction of antigen-specific immune responses.

IMPORTANCE

This study demonstrates the specificity and efficacy of antigen transfer by SLAM-targeted and nontargeted lentiviral protein transfer vectors into antigen-presenting cells to trigger antigen-specific immune responses in vitro and in vivo. The observed predominant activation of antigen-specific CD8(+) T cells indicates the suitability of SLAM-targeted and also nontargeted PTVs as a vaccine for the induction of cytotoxic immune responses. Since cytotoxic CD8(+) T lymphocytes are a mainstay of antitumoral immune responses, PTVs could be engineered for the transfer of specific tumor antigens provoking tailored antitumoral immunity. Therefore, PTVs can be used as safe and efficient alternatives to gene transfer vectors or live attenuated replicating vector platforms, avoiding genotoxicity or general toxicity in highly immunocompromised patients, respectively. Thereby, the potential for easy envelope exchange allows the circumventing of neutralizing antibodies, e.g., during repeated boost immunizations.

摘要

未标记

为了诱导和触发先天性和适应性免疫反应,抗原呈递细胞(APC)会摄取并处理抗原。逆转录病毒颗粒在与病毒结构蛋白进行基因融合时,不仅能够传递遗传信息,还能传递外源货物蛋白。在此,我们展示了慢病毒蛋白转移载体(PTV)将靶向抗原直接转移到APC中并由此诱导细胞毒性T细胞反应的能力。慢病毒PTV靶向APC的实现方式类似于基因转移载体,即通过用截短的野生型麻疹病毒(MV)糖蛋白(GP)对颗粒进行假型化,MV糖蛋白以人信号淋巴细胞激活分子(SLAM)作为主要进入受体。SLAM在受刺激的淋巴细胞和APC(包括树突状细胞)上表达。与广泛转导的水泡性口炎病毒G蛋白(VSV-G)假型化PTV相比,靶向SLAM的PTV以严格的受体特异性将报告蛋白绿色荧光蛋白(GFP)或Cre重组酶转移到表达SLAM的CHO和B细胞系中。用靶向或非靶向卵清蛋白(Ova)转移PTV孵育的原代髓样树突状细胞(mDC)刺激了Ova特异性T淋巴细胞,尤其是CD8(+) T细胞。将Ova-PTV给予SLAM转基因小鼠和对照小鼠,证实了观察到的抗原特异性CD8(+) T细胞的主要诱导,并证明了蛋白转移载体作为诱导抗原特异性免疫反应的合适疫苗的能力。

重要性

本研究证明了靶向SLAM和非靶向的慢病毒蛋白转移载体将抗原转移到抗原呈递细胞中以在体外和体内触发抗原特异性免疫反应的特异性和有效性。观察到的抗原特异性CD8(+) T细胞的主要激活表明靶向SLAM和非靶向的PTV作为诱导细胞毒性免疫反应的疫苗的适用性。由于细胞毒性CD8(+) T淋巴细胞是抗肿瘤免疫反应的支柱,可以设计PTV来转移特定的肿瘤抗原以引发定制的抗肿瘤免疫。因此,PTV可作为基因转移载体或减毒活复制载体平台的安全有效替代物,分别避免在高度免疫受损患者中产生基因毒性或一般毒性。由此,易于进行包膜交换的潜力使得能够规避中和抗体,例如在重复加强免疫期间。

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