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Broad-Spectrum HPV Vaccine Based on Recombinant Measles

Broad-Spectrum HPV Vaccine Based on Recombinant Measles
基于重组麻疹的广谱 HPV 疫苗
批准号:
452172111
负责人:
Privatdozent Dr. Michael D. Mühlebach
金额:
$0.0万
依托单位:
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
--
资助国家:
德国
项目状态:
未结题
起止时间:

项目摘要

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中文摘要
翻译
人乳头瘤病毒(HPV)通常诱发皮肤和粘膜的良性乳头瘤。“高风险”类型的持续感染会导致肛门生殖道癌(特别是宫颈癌)和口咽癌,并与非黑色素瘤皮肤癌(NMSC)的发展有关。获得许可的疫苗是基于由主要衣壳蛋白L1自组装的病毒样颗粒(VLP)。接种疫苗可以防止粘膜HPV感染,从而导致肿瘤的发生,仅限于接种疫苗的妇女需要继续进行宫颈筛查的各自的疫苗基因型,并且不针对皮肤类型。RG1-VLP是由HPV16 L1融合蛋白组成的候选疫苗,该融合蛋白在组装的VLP表面显示交叉中和表位,RG1 '是HPV16 L2次要衣壳蛋白。在体外和动物攻击模型中,疫苗接种对广泛的高风险和低风险粘膜和皮肤HPV类型提供低滴度交叉型免疫和保护。然而,体内保护的持续时间和广度尚不清楚。麻疹减毒复制活疫苗可诱导持久的体液和细胞免疫反应。重组麻疹病毒(MV)已被开发为抗外源病原体(西尼罗河病毒、登革热病毒等)的疫苗平台。我们建议生产一种经济的下一代HPV疫苗,以预防所有生殖器致癌和低风险的HPV,这可能克服尽管有许可的疫苗,但仍需进行宫颈PAP筛查的负担,并进一步显著减少HPV引起的宫颈癌和其他肿瘤。在常规麻疹疫苗接种运动中实施麻疹疫苗接种尤其有利于低收入和中等收入国家,这些国家是宫颈癌的主要负担,以及免疫抑制患者,他们特别容易感染人乳头瘤病毒和诱发包括NMSC在内的肿瘤。此外,我们将确定记忆b细胞、长寿命浆细胞和平台抗体滴度的诱导的关键特征,它们是生殖道中免疫消毒的主要效应物。我们还将研究MV疫苗平台和紧密间隔的HPV抗原展示是否协同作用,以激发针对HPV的强大和持久的交叉保护性体液免疫,并评估诱导细胞介导免疫的机制及其在新型动物疾病模型中的保护作用。Reinhard Kirnbauer是获得许可的HPV疫苗的共同发明人,并开发了HPV16 RG1-VLP,该疫苗作为下一代广谱HPV候选疫苗正在临床开发中。Michael m<e:1> hlebach利用MV疫苗平台开发现代疫苗,特别是针对中东呼吸综合征冠状病毒感染或cldn6阳性肿瘤的疫苗,通过诱导有效的体液和细胞免疫反应。它们的实验室具有协同和互补的专业知识,为跨境DACH项目提供了关键的附加价值。
英文摘要
Human Papillomaviruses (HPV) induce generally benign papillomas of skin and mucosa. Persistent infection with ‘high-risk’ types causes carcinomas of the ano-genital tract (in particular cervical cancer) and the oro-pharynx, and has been implicated in development of non-melanoma skin cancer (NMSC). Licensed vaccines are based on virus-like particles (VLP) self-assembled from the major capsid protein L1. Vaccinations protect against mucosal HPV infection and thereby induced neoplasia limited to the respective vaccine genotypes requiring continued cervical screening in vaccinated women, and do not target skin types.RG1-VLP is a vaccine candidate composed of fusion protein of HPV16 L1 displaying the cross-neutralization epitope ‚RG1’ of the HPV16 L2 minor capsid protein on the assembled VLP surface. Vaccinations provide low-titer cross-type immunity and protection to a broad spectrum of high-risk and low-risk mucosal and cutaneous HPV types in vitro and in animal challenge models. However, duration and breadth of protection in vivo are unknown.Live attenuated replicating measles vaccine induces long lasting humoral and cellular immune responses. Recombinant measles virus (MV) has been developed as vaccine platform against foreign pathogens (West Nile, Dengue, etc).We propose to generate an economic next generation HPV vaccine to protect against all genital oncogenic and low-risk HPV, which may overcome the burden of continued cervical PAP screening despite licensed vaccines and yield further significant reduction of cervical cancers and other neoplasias induced by HPV. Implementation in routine measles vaccination campaigns could particularly benefit low- and middle-income countries, which carry the major burden of cervical cancers, and immunosuppressed patients, who are particularly prone to HPV infections and induced neoplasias including NMSC.In addition, we will determine crucial features for induction of memory B-cells, long-lived plasma cells, and plateau antibody titers, which are the main effectors for sterilizing immunity in the genital tract. We will also examine whether the MV vaccine platform and closely spaced HPV antigen-display act synergistically together for provoking robust and long-lasting cross-protective humoral immunity against HPV, and evaluate mechanisms for induction of cell-mediated immunity and its contribution to protection in novel animal disease models. Reinhard Kirnbauer is a co-inventor of licensed HPV vaccines and has developed HPV16 RG1-VLP, which is in clinical development as next generation broad-spectrum HPV vaccine candidate. Michael Mühlebach has used the MV vaccine platform for development of modern vaccines, in particular for a vaccine targeting MERS-CoV infections or CLDN6-positive tumors by inducing both effective humoral and cellular immune responses. Their laboratories have synergistic and complementing expertise, that provide critical additional value required for a cross-border DACH project.
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会议论文
Rolle der Transmembran-Segmente von Masern-Glykoproteinen im Aufbau der viralen Hülle und der Gebrauch fremder Glykoproteine auf Masernviren für eine divalente Impfung
  • 批准号:
    5442832
  • 项目类别:
    Research Fellowships
  • 资助金额:
    $0.0万
  • 财政年份:
    2005
  • 负责人:
    Privatdozent Dr. Michael D. Mühlebach
  • 依托单位:
国内基金
海外基金
三角范畴spectrum及周群的研究
  • 批准号:
  • 项目类别:
    省市级项目
  • 资助金额:
    10.0万元
  • 批准年份:
    2022
  • 负责人:
    于翾
  • 依托单位: