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Combined synthetic and recombinant techniques for the development of lipoprotein-based, self-adjuvanting vaccines targeting human papillomavirus type-16 associated tumors

机译:结合合成和重组技术开发针对人乳头瘤病毒16型相关肿瘤的基于脂蛋白的自佐剂疫苗

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摘要

Human papillomaviruses (HPVs) are associated with various cancers, with HPV16 linked to more than half of cervical cancer cases. Vaccines to prevent HPV infection and cancer development have proven effective, but are not useful in individuals with prior HPV exposure. Treatment vaccines to eradicate or control HPV-associated lesions are therefore desirable for these patients. Herein we describe the development of a process to enable the production of semisynthetic vaccines based on the site-specific attachment of synthetic bacterial lipid analogs (e.g., Pam2Cys) to a non-oncogenic mutant HPV16 E7 protein to generate molecularly defined vaccines. Many cytotoxic lymphocyte (CTL) epitopes from E7 are delivered by this approach; potentially ensuring that large numbers of immunized individuals can generate CTLs to clear HPV infected cells. Delivery of this construct reduced the growth of HPV16-associated tumors in a TC1 mouse model, the effects of which were better than the potent CTL epitope HPV16 E7(44-57) administered with Montanide ISA51 adjuvant.
机译:人乳头瘤病毒(HPV)与多种癌症有关,HPV16与一半以上的宫颈癌病例相关。业已证明,预防HPV感染和癌症发展的疫苗是有效的,但对先前接触过HPV的个体没有用。因此,对于这些患者来说,根除或控制HPV相关病变的治疗疫苗是理想的。本文中,我们描述了基于合成细菌脂质类似物(例如Pam2Cys)与非致癌突变型HPV16 E7蛋白的位点特异性结合以产生分子定义疫苗的方法,从而能够生产半合成疫苗。通过这种方法,可从E7获得许多细胞毒性淋巴细胞(CTL)表位。潜在地确保大量免疫个体可以产生CTL清除HPV感染的细胞。在TC1小鼠模型中,这种构建体的递送减少了与HPV16相关的肿瘤的生长,其效果优于与Montanide ISA51佐剂一起给药的强效CTL表位HPV16 E7(44-57)。

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