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使用减毒细菌作为DNA疫苗的递送载体。

Use of attenuated bacteria as delivery vectors for DNA vaccines.

作者信息

Daudel Damini, Weidinger Gerald, Spreng Simone

机构信息

Berna Biotech AG, Rehhagstrasse 79, CH-3018 Berne, Switzerland.

出版信息

Expert Rev Vaccines. 2007 Feb;6(1):97-110. doi: 10.1586/14760584.6.1.97.

Abstract

Live, attenuated bacterial vaccines (LBV) are promising candidates for the induction of a broad-based immune response directed at recombinant heterologous antigens and the corresponding pathogen. LBVs allow vaccination through the mucosal surfaces and specific targeting of professional antigen-presenting cells located at the inductive sites of the immune system. A novel approach exploits attenuated intracellular bacteria as delivery vectors for eukaryotic antigen-expression plasmids (so-called DNA vaccines). Candidate carrier bacteria include attenuated strains of Gram-positive and Gram-negative bacteria. These bacteria have been shown to deliver DNA vaccines to human cells in vitro and have also proven their in vivo efficacy in several experimental animal models of infectious diseases and different cancers. The clinical assessment of the safety, immunogenicity and efficacy of these candidate strains will be the next challenging step towards live bacterial DNA vaccines.

摘要

减毒活细菌疫苗(LBV)有望诱导针对重组异源抗原和相应病原体的广泛免疫反应。LBV可通过粘膜表面进行接种,并特异性靶向位于免疫系统诱导部位的专职抗原呈递细胞。一种新方法利用减毒的细胞内细菌作为真核抗原表达质粒(即所谓的DNA疫苗)的递送载体。候选载体细菌包括革兰氏阳性和革兰氏阴性细菌的减毒株。这些细菌已在体外将DNA疫苗递送至人类细胞,并且在几种传染病和不同癌症的实验动物模型中也证明了其体内疗效。对这些候选菌株的安全性、免疫原性和疗效进行临床评估将是迈向活细菌DNA疫苗的下一个具有挑战性的步骤。

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