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一种结合阴道内和肌肉内注射同源腺病毒的初免-加强策略,以增强小鼠对HIV-1的免疫反应。

A Prime-Boost Strategy Combining Intravaginal and Intramuscular Administration of Homologous Adenovirus to Enhance Immune Response Against HIV-1 in Mice.

作者信息

Ji Zhonghua, Xie Zhaolu, Wang Qin, Zhang Zhirong, Gong Tao, Sun Xun

机构信息

Key Laboratory of Drug Targeting and Novel Drug Delivery Systems, West China School of Pharmacy, Sichuan University , Ministry of Education, Chengdu, Sichuan, People's Republic of China .

出版信息

Hum Gene Ther. 2016 Mar;27(3):219-29. doi: 10.1089/hum.2015.153. Epub 2016 Feb 24.

Abstract

Immune responses to HIV in the vaginal tract effectively trigger both systemic and mucosal protection, providing a double layer of defense. However, recombinant adenoviral (rAd) vectors delivered intravaginally do not effectively penetrate the mucus layer and vaginal epithelium, and instead are rapidly cleared. To overcome these barriers, we previously synthesized a novel cationic polyethylene glycol derivative that can self-assemble into nanocomplexes with rAd. These nanocomplexes can help rAd bypass the mucus layer and enhance mucosal immune response to the encoded antigen. However, the resulting cellular and humoral responses were still lower than those elicited by single intramuscular injection of rAd. Therefore, in the present study we investigated a new vaccination strategy involving intravaginal priming with our nanocomplexes, followed by an intramuscular boost with rAd-gag. Mice immunized in this way showed more potent humoral and cellular responses, as well as higher IgA levels, than animals primed and boosted intravaginally with nanocomplexes. These results show the promise of a prime-boost strategy for developing vaccine candidates against HIV.

摘要

阴道内对HIV的免疫反应可有效触发全身和黏膜保护,提供双重防御。然而,经阴道递送的重组腺病毒(rAd)载体无法有效穿透黏液层和阴道上皮,反而会迅速被清除。为克服这些障碍,我们之前合成了一种新型阳离子聚乙二醇衍生物,它能与rAd自组装形成纳米复合物。这些纳米复合物可帮助rAd绕过黏液层,并增强对编码抗原的黏膜免疫反应。然而,所产生的细胞和体液反应仍低于单次肌肉注射rAd所引发的反应。因此,在本研究中,我们探究了一种新的疫苗接种策略,即先用我们的纳米复合物进行阴道初次免疫,随后用rAd-gag进行肌肉加强免疫。以这种方式免疫的小鼠比用纳米复合物进行阴道初次免疫和加强免疫的动物表现出更强的体液和细胞反应,以及更高的IgA水平。这些结果表明了初免-加强策略在开发抗HIV候选疫苗方面的前景。

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