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犬皮下免疫细菌 ghosts 疫苗。

Subcutaneous Immunization of Dogs With Bacterial Ghost Vaccine.

机构信息

BIRD-C GmbH & Co KG, Vienna, Austria.

Centre of Molecular Biology, University of Vienna, Vienna, Austria.

出版信息

Front Immunol. 2019 Jun 25;10:1377. doi: 10.3389/fimmu.2019.01377. eCollection 2019.

Abstract

The species are Gram-negative bacterial pathogens that colonizes mammalian respiratory tract causing respiratory diseases in humans and animals. causes clinical conditions in many mammals including immunocompromised humans. Using the dog model of respiratory infection, it has been shown in this study that a newly developed Bacterial Ghost (BbBG) vaccine exhibited significant protection in the face of a severe pathogenic bacterial challenge in seronegative dogs. The protein -specific lysis mechanism was used to produce BbBGs. Bacterial Ghosts (BGs) are the empty cell envelope of Gram-negative bacterium. They are genetically processed to form a microscopic hole in their membrane, through which all the cytoplasmic contents are expelled leaving behind intact empty bacterial shells. Due to the intact surface structures of BGs, they offer the safety of inactivated but efficacy of live attenuated vaccines. In this study, seronegative dogs were vaccinated subcutaneously (s/c) with two different doses of a newly developed BbBG vaccine [lower 105 (BbBG - 5) and higher 107 (BbBG - 7)] on day 0 and 21. The animals were challenged (by aerosol) with virulent live strains 41 days after first vaccination. The dogs vaccinated s/c with BbBG - 7 vaccine had significantly lower spontaneous coughing scores ( = 0.0001) than dogs in negative control group. Furthermore, the tested BbBG - 7 vaccine was equivalent to the positive control vaccine Bronchicine CAe in terms of safety and efficacy. For the first time, we report the successful use of liquid formulated BGs vaccines in animal studies. Earlier reported studies using BGs vaccines were performed with resuspended freeze-dried BGs preparations.

摘要

该种细菌是革兰氏阴性的病原体,定植于哺乳动物的呼吸道,引起人类和动物的呼吸道疾病。该细菌可引起多种哺乳动物的临床病症,包括免疫功能低下的人类。在犬呼吸道感染模型中,本研究表明,一种新开发的 细菌幽灵(BbBG)疫苗在面对血清阴性犬的严重致病性细菌挑战时表现出显著的保护作用。该疫苗利用了蛋白特异性裂解机制来生产 BbBG。细菌幽灵(BGs)是革兰氏阴性菌的空细胞包膜。它们经过基因处理,在膜上形成一个微小的孔,通过这个孔,所有细胞质内容物都被排出,留下完整的空细菌壳。由于 BGs 的完整表面结构,它们提供了灭活疫苗的安全性和减毒活疫苗的效力。在这项研究中,血清阴性的犬在第 0 天和第 21 天通过皮下(s/c)接种两种不同剂量的新开发的 BbBG 疫苗[较低的 105(BbBG-5)和较高的 107(BbBG-7)]。在第一次接种后 41 天,通过气溶胶对动物进行了致命的活 株 41 天的攻击。与阴性对照组相比,皮下接种 BbBG-7 疫苗的犬的自发性咳嗽评分显著降低(=0.0001)。此外,测试的 BbBG-7 疫苗在安全性和效力方面与阳性对照疫苗 Bronchicine CAe 相当。我们首次报道了液体配方 BGs 疫苗在动物研究中的成功应用。以前报道的使用 BGs 疫苗的研究是使用重新悬浮的冻干 BGs 制剂进行的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8859/6603212/bfb9e86c4a66/fimmu-10-01377-g0001.jpg

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