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针对……的细菌幽灵疫苗的生产与特性分析

Production and Characterization of Bacterial Ghost Vaccine against .

作者信息

Ali Randa H, Ali Mohamed E, Samir Reham

机构信息

Department of Microbiology and Immunology, National Organization for Research and Control of Biological (NORCB), Giza 12622, Egypt.

Department of Microbiology and Immunology, Faculty of Pharmacy, Cairo University, Cairo 11562, Egypt.

出版信息

Vaccines (Basel). 2022 Dec 23;11(1):37. doi: 10.3390/vaccines11010037.

Abstract

Bacterial ghosts (BGS) are empty non-living envelopes produced either genetically or chemically. This study investigated a novel chemical protocol for the production of Neisseria meningitidis ghost vaccine using tween 80 followed by a pH reduction with lactic acid. For our vaccine candidate, both safety and immunogenicity aspects were evaluated. The ghost pellets showed no sign of growth upon cultivation. BGS were visualized by scanning electron microscopy, illustrating the formation of trans-membrane tunnels with maintained cell morphology. Gel electrophoresis showed no distinctive bands of the cytoplasmic proteins and DNA, assuring the formation of ghost cells. In animal model, humoral immune response significantly increased when compared to commercial vaccine (p < 0.01). Moreover, serum bactericidal assay (SBA) recorded 94.67% inhibition compared to 64% only for the commercial vaccine after three vaccination doses. In conclusion, this is the first N. meningitidis ghost vaccine candidate, proven to be effective, economic, and with significant humoral response and efficient SBA values; however, clinical studies should be performed.

摘要

细菌“幽灵”(BGS)是通过基因或化学方法产生的无生命的空包膜。本研究探索了一种使用吐温80随后用乳酸降低pH值来生产脑膜炎奈瑟菌“幽灵”疫苗的新化学方法。对于我们的候选疫苗,评估了安全性和免疫原性两个方面。“幽灵”菌 pellet 在培养时未显示生长迹象。通过扫描电子显微镜观察到BGS,显示出具有维持细胞形态的跨膜通道的形成。凝胶电泳未显示细胞质蛋白和DNA的明显条带,证实了“幽灵”细胞的形成。在动物模型中,与商业疫苗相比,体液免疫反应显著增加(p < 0.01)。此外,血清杀菌试验(SBA)记录的抑制率为94.67%,而商业疫苗在三次接种剂量后仅为64%。总之,这是首个被证明有效、经济且具有显著体液反应和高效SBA值的脑膜炎奈瑟菌“幽灵”候选疫苗;然而,仍需进行临床研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2969/9865227/7a0e0e7a0049/vaccines-11-00037-g001.jpg

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