دورية أكاديمية

A novel vaccine strategy using quick and easy conversion of bacterial pathogens to unnatural amino acid-auxotrophic suicide derivatives

التفاصيل البيبلوغرافية
العنوان: A novel vaccine strategy using quick and easy conversion of bacterial pathogens to unnatural amino acid-auxotrophic suicide derivatives
المؤلفون: Yuya Nagasawa, Momoko Nakayama, Yusuke Kato, Yohsuke Ogawa, Swarmistha Devi Aribam, Yusaku Tsugami, Taketoshi Iwata, Osamu Mikami, Aoi Sugiyama, Megumi Onishi, Tomohito Hayashi, Masahiro Eguchi
المصدر: Microbiology Spectrum, Vol 12, Iss 4 (2024)
بيانات النشر: American Society for Microbiology, 2024.
سنة النشر: 2024
المجموعة: LCC:Microbiology
مصطلحات موضوعية: vaccine development strategy, unnatural amino acids, toxin-antitoxin systems, bacterial pathogens, Microbiology, QR1-502
الوصف: ABSTRACTWe propose a novel strategy for quick and easy preparation of suicide live vaccine candidates against bacterial pathogens. This method requires only the transformation of one or more plasmids carrying genes encoding for two types of biological devices, an unnatural amino acid (uAA) incorporation system and toxin-antitoxin systems in which translation of the antitoxins requires the uAA incorporation. Escherichia coli BL21-AI laboratory strains carrying the plasmids were viable in the presence of the uAA, whereas the free toxins killed these strains after the removal of the uAA. The survival time after uAA removal could be controlled by the choice of the uAA incorporation system and toxin-antitoxin systems. Multilayered toxin-antitoxin systems suppressed escape frequency to less than 1 escape per 109 generations in the best case. This conditional suicide system also worked in Salmonella enterica and E. coli clinical isolates. The S. enterica vaccine strains were attenuated with a >105 fold lethal dose. Serum IgG response and protection against the parental pathogenic strain were confirmed. In addition, the live E. coli vaccine strain was significantly more immunogenic and provided greater protection than a formalin-inactivated vaccine. The live E. coli vaccine was not detected after inoculation, presumably because the uAA is not present in the host animals or the natural environment. These results suggest that this strategy provides a novel way to rapidly produce safe and highly immunogenic live bacterial vaccine candidates.IMPORTANCELive vaccines are the oldest vaccines with a history of more than 200 years. Due to their strong immunogenicity, live vaccines are still an important category of vaccines today. However, the development of live vaccines has been challenging due to the difficulties in achieving a balance between safety and immunogenicity. In recent decades, the frequent emergence of various new and old pathogens at risk of causing pandemics has highlighted the need for rapid vaccine development processes. We have pioneered the use of uAAs to control gene expression and to conditionally kill host bacteria as a biological containment system. This report proposes a quick and easy conversion of bacterial pathogens into live vaccine candidates using this containment system. The balance between safety and immunogenicity can be modulated by the selection of the genetic devices used. Moreover, the uAA-auxotrophy can prevent the vaccine from infecting other individuals or establishing the environment.
نوع الوثيقة: article
وصف الملف: electronic resource
اللغة: English
تدمد: 2165-0497
Relation: https://doaj.org/toc/2165-0497
DOI: 10.1128/spectrum.03557-23
URL الوصول: https://doaj.org/article/e7791691b3c944da8da13cc51cb1a35c
رقم الأكسشن: edsdoj.7791691b3c944da8da13cc51cb1a35c
قاعدة البيانات: Directory of Open Access Journals
الوصف
تدمد:21650497
DOI:10.1128/spectrum.03557-23