Marques-Neto Lazaro M, Piwowarska Zuzanna, Kanno Alex I, Moraes Luana, Trentini Monalisa M, Rodriguez Dunia, Silva Jose L S C, Leite Luciana C C
Laboratório De Desenvolvimento De Vacinas, Instituto Butantan, São Paulo, Brazil.
UnivLyon, Université Claude Bernard Lyon 1, Villeurbanne, France.
Expert Rev Vaccines. 2021 Aug;20(8):1001-1011. doi: 10.1080/14760584.2021.1951243. Epub 2021 Jul 13.
: Global perception of the potential for Bacille Calmette-Guérin (BCG), and consequently recombinant BCG (rBCG), in a variety of prophylactic and therapeutic applications has been increasing. A century of information on BCG, and three decades of experience with rBCG, has generated solid knowledge in this field.: Here, we review the current state of knowledge of BCG and rBCG development. Molecular tools have facilitated the expression of a variety of molecules in BCG, with the aim of improving its efficacy as a tuberculosis vaccine, generating polyvalent vaccines against other pathogens, including viruses, bacteria, and parasites, and developing immunotherapy approaches against noninvasive bladder cancer. BCG's recently appraised heterologous effects and prospects for expanding its application to other diseases are also addressed.: There are high expectations for new tuberculosis vaccines currently undergoing advanced clinical trials, which could change the prospects of the field. Systems biology could reveal effective biomarkers of protection, which would greatly support vaccine development. The development of appropriate large-scale production processes would further support implementation of new vaccines and rBCG products. The next few years should consolidate the broader applications of BCG and produce insights into improvements using the recombinant BCG technology.
全球对卡介苗(BCG)以及由此产生的重组卡介苗(rBCG)在各种预防和治疗应用中的潜力的认识一直在不断提高。一个世纪以来关于卡介苗的信息以及三十年的重组卡介苗经验,已经在该领域积累了扎实的知识。
在此,我们回顾卡介苗和重组卡介苗研发的当前知识状态。分子工具促进了各种分子在卡介苗中的表达,目的是提高其作为结核病疫苗的效力,生产针对包括病毒、细菌和寄生虫在内的其他病原体的多价疫苗,以及开发针对非侵袭性膀胱癌的免疫治疗方法。还讨论了卡介苗最近评估的异源效应及其扩展到其他疾病应用的前景。
目前正在进行高级临床试验的新型结核病疫苗备受期待,这可能会改变该领域的前景。系统生物学可能会揭示有效的保护生物标志物,这将极大地支持疫苗开发。开发合适的大规模生产工艺将进一步支持新疫苗和重组卡介苗产品的实施。未来几年应巩固卡介苗更广泛的应用,并深入了解利用重组卡介苗技术进行改进的方法。