Department of Biosciences, School of Basic and Applied Sciences, Galgotias University, Greater Noida, Uttar Pradesh, India.
Department of Pharmacy, School of Medical and Allied Sciences, Galgotias University, Greater Noida, Uttar Pradesh, India.
Indian J Tuberc. 2023;70 Suppl 1:S14-S23. doi: 10.1016/j.ijtb.2023.05.012. Epub 2023 May 15.
Despite intense elimination efforts, tuberculosis (TB) still poses a threat to world health, disproportionately affecting less developed and poorer countries. The Bacillus Calmette-Guérin (BCG) vaccine, the only anti-TB authorized vaccine can partially stop TB infection and transmission, however, its effectiveness ranges from 0 to 80%. As a result, there is an urgent need for a more potent TB vaccination given the widespread incidence of the disease. Enhancing BCG's effectiveness is also important due to the lack of other licensed vaccinations. Recently, fascinating research into BCG revaccination techniques by modulating its mode of action i.e., intravenous (IV) BCG delivery has yielded good clinical outcomes showing it still has a place in current vaccination regimens. We must thus go over the recent evidence that suggests trained immunity, and BCG vaccination techniques and describe how the vaccination confers protection against bacteria that cause both TB and non-tuberculosis. This review of the literature offers an updated summary and viewpoints on BCG-based TB immunization regimens (how it affects granulocytes at the epigenetic and hematopoietic stem cell levels which may be related to its efficacy), and also examines how the existing vaccine is being modified to be more effective, which may serve as an inspiration for future studies on the development of TB vaccines.
尽管进行了强化消除工作,但结核病 (TB) 仍然对世界健康构成威胁, disproportionately 影响欠发达和较贫穷的国家。卡介苗 (BCG) 疫苗是唯一获得授权的抗结核病疫苗,可以部分阻止结核病感染和传播,然而,其有效性范围为 0 至 80%。由于该病广泛发生,因此迫切需要更有效的结核病疫苗接种。由于缺乏其他许可的疫苗,增强 BCG 的效果也很重要。最近,通过调节其作用方式即静脉内 (IV) BCG 递送对 BCG 再接种技术的令人着迷的研究产生了良好的临床结果,表明它在当前的疫苗接种方案中仍然占有一席之地。因此,我们必须仔细研究最近的证据,这些证据表明训练有素的免疫和 BCG 接种技术,并描述疫苗如何提供针对引起结核病和非结核病的细菌的保护。对文献的回顾提供了基于 BCG 的结核病免疫接种方案的最新总结和观点(它如何影响在表观遗传和造血干细胞水平上的粒细胞,这可能与其功效有关),并检查了如何修改现有的疫苗以提高其有效性,这可能为未来的结核病疫苗开发研究提供灵感。