Syeda Madiha Zahra, Hong Tu, Huang Chunming, Huang Wenhua, Mu Qingchun
The People's Hospital of Gaozhou, Guangdong Medical University, Maoming, 525200, China.
School of Basic Medical Sciences, Southern Medical University, Guangzhou, 510515, China.
Cell Death Discov. 2024 Mar 7;10(1):117. doi: 10.1038/s41420-024-01889-5.
Development of B cell memory is a conundrum that scientists are still exploring. Studies have been conducted in vitro and using advanced animal models to elucidate the mechanism underlying the generation of memory B cells (MBCs), the precise roles of MBCs against pathogens, and their protective functions against repeated infections throughout life. Lifelong immunity against invading diseases is mainly the result of overcoming a single infection. This protection is largely mediated by the two main components of B cell memory-MBCs and long-lived plasma cells (PCs). The chemical and cellular mechanisms that encourage fat selection for MBCs or long-lived PCs are an area of active research. Despite the fact that nearly all available vaccinations rely on the capacity to elicit B-cell memory, we have yet to develop successful vaccines that can induce broad-scale protective MBCs against some of the deadliest diseases, including malaria and AIDS. A deeper understanding of the specific cellular and molecular pathways that govern the generation, function, and reactivation of MBCs is critical for overcoming the challenges associated with vaccine development. Here, we reviewed literature on the development of MBCs and their reactivation, interaction with other cell types, strategies against invading pathogens, and function throughout life and discussed the recent advances regarding the key signals and transcription factors which regulate B cell memory and their relevance to the quest for vaccine development.
B细胞记忆的发育是一个科学家们仍在探索的难题。已经进行了体外研究,并使用先进的动物模型来阐明记忆B细胞(MBC)产生的潜在机制、MBC对抗病原体的确切作用以及它们在一生中对反复感染的保护功能。对入侵疾病的终身免疫主要是克服单次感染的结果。这种保护很大程度上由B细胞记忆的两个主要成分——MBC和长寿浆细胞(PC)介导。促进MBC或长寿PC选择的化学和细胞机制是一个活跃的研究领域。尽管几乎所有现有的疫苗接种都依赖于引发B细胞记忆的能力,但我们尚未开发出能够诱导针对包括疟疾和艾滋病在内的一些最致命疾病的广泛保护性MBC的成功疫苗。深入了解控制MBC产生、功能和再激活的特定细胞和分子途径对于克服与疫苗开发相关的挑战至关重要。在这里,我们回顾了关于MBC发育及其再激活、与其他细胞类型的相互作用、对抗入侵病原体的策略以及一生功能的文献,并讨论了关于调节B细胞记忆的关键信号和转录因子的最新进展及其与疫苗开发探索的相关性。