Center for Discovery and Innovation (CDI), Hackensack Meridian Health, 111 Ideation Way, Nutley, NJ 07110, USA.
Biosafety Level 3 Core, Yong Loo Lin School of Medicine, National University of Singapore (NUS), Level 15, Centre for Translational Medicine (MD6), NUS, 14 Medical Drive, Singapore 117599, Singapore.
Cell Rep. 2024 Jul 23;43(7):114426. doi: 10.1016/j.celrep.2024.114426. Epub 2024 Jul 2.
Understanding the role of B cells in tuberculosis (TB) is crucial for developing new TB vaccines. However, the changes in B cell immune landscapes during TB and their functional implications remain incompletely explored. Using high-dimensional flow cytometry to map the immune landscape in response to Mycobacterium tuberculosis (Mtb) infection, our results show an accumulation of marginal zone B (MZB) cells and other unconventional B cell subsets in the lungs and spleen, shaping an unconventional B cell landscape. These MZB cells exhibit activated and memory-like phenotypes, distinguishing their functional profiles from those of conventional B cells. Notably, functional studies show that MZB cells produce multiple cytokines and contribute to systemic protection against TB by shaping cytokine patterns and cell-mediated immunity. These changes in the immune landscape are reversible upon successful TB chemotherapy. Our study suggests that, beyond antibody production, targeting the regulatory function of B cells may be a valuable strategy for TB vaccine development.
了解 B 细胞在结核病(TB)中的作用对于开发新的结核病疫苗至关重要。然而,TB 期间 B 细胞免疫景观的变化及其功能意义仍未得到充分探索。我们使用高维流式细胞术来绘制针对结核分枝杆菌(Mtb)感染的免疫景观,结果显示边缘区 B(MZB)细胞和其他非常规 B 细胞亚群在肺部和脾脏中的积累,形成了非常规 B 细胞景观。这些 MZB 细胞表现出激活和记忆样表型,将其功能特征与常规 B 细胞区分开来。值得注意的是,功能研究表明,MZB 细胞产生多种细胞因子,并通过塑造细胞因子模式和细胞介导的免疫来促进全身对 TB 的保护。在成功的结核病化疗后,这些免疫景观的变化是可逆的。我们的研究表明,除了产生抗体之外,针对 B 细胞的调节功能可能是结核病疫苗开发的一个有价值的策略。