Chen Yue, Wang Ting, Yan Ziwei, Zeng Fanrui, Li Yingyi, Bao Chen, Wang Hua, Pantulap Usanee, Boccaccini Aldo R, Zheng Kai, Sun Wen
Department of Basic Science of Stomatology, The Affiliated Stomatological Hospital of Nanjing Medical University, Nanjing 210029, PR China; Jiangsu Province Engineering Research Center of Stomatological Translational Medicine, Nanjing Medical University, Nanjing, 210029, PR China; State Key Laboratory Cultivation Base of Research, Prevention and Treatment for Oral Diseases, Nanjing Medical University, Nanjing, 210029, PR China.
Department of Basic Science of Stomatology, The Affiliated Stomatological Hospital of Nanjing Medical University, Nanjing 210029, PR China; State Key Laboratory Cultivation Base of Research, Prevention and Treatment for Oral Diseases, Nanjing Medical University, Nanjing, 210029, PR China.
Acta Biomater. 2025 Jul 1;201:648-664. doi: 10.1016/j.actbio.2025.06.001. Epub 2025 Jun 3.
B cells are critical in bone homeostasis, and their dysfunction is linked to various bone disorders. Bioactive glasses (BGs) are known for their immunomodulatory properties and are increasingly utilized in bone regeneration. However, the specific effects of BGs on B cells and their subsequent impact on osteogenesis remain unclear. In this study, we investigated the immunomodulatory effects of three BGs (45S5-BG, 13-93-BG, and B3-Cu-Zn-BG) on B cells. 13-93-BG had minimal effect on the survival of activated B cells, while 45S5-BG induced a noticeable cytotoxic effect on B cells. Notably, B3-Cu-Zn-BG exhibited the highest cytotoxicity towards pathogenic B cells, prompting further investigation into its mechanisms. The ionic dissolution products (IDPs) of B3-Cu-Zn-BG exerted concentration- and time-dependent cytotoxicity on B cells by upregulating the expression of genes associated with the mitochondrial apoptosis pathway and NADPH oxidases. B3-Cu-Zn-BG-derived IDPs elevated reactive oxygen species production in B cells, which induced apoptosis in a concentration-dependent manner. Additionally, when co-cultured with bone marrow stem cells (BMSCs), B3-Cu-Zn-BG-derived IDPs promoted osteoblastic differentiation of BMSCs while selectively targeting and eliminating B cells. To confirm the in vivo osteoimmunomodulatory effects of B3-Cu-Zn-BG-derived IDPs, we employed a human tumor necrosis factor transgenic (TNF-tg) mouse model of rheumatoid arthritis. Intra-articular injection of the IDPs in TNF-tg arthritic mice attenuated bone erosion by reducing B cell aggregates and improving osteoblastic differentiation. This study indicates that B3-Cu-Zn-BG not only induces B cell apoptosis but also promotes osteogenesis, highlighting its potential as a therapeutic strategy for inflammatory bone diseases. STATEMENT OF SIGNIFICANCE: Despite decades of use in tissue regeneration, bioactive glasses (BGs) have not been thoroughly evaluated for their immunomodulatory effects. B cells play a crucial role in the pathogenesis of numerous inflammatory bone diseases. By investigating the immunomodulatory properties of B3-Cu-Zn-BG, this research reveals its ability to selectively induce B cell apoptosis and promote osteoblastic differentiation of bone marrow stem cells. Notably, in a rheumatoid arthritis mouse model, B3-Cu-Zn-BG significantly reduced bone erosion and enhanced osteogenesis. BGs of specific compositions have thus great potential in regulating the osteoimmunology microenvironment by locally modulating B cells. These findings underscore the potential of BGs as a novel therapeutic approach for inflammatory bone diseases, offering insights into bone regeneration and immunomodulation.
B细胞在骨稳态中起关键作用,其功能障碍与多种骨疾病相关。生物活性玻璃(BGs)以其免疫调节特性而闻名,并且越来越多地用于骨再生。然而,BGs对B细胞的具体作用及其随后对骨生成的影响仍不清楚。在本研究中,我们研究了三种BGs(45S5-BG、13-93-BG和B3-Cu-Zn-BG)对B细胞的免疫调节作用。13-93-BG对活化B细胞的存活影响最小,而45S5-BG对B细胞诱导出明显的细胞毒性作用。值得注意的是,B3-Cu-Zn-BG对致病性B细胞表现出最高的细胞毒性,促使对其机制进行进一步研究。B3-Cu-Zn-BG的离子溶解产物(IDPs)通过上调与线粒体凋亡途径和NADPH氧化酶相关的基因表达,对B细胞发挥浓度和时间依赖性的细胞毒性作用。B3-Cu-Zn-BG衍生的IDPs提高了B细胞中活性氧的产生,以浓度依赖性方式诱导细胞凋亡。此外,当与骨髓干细胞(BMSCs)共培养时,B3-Cu-Zn-BG衍生的IDPs促进了BMSCs的成骨细胞分化,同时选择性地靶向并消除B细胞。为了证实B3-Cu-Zn-BG衍生的IDPs在体内的骨免疫调节作用,我们采用了类风湿性关节炎的人肿瘤坏死因子转基因(TNF-tg)小鼠模型。在TNF-tg关节炎小鼠中关节内注射IDPs通过减少B细胞聚集和改善成骨细胞分化减轻了骨侵蚀。本研究表明,B3-Cu-Zn-BG不仅诱导B细胞凋亡,还促进骨生成,突出了其作为炎症性骨疾病治疗策略的潜力。重要性声明:尽管生物活性玻璃(BGs)在组织再生中使用了数十年,但其免疫调节作用尚未得到充分评估。B细胞在众多炎症性骨疾病的发病机制中起关键作用。通过研究B3-Cu-Zn-BG的免疫调节特性,本研究揭示了其选择性诱导B细胞凋亡和促进骨髓干细胞成骨细胞分化的能力。值得注意的是,在类风湿性关节炎小鼠模型中,B3-Cu-Zn-BG显著减少了骨侵蚀并增强了骨生成。因此,特定组成的BGs在通过局部调节B细胞来调节骨免疫学微环境方面具有巨大潜力。这些发现强调了BGs作为炎症性骨疾病新型治疗方法的潜力,为骨再生和免疫调节提供了见解。