材料科学
调制(音乐)
复合数
骨愈合
对偶(语法数字)
镁
生物医学工程
复合材料
医学
解剖
冶金
美学
文学类
哲学
艺术
作者
Shubo Liu,Qinghua Chen,Yaowen Xu,Haidong Yu,Jue Cao,Zichu Ding,Weixin Zheng,Keyu Chen,Yuexin Zhao,Yan Shi,Shaoxiong Min,Ben Wang,Jie Shen,Binbin Chen
标识
DOI:10.1016/j.jma.2025.07.020
摘要
The clinical challenges of bone defect repair have driven the exploration of novel biomaterials with immunomodulatory and osteogenic functionalities. While previous studies predominantly focused on macrophages in the osteoimmune microenvironment, the regulatory mechanisms of T cells, particularly "conductor" CD4 + T cells, remain poorly understood. This study investigated the effects of magnesium ions (Mg 2+ ) on CD4 + T cell polarization and their mediated bone regeneration using Mg 2+ -functionalized composite materials. Results demonstrated that suitable Mg 2+ concentration range significantly enhanced CD4 + T cell activation and proliferation, promoting polarization toward Th1 and Treg subtypes, thereby establishing a pro-inflammatory and anti-inflammatory synergistic immune microenvironment. Conditioned medium experiments further confirmed that cytokines secreted from CD4 + T cells synergized with Mg 2+ to augment alkaline phosphatase activity and calcium deposition in bone marrow mesenchymal stem cells (MSCs), while mitigating the inhibitory effects of high Mg 2+ concentrations on osteogenesis. Then, nano-magnesium oxide-doped polycaprolactone scaffolds (Mg-PCL) and T cell activator-crosslinked magnesium-alginate hydrogels (T-Mg-Gel) were engineered to control the release of Mg 2+ . In vivo evaluations revealed that 1%Mg-PCL scaffolds facilitated membranous ossification in cranial defects via sustained Mg 2+ release, whereas T-Mg-Gel accelerated bone regeneration by suppressing early-stage inflammation and promoting long-term Treg cell regulation. This study revealed the pivotal role of CD4 + T cells in osteoimmunology and provides a novel strategy for designing intelligent bone repair materials with dual immunomodulatory and osteogenic capabilities.
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