热情
纤维软骨
巨噬细胞极化
化学
前交叉韧带
骨愈合
PI3K/AKT/mTOR通路
体内
蛋白激酶B
生物医学工程
细胞生物学
肌腱
材料科学
医学
解剖
病理
巨噬细胞
信号转导
生物
体外
生物化学
骨关节炎
替代医学
生物技术
关节软骨
作者
Chong Peng,Zhenjun Weng,Musha Hamushan,Weiguo Cai,Yubo Zhang,Zun Ren,Yi Sun,Xiaonong Zhang,Hao Shen,Pei Han
摘要
Magnesium (Mg) screws perform clinical potential in anterior cruciate ligament (ACL) reconstruction, and promote fibrocartilaginous entheses regeneration at the femoral entrance. We aim to prove that high-purity Magnesium (HP Mg) screws modulate macrophage polarization in fibrocartilage interface regeneration both in vitro and in vivo. HP Mg extracts performed good cytocompatibility and significantly promoted M2 macrophage polarization in the flow cytometry and ELISA assays. M2 macrophages stimulated fibrochondrocyte differentiation of co-cultured hBMSCs, and HP Mg extracts had synergistic effect on the process. Then we applied HP Mg screws, with Ti screws as control, in the ACL reconstruction rabbit model. In the histological and immunofluorescence analysis, HP Mg screws inhibited M1 polarization at 2 weeks and highly promoted M2 polarization at 2 and 4 weeks at the tendon-bone interface. Furthermore, regeneration of fibrocartilaginous entheses, rather than the fibrovascular scar interface, was detected in the HP Mg group at 12 weeks. For further mechanism study via RNA-seq detection and WB assays, we found that AKT1 was highly activated in M2 polarization, and HP Mg could stimulate AKT1 expression, rather than AKT2, in the early phase of tendon-bone healing. Our study elucidated macrophage polarization during tendon-bone healing process and emphasized HP Mg on M2 polarization and fibrocartilage interface regeneration via the selective activation of AKT1 and PI3K/AKT pathway.
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