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具有多种自由基清除活性的构象调节“类纳米酶”氧化铈,用于骨免疫学调节和血管化骨整合。

Conformationally regulated "nanozyme-like" cerium oxide with multiple free radical scavenging activities for osteoimmunology modulation and vascularized osseointegration.

作者信息

Bao Shusen, Yu Dongmei, Tang Zhen, Wu Hao, Zhang Hao, Wang Ning, Liu Yichao, Huang Hai, Liu Chaozong, Li Xiaokang, Guo Zheng

机构信息

Department of Orthopedics, Tangdu Hospital, Fourth Military Medical University, Xi'an, 710038, China.

Department of Orthopedics, No. 903 Hospital of PLA Joint Logistic Support Force, Hangzhou, 310000, China.

出版信息

Bioact Mater. 2023 Dec 14;34:64-79. doi: 10.1016/j.bioactmat.2023.12.006. eCollection 2024 Apr.

Abstract

Given post-operative aseptic loosening in orthopedic disease treatment, osteointegration occurs at the bone-implant interface as a holistic process, including immunoregulation (e.g., macrophage polarization), angiogenesis and osteogenesis in sequence. In order to achieve early rapid and satisfactory osseointegration, different nano-shaped (nanocone, nanopolyhedron and nanoflower abbr. NC, NP & NF) cerium oxide (CeO) coatings, endowed with "nanozyme-like" activities for multiple free radical elimination and osteoimmunology regulation, were hydrothermally synthesized on titanium alloy (TC4). cell experiments showed that nano-CeO coated TC4 not only induced polarization of RAW264.7 cells toward M2 phenotype, but also promoted angiogenesis and vascularization of endothelial cells along with differentiation and mineralization of osteogenic precursor cells. Improvements in M2-polarized macrophage, angiogenesis, and bone regeneration were further confirmed in a rat femoral condyle model. Among the above three nano-morphologies, NF exhibited the best osseoinetegration. RNA sequencing and mechanism exploration suggested that the inhibition of PI3K-AKT signaling pathway was essential for immunomodulatory capacity of NF. In conclusion, it provided promising insights into the immunomodulatory exploitation of orthopedic implants.

摘要

在骨科疾病治疗中,鉴于术后无菌性松动,骨整合在骨 - 植入物界面作为一个整体过程发生,依次包括免疫调节(如巨噬细胞极化)、血管生成和成骨。为了实现早期快速且令人满意的骨整合,在钛合金(TC4)上通过水热合成法制备了具有“类纳米酶”活性以消除多种自由基并调节骨免疫学的不同纳米形状(纳米锥、纳米多面体和纳米花,简称NC、NP和NF)的氧化铈(CeO)涂层。细胞实验表明,纳米CeO涂层的TC4不仅诱导RAW264.7细胞向M2表型极化,还促进内皮细胞的血管生成和血管化以及成骨前体细胞的分化和矿化。在大鼠股骨髁模型中进一步证实了M2极化巨噬细胞、血管生成和骨再生的改善。在上述三种纳米形态中,NF表现出最佳的骨整合效果。RNA测序和机制探索表明,抑制PI3K - AKT信号通路对于NF的免疫调节能力至关重要。总之,这为骨科植入物的免疫调节开发提供了有前景的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/facf/10770363/4e8c4f2da9c3/ga1.jpg

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