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掺锂表面通过调节 PI3K/AKT 信号通路调节来激发免疫调节功能,从而增强骨整合。

A lithium-doped surface inspires immunomodulatory functions for enhanced osteointegration through PI3K/AKT signaling axis regulation.

机构信息

Department of Orthopedics, Research Center of Medical Sciences, Guangdong Provincial People's Hospital, Guangdong Academy of Medical Sciences, Guangzhou, Guangdong, 510080, China.

Department of Physics, Department of Materials Science and Engineering, and Department of Biomedical Engineering, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong, China.

出版信息

Biomater Sci. 2021 Dec 7;9(24):8202-8220. doi: 10.1039/d1bm01075a.

Abstract

The response of immune systems is crucial to the success of biomedical implants and in particular, orthopedic implants must possess appropriate immunomodulatory functions to allow sufficient osteointegration. In this work, lithium (Li) is incorporated into titanium (Ti) implants by plasma electrolytic oxidation to realize slow and sustained release of Li ions. cellular behaviors of mice bone marrow derived macrophages (BMDMs), including gene expression, cytokine secretion, and surface marker analysis suggest that a low dose of Li incorporation could enhance the recruitment of BMDMs, restrict pro-inflammatory polarization (M1 phenotype), and promote anti-inflammatory polarization (M2 phenotype). The air pouch implantation model is constructed to simulate the microenvironment associated with aseptic loosening and the histology results confirm that a small dose of Li could relieve inflammatory reactions surrounding the implants. Moreover, compared to the Li-free group, the macrophage-conditioned culture medium (MCM) from Li-doped samples is more beneficial for the osteogenic differentiation of the mouse embryo cell line (C3H10T1/2) and angiogenesis of human umbilical vein endothelial cells (HUVECs), which is further confirmed by better osteointegration ability in the bone implantation model of Li-incorporating Ti implants. Furthermore, the molecular mechanism study discloses that osteoimmunomodulatory activity of Li-incorporating Ti implants is achieved by regulating the cascade molecules in the PI3K/AKT signalling pathway. This work reveals that favorable immune-modulated osteogenesis and osseointegration of bone implants can be realized by the incorporation of Li which broadens the strategy to develop the next generation of immunomodulatory biomaterials.

摘要

免疫系统的反应对于生物医学植入物的成功至关重要,特别是骨科植入物必须具有适当的免疫调节功能,以允许充分的骨整合。在这项工作中,通过等离子体电解氧化将锂 (Li) 掺入钛 (Ti) 植入物中,以实现 Li 离子的缓慢和持续释放。小鼠骨髓来源的巨噬细胞 (BMDM) 的细胞行为,包括基因表达、细胞因子分泌和表面标志物分析表明,低剂量的 Li 掺入可以增强 BMDM 的募集,限制促炎极化 (M1 表型),并促进抗炎极化 (M2 表型)。构建气囊中植入模型来模拟与无菌性松动相关的微环境,组织学结果证实小剂量 Li 可以减轻植入物周围的炎症反应。此外,与无 Li 组相比,掺 Li 样品的巨噬细胞条件培养基 (MCM) 更有利于小鼠胚胎细胞系 (C3H10T1/2) 的成骨分化和人脐静脉内皮细胞 (HUVECs) 的血管生成,这通过在包含 Li 的 Ti 植入物的骨植入模型中更好的骨整合能力得到进一步证实。此外,分子机制研究表明,掺 Li 的 Ti 植入物的骨免疫调节活性是通过调节 PI3K/AKT 信号通路中的级联分子来实现的。这项工作揭示了通过掺入 Li 可以实现具有良好免疫调节的骨生成和骨整合,从而拓宽了开发新一代免疫调节生物材料的策略。

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