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首页> 外文期刊>Acta biomaterialia >Adiponectin improves the osteointegration of titanium implant under diabetic conditions by reversing mitochondrial dysfunction via the AMPK pathway in vivo and in vitro
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Adiponectin improves the osteointegration of titanium implant under diabetic conditions by reversing mitochondrial dysfunction via the AMPK pathway in vivo and in vitro

机译:脂联素通过在体内和体外逆转线粒体功能障碍通过逆转线粒体功能障碍改善糖尿病条件下的钛植入物的骨整折

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Graphical abstract Display Omitted Abstract Diabetes-induced reactive oxygen species (ROS) overproduction would result in compromised osteointegration of titanium implant (TI) and high rate of implant failure, yet the underlying mechanisms remain elusive. Adiponectin (APN) is a fat-derived adipocytokine with strong antioxidant, mitochondrial-protective and anti-diabetic efficacies. We hypothesized that mitochondrial dysfunction under diabetes may account for the oxidative stress in osteoblasts and titanium-bone interface (TBI) instability, which could be ameliorated by APN. To test this hypothesis, we incubated primary rat osteoblasts on TI and tested the cellular behaviors when subjected to normal milieu (NM), diabetic milieu (DM), DM + APN, DM + AICAR (AMPK activator) and DM + APN + Compound C (AMPK inhibitor). In vivo, APN or APN + Compound C were administered to diabetic db / db mice with TI implanted in their femurs. Results showed that diabetes induced structural damage, dysfunction and content decrease of mitochondria in osteoblasts, which led to ROS overproduction, dysfunction and apoptosis of osteoblasts accompanied by the inhibition of AMPK signaling. APN alleviated the mitochondrial damage by activating AMPK, thus reversing osteoblast impairment and improving the osteointegration of TI evidenced by Micro-CT and histological analysis. Furthermore, AICAR showed beneficial effects similar to APN treatment, while the protective effects of APN were abolished when AMPK activation was blocked by Compound C. This study clarifies mitochondrial dysfunction as a crucial mechanism in the impaired bone healing and implant loosening in diabetes, and provides APN as a novel promising active component for biomaterial-engineering to improve clinical performance of TI in diabetic patients. Statement of Significance The loosening rate of titanium implants in diabetic patients is high. The underlying mechanisms remain elusive and, with the rapid increase of diabetic morbility, efficacious strategies to mitigate this problem have become increasingly important. Our study showed that the mitochondrial impairment and the consequent oxidative stress in osteoblasts at the titanium-bone interface (TBI) play a critical role in the diabetes-induced poor bone repair and implant destabilization, which could become therapeutic targets. Furthermore, adiponectin, a cytokine, promotes the bio-functional recovery of osteoblasts and bone regeneration at the TBI in diabetes. This provides APN as a novel bioactive component used in material-engineering to promote the osteointegration of implants, which could reduce implant failure, especially for diabetic patients. ]]>
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著录项

  • 来源
    《Acta biomaterialia 》 |2017年第2017期| 共16页
  • 作者单位

    Department of Orthopedics Xijing Hospital The Fourth Military Medical University;

    Department of Orthopedics Xijing Hospital The Fourth Military Medical University;

    Department of Orthopedics Xijing Hospital The Fourth Military Medical University;

    Department of Orthopedics Xijing Hospital The Fourth Military Medical University;

    Department of Orthopedics Xijing Hospital The Fourth Military Medical University;

    Department of Orthopedics Xijing Hospital The Fourth Military Medical University;

    Department of Orthopedics Xijing Hospital The Fourth Military Medical University;

    Department of Orthopedics Xijing Hospital The Fourth Military Medical University;

    Department of Orthopedics Xijing Hospital The Fourth Military Medical University;

    Department of Orthopedics Xijing Hospital The Fourth Military Medical University;

    Department of Orthopedics Xijing Hospital The Fourth Military Medical University;

    Department of Orthopedics Xijing Hospital The Fourth Military Medical University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学 ;
  • 关键词

    Titanium implant; Diabetes; Mitochondria; ROS; Adiponectin; AMPK;

    机译:钛植入物;糖尿病;线粒体;ROS;脂联素;安培;

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