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首页> 外文期刊>Acta biomaterialia >Bone extracts immunomodulate and enhance the regenerative performance of dicalcium phosphates bioceramics
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Bone extracts immunomodulate and enhance the regenerative performance of dicalcium phosphates bioceramics

机译:骨提取免疫调节,增强磷酸二核生物陶瓷的再生性能

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摘要

Immunomodulation strategies are believed to improve the integration and clinical performance of synthetic bone substitutes. One potential approach is the modification of biomaterial surface chemistry to mimic bone extracellular matrix (ECM). In this sense, we hypothesized that coating synthetic dicalcium phosphate (DCP) bioceramics with bone ECM proteins would modulate the host immune reactions and improve their regenerative performance. To test this, we evaluated the in vitro proteomic surface interactions and the in vivo performance of ECM-coated bioceramic scaffolds. Our results demonstrated that coating DCP scaffolds with bone extracts, specifically those containing calcium-binding proteins, dramatically modulated their interaction with plasma proteins in vitro, especially those relating to the innate immune response. In vivo, we observed an attenuated inflammatory response against the bioceramic scaffolds and enhanced peri-scaffold new bone formation supported by the increased osteoblastogenesis and reduced osteoclastogenesis. Furthermore, the bone extract rich in calcium-binding proteins can be 3D-printed to produce customized hydrogels with improved regeneration capabilities. In summary, bone extracts containing calcium-binding proteins can enhance the integration of synthetic biomaterials and improve their ability to regenerate bone probably by modulating the host immune reaction. This finding helps understand how bone allografts regenerate bone and opens the door for new advances in tissue engineering and bone regeneration.
机译:据信免疫调节策略改善了合成骨替代品的整合和临床表现。一种潜在的方法是对模拟骨细胞外基质(ECM)模拟生物材料化学的改性。从这个意义上讲,我们假设具有骨ECM蛋白的涂料合成二核磷酸盐(DCP)生物陶瓷将调节宿主免疫反应并改善其再生性能。为了测试这一点,我们评估了体外蛋白质组学表面相互作用和ECM涂层生物陶瓷支架的体内性能。我们的结果表明,用骨提取物涂覆DCP支架,特别是含有钙结合蛋白的那些,显着地调节了它们与血浆蛋白质的体外相互作用,特别是与先天免疫应答有关的蛋白质。在体内,我们观察到对生物陶瓷支架的减毒炎症反应,并通过增加的骨细胞发生和降低的骨质细胞发生,增强了佩里支架新的骨形成。此外,富含钙结合蛋白的骨提取物可以3D印刷以产生具有改善的再生能力的定制水凝胶。总之,含有钙结合蛋白的骨提取物可以通过调节宿主免疫反应来增强合成生物材料的整合,并改善它们的再生骨的能力。这一发现有助于了解骨移植物的再生骨头,并为组织工程和骨再生的新进步开辟门。

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