首页> 美国卫生研究院文献>Regenerative Biomaterials >Porous polyetheretherketone microcarriers fabricated via hydroxylation together with cell-derived mineralized extracellular matrix coatings promote cell expansion and bone regeneration
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Porous polyetheretherketone microcarriers fabricated via hydroxylation together with cell-derived mineralized extracellular matrix coatings promote cell expansion and bone regeneration

机译:通过羟基化与细胞衍生的矿化细胞外基质涂料一起制造多孔聚醚醚酮微载体促进细胞膨胀和骨再生

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摘要

Porous microcarriers have aroused increasing attention recently by facilitating oxygen and nutrient transfer, supporting cell attachment and growth with sufficient cell seeding density. In this study, porous polyetheretherketone (PEEK) microcarriers coated with mineralized extracellular matrix (mECM), known for their chemical, mechanical and biological superiority, were developed for orthopedic applications. Porous PEEK microcarriers were derived from smooth microcarriers using a simple wet-chemistry strategy involving the reduction of carbonyl groups. This treatment simultaneously modified surface topology and chemical composition. Furthermore, the microstructure, protein absorption, cytotoxicity and bioactivity of the obtained porous microcarriers were investigated. The deposition of mECM through repeated recellularization and decellularization on the surface of porous MCs further promoted cell proliferation and osteogenic activity. Additionally, the mECM coated porous microcarriers exhibited excellent bone regeneration in a rat calvarial defect repair model in vivo, suggesting huge potential applications in bone tissue engineering.
机译:多孔微载体通过促进氧气和营养转移,支持具有足够的细胞播种密度的细胞附着和生长而引起了越来越多的关注。在该研究中,为整形外科应用开发了涂覆有矿化细胞外基质(MECM)的多孔聚醚醚酮(PEEK)微载体,以其化学,机械和生物优越性而开发。使用涉及减少羰基的简单的湿化学策略来源于光滑的微载体,衍生多孔PEEK微载体。该处理同时改性表面拓扑和化学成分。此外,研究了所得多孔微载体的微观结构,蛋白质吸收,细胞毒性和生物活性。通过对多孔MCS表面的重复透射率和脱细胞化的沉积方法进一步促进了细胞增殖和成骨活性。另外,MECM涂层多孔微载体在体内大鼠颅骨缺陷修复模型中表现出优异的骨再生,表明骨组织工程中的巨大潜在应用。

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