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Hollow mesoporous zirconia delivery system for biomineralization precursors

机译:生物矿化前体的中空介孔氧化锆递送系统

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Graphical abstract Display Omitted Abstract Strategies based on the combination of nanocarrier delivery systems and scaffolds provide bone tissue engineering scaffolds with multifunctional capability. Zirconia, a biocompatible ceramic commonly used in orthopedic and dental implants, was used to synthesize hollow mesoporous nanocapsules for loading, storage and sustained release of a novel polyamine-stabilized liquid precursor phase of amorphous calcium phosphate (PAH-ACP) for collagen biomineralization and bone marrow stromal cells osteoinduction. Hollow mesoporous zirconia (hmZrO 2 ) nanocapsules loaded with biomimetic precursors exhibited pH-sensitive release capability and good biocompatibility. The PAH-ACP released from loaded hmZrO 2 still retained the ability to infiltrate and mineralize collagen fibrils as well as exhibited osteoinductivity. A collagen scaffold blended with PAH-ACP@hmZrO 2 supplement and stem cells may be a promising tool for bone tissue engineering. Statement of Significance The advent of nanotechnology has catalyzed the development of bone tissue engineering strategies based on the combination of nanocarrier delivery systems and scaffolds, which provide distinct advantages, including the possibilities of sustained release and protection of the bioactive agents, site-specific pharmacological effects and reduction of side effects. Herein, hollow mesoporous zirconia (hmZrO 2 ) nanocapsules with pH-sensitive capacity were synthesized for loading, storage and sustained release of a novel polyamine-stabilized liquid precursor phase of ACP (PAH-ACP). The loaded nanocapsules show good biocompatibility and demonstrate bioactivities for collagen biomineralization and bone marrow stromal cells osteoinduction. Our results may offer a promising tool for designing bone tissue engineering “cocktail therapy” involving seeding scaffolds with biomineralization precursors loaded hmZrO 2 supplement and stem cells.
机译:图形摘要显示省略了基于纳米载波输送系统和支架的组合的抽象策略提供了具有多功能能力的骨组织工程支架。氧化锆,常用于骨科和牙科植入物的生物相容性陶瓷,用于合成中空介孔纳米胶囊,用于为胶原生物矿化和骨骼的非晶磷酸钙(PAH-ACP)的新型多胺稳定液体前体相的负载,储存和持续释放骨髓基质细胞骨质诱导。含有仿生前体的中空介孔氧化锆(HMZRO 2)纳米胶囊,具有pH敏感的释放能力和良好的生物相容性。从装载的HMZRO 2中释放的PAH-ACP仍然保留了渗透和矿化胶原蛋白原纤维的能力以及表现出骨诱导性。用PAH-ACP @ HMZRO 2补充剂和干细胞混合的胶原蛋白支架可以是骨组织工程的有希望的工具。重要性纳米技术的出现催化了基于纳米载体输送系统和支架组合的骨组织工程策略的发展,这提供了不同的优势,包括持续释放和保护生物活性剂,特异性药理作用的可能性并减少副作用。这里,合成了具有pH敏感性的中空介孔氧化锆(HMZRO 2)纳米胶囊,用于加载,储存和持续释放ACP(PAH-ACP)的新型多胺稳定的液体前体阶段。载荷的纳米胶囊显示出良好的生物相容性,并证明胶原蛋白生物矿化和骨髓基质细胞骨液的生物活性。我们的成果可提供设计骨组织工程“鸡尾酒疗法”的有前途的工具,涉及播种与生物丙二原化前体的播种支架,负载Hmzro 2补充剂和干细胞。

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