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A Composite Hydrogel with High Mechanical Strength Fluorescence and Degradable Behavior for Bone Tissue Engineering

机译:具有高机械强度荧光性和可降解特性的复合水凝胶用于骨组织工程

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摘要

In this work, to obtain a novel composite hydrogel with high mechanical strength, fluorescence and degradable behavior for bone tissue engineering, we prepare a nanofiller and double-network (DN) structure co-enhanced carbon dots/hydroxyapatite/poly (vinyl alcohol) (CDs/HA/PVA) DN hydrogel. The composite hydrogels are fabricated by a combination of two fabrication techniques including chemical copolymerization and freezing‒thawing cycles, and further characterized by FTIR, XRD, etc. Additional investigations focus on the mechanical properties of the hydrogel with varying mass ratios of CDs to PVA, HA to PVA and different numbers of freezing/thawing cycles. The results show that the as-prepared CDs3.0/HA0.6/PVA DN9 hydrogel has optimized compression properties (Compression strength = 3.462 MPa, Young’s modulus = 4.5 kPa). This is mainly caused by the synergism effect of the nanofiller and chemical and physical co-crosslinking. The water content and swelling ratio of the CDs/HA/PVA SN and DN gels are also systematically investigated to reveal the relationship of their microstructural features and mechanical behavior. In addition, in vitro degradation tests of the CDs/HA/PVA DN hydrogel show that the DN hydrogels have a prominent degradable behavior. So, they have potential to be used as high-strength, self-tracing bone substitutes in the biomedical engineering field.
机译:在这项工作中,为了获得具有高机械强度,荧光性和可降解行为的新型复合水凝胶用于骨组织工程,我们制备了纳米填料和双网(DN)结构共增强的碳点/羟基磷灰石/聚(乙烯醇)( CD / HA / PVA)DN水凝胶。复合水凝胶是通过化学共聚和冻融循环这两种制造技术的组合而制造的,并进一步通过FTIR,XRD等表征。其他研究集中于水凝胶的机械性能,其中CD与PVA的质量比不同, HA到PVA以及不同数量的冷冻/解冻循环。结果表明,所制备的CDs3.0 / HA0.6 / PVA DN9水凝胶具有最佳的压缩性能(压缩强度= 3.462 MPa,杨氏模量= 4.5 kPa)。这主要是由纳米填料的协同作用以及化学和物理共交联引起的。还对CD / HA / PVA SN和DN凝胶的水含量和溶胀率进行了系统研究,以揭示其微观结构特征与力学行为之间的关系。此外,CD / HA / PVA DN水凝胶的体外降解测试表明,DN水凝胶具有明显的可降解行为。因此,它们有潜力在生物医学工程领域中用作高强度,自我追踪的骨替代品。

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