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Development of Biodegradable Poly(citrate)-Polyhedral Oligomeric Silsesquioxanes Hybrid Elastomers with High Mechanical Properties and Osteogenic Differentiation Activity

机译:具有高机械性能和成骨分化活性的可生物降解的聚(柠檬酸酯)-多面体低聚倍半硅氧烷杂化弹性体的开发

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Biodegradable elastomeric biomaterials have attracted much attention in tissue engineering due to their biomimetic viscoelastic behavior and biocothpatibility. However, the low mechanical stability at hydrated state, fast biodegradation in vivo, and poor osteogenic activity greatly limited bioelastomers applications in bone tissue regeneration. Herein, we develop a series of poly(octanediol citrate) polyhedral oligomeric silsesquioxanes (POC-POSS) hybrids with highly tunable elastomeric behavior (hydrated state) and biodegradation and osteoblasts biocompatibility through a facile one-pot thermal polymerization strategy. POC POSS hybrids show significantly improved stiffness and ductility in either dry or hydrated conditions, as well as good antibiodegradation ability (20-50% weight loss in 3 months). POC POSS hybrids exhibit significantly enhanced osteogenic differentiation through upregulating alkaline phosphatase (ALP) activity, calcium deposition, and expression of osteogenic markers (ALPL, BGLAP, and Runx2). The high mechanical stability at hydrated state and enhanced osteogenic activity make POC POSS hybrid elastorriers promising as scaffolds and nanoscale vehicles for bone tissue regeneration and drug delivery. This study may also provide a new strategy (controlling the stiffness under hydrated condition) to design advanced hybrid biomaterials with high mechanical properties under physiological Condition for tissue regeneration applications.
机译:由于可生物降解的弹性生物材料具有仿生的粘弹性和生物相容性,因此在组织工程中引起了广泛的关注。但是,在水合状态下机械稳定性低,体内生物降解速度快以及成骨活性差,大大限制了生物弹性体在骨组织再生中的应用。在这里,我们开发了一系列具有高度可调的弹性行为(水合状态),生物降解性和成骨细胞生物相容性的聚(柠檬酸辛二醇)多面体低聚倍半硅氧烷(POC-POSS)杂化物,通过一种简便的一锅式热聚合策略进行了生物相容性研究。 POC POSS杂种在干燥或水合条件下均显示出显着改善的刚度和延展性,并具有良好的抗生物降解能力(3个月内失重20-50%)。 POC POSS杂种通过上调碱性磷酸酶(ALP)活性,钙沉积和成骨标记物(ALPL,BGLAP和Runx2)的表达,显着增强了成骨分化。在水合状态下的高机械稳定性和增强的成骨活性使POC POSS混合弹性体有望成为用于骨组织再生和药物递送的支架和纳米级载体。这项研究还可以提供一种新的策略(在水合条件下控制硬度),以设计在生理条件下具有高机械性能的先进混合生物材料,用于组织再生应用。

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