首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Enhancement of osteogenic differentiation of human adipose derived stem cells by the controlled release of platelet lysates from hybrid scaffolds produced by supercritical fluid foaming
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Enhancement of osteogenic differentiation of human adipose derived stem cells by the controlled release of platelet lysates from hybrid scaffolds produced by supercritical fluid foaming

机译:通过超临界流体发泡产生的混合支架中血小板裂解物的受控释放,增强人脂肪来源的干细胞的成骨分化

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摘要

A new generation of scaffolds capable of acting not only as support for cells but also as a source of biological cues to promote tissue regeneration is currently a hot topic of in bone Tissue Engineering (TE) research. The inclusion of growth factor (GF) controlled release functionalities in the scaffolds is a possible strategy to achieve such goal. Platelet Lysate (PL) is an autologous source of GFs, providing several bioactive agents known to act on bone regeneration. In this study, chitosan-chondroitin sulfate nanoparticles loaded with PL were included in a poly(d,l-lactic acid) foam produced by supercritical fluid foaming. The tridimensional (3D) structures were then seeded with human adipose-derived stem cells (hASCs) and cultured in vitro under osteogenic stimulus. The osteogenic differentiation of the seeded hASCs was observed earlier for the PL-loaded constructs, as shown by the earlier alkaline phosphatase peak and calcium detection and stronger Runx2 expression at day 7 of culture, in comparison with the control scaffolds. Osteocalcin gene expression was upregulated in presence of PL during all culture period, which indicates an enhanced osteogenic induction. These results suggest the synergistic effect of PL and hASCs in combinatory TE strategies and support the potential of PL to increase the multifunctionality of the 3D hybrid construct for bone TE applications.
机译:新一代的支架不仅能够作为细胞的支持,而且还可以作为促进组织再生的生物学线索的来源,目前已成为骨组织工程(TE)研究的热门话题。支架中包含生长因子(GF)控释功能是实现这一目标的可能策略。血小板溶解液(PL)是GF的自体来源,提供了几种已知可作用于骨骼再生的生物活性剂。在这项研究中,负载有PL的壳聚糖-软骨素硫酸盐纳米颗粒包含在通过超临界流体发泡生产的聚(d,1-乳酸)泡沫中。然后将三维(3D)结构植入人脂肪来源的干细胞(hASC),并在成骨刺激下体外培养。与对照支架相比,较早的碱性磷酸酶峰和钙检测以及在培养的第7天更强的Runx2表达显示,对于PL负载的构建体,较早观察到了接种的hASC的成骨分化。在所有培养期间,在PL存在下骨钙素基因表达上调,这表明成骨诱导增强。这些结果表明,PL和hASC在组合TE策略中具有协同作用,并支持PL为骨TE应用增加3D杂交构建体多功能性的潜力。

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