Polydatin Incorporated in Polycaprolactone Nanofibers Improves Osteogenic Differentiation

聚己内酯 间充质干细胞 纳米纤维 脚手架 再生(生物学) 化学 MTT法 粘附 组织工程 生物医学工程 碱性磷酸酶 体外 细胞生物学 材料科学 纳米技术 生物化学 医学 生物 聚合物 有机化学
作者
Stefania Lama,Amalia Luce,Giuseppe Bitti,Pilar Chacon-Millan,A Itro,Pasquale Ferranti,Giovanni D’Auria,Marcella Cammarota,Giovanni Francesco Nicoletti,Giuseppe Andrea Ferraro,Chiara Schiraldi,Michele Caraglia,Evžen Amler,Paola Stiuso
出处
期刊:Pharmaceuticals [MDPI AG]
卷期号:15 (6): 727-727 被引量:8
标识
DOI:10.3390/ph15060727
摘要

Polycaprolactone nanofibers are used as scaffolds in the field of tissue engineering for tissue regeneration or drug delivery. Polycaprolactone (PCL) is a biodegradable hydrophobic polyester used to obtain implantable nanostructures, which are clinically applicable due to their biological safety. Polydatin (PD), a glycosidic precursor of resveratrol, is known for its antioxidant, antitumor, antiosteoporotic, and bone regeneration activities. We aimed to use the osteogenic capacity of polydatin to create a biomimetic innovative and patented scaffold consisting of PCL-PD for bone tissue engineering. Both osteosarcoma cells (Saos-2) and mesenchymal stem cells (MSCs) were used to test the in vitro cytocompatibility of the PD-PCL scaffold. Reverse-phase (RP) HPLC was used to evaluate the timing release of PD from the PCL-PD nanofibers and the MTT assay, scanning electron microscopy, and alkaline phosphatase (ALP) activity were used to evaluate the proliferation, adhesion, and cellular differentiation in both osteosarcoma and human mesenchymal stem cells (MSCs) seeded on PD-PCL nanofibers. The proliferation of osteosarcoma cells (Saos-2) on the PD-PCL scaffold decreased when compared to cells grown on PLC nanofibers, whereas the proliferation of MSCs was comparable in both PCL and PD-PCL nanofibers. Noteworthy, after 14 days, the ALP activity was higher in both Saos-2 cells and MSCs cultivated on PD-PCL than on empty scaffolds. Moreover, the same cells showed a spindle-shaped morphology after 14 days when grown on PD-PCL as shown by SEM. In conclusion, we provide evidence that nanofibers appropriately coated with PD support the adhesion and promote the osteogenic differentiation of both human osteosarcoma cells and MSCs.

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