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Xeno-Free In Vitro Cultivation and Osteogenic Differentiation of hAD-MSCs on Resorbable 3D Printed RESOMER®

机译:在可再吸收的3D印刷RESOMER®上无异常培养和骨质培养和成骨分化

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摘要

The development of alloplastic resorbable materials can revolutionize the field of implantation technology in regenerative medicine. Additional opportunities to colonize the three-dimensionally (3D) printed constructs with the patient’s own cells prior to implantation can improve the regeneration process but requires optimization of cultivation protocols. Human platelet lysate (hPL) has already proven to be a suitable replacement for fetal calf serum (FCS) in 2D and 3D cell cultures. In this study, we investigated the in vitro biocompatibility of the printed RESOMER Filament LG D1.75 materials as well as the osteogenic differentiation of human mesenchymal stem cells (hMSCs) cultivated on 3D printed constructs under the influence of different medium supplements (FCS, human serum (HS) and hPL). Additionally, the in vitro degradation of the material was studied over six months. We demonstrated that LG D1.75 is biocompatible and has no in vitro cytotoxic effects on hMSCs. Furthermore, hMSCs grown on the constructs could be differentiated into osteoblasts, especially supported by supplementation with hPL. Over six months under physiological in vitro conditions, a distinct degradation was observed, which, however, had no influence on the biocompatibility of the material. Thus, the overall suitability of the material LG D1.75 to produce 3D printed, resorbable bone implants and the promising use of hPL in the xeno-free cultivation of human MSCs on such implants for autologous transplantation have been demonstrated.
机译:所有塑料可再吸收材料的发展可以在再生医学中彻底改变植入技术领域。在植入之前将三维(3D)印刷构建体殖民殖民的额外机会可以改善再生过程,但需要优化培养方案。人的血小板裂解物(HPL)已经证明是在2D和3D细胞培养物中对胎牛血清(FCS)的合适替代品。在这项研究中,我们研究了印刷重构丝Lg D1.75材料的体外生物相容性,以及在3D印刷构建体中培养的人间充质干细胞(HMSCs)的骨质发生分化在不同介质补充剂(FCS,人血清(HS)和HPL)。另外,在六个月内研究了材料的体外降解。我们证明LG D1.75是生物相容性的,对HMSCs没有体外细胞毒性作用。此外,在构建体上生长的HMSC可以分化成骨细胞,特别是通过用HPL补充的支持。在生理体外条件下超过六个月,观察到明显的降解,然而,对材料的生物相容性没有影响。因此,已经证明了材料LG D1.75的整体适用性。已经证实了在这种植入物上产生3D印刷,可再吸收的骨植入物和有望使用HPL在这种用于自体移植的自体移植的植入物上的卵巢培养中。

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