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Platelet‐rich fibrin‐based matrices to improve angiogenesis in an in vitro co‐culture model for bone tissue engineering

机译:在用于骨骼组织工程的体外共培养模型中富含血小板的基于纤维蛋白的基质可改善血管生成

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摘要

In the context of prevascularization strategies for tissue‐engineering purposes, co‐culture systems consisting of outgrowth endothelial cells (OECs) and primary osteoblasts (pOBs) have been established as a promising in vitro tool to study regeneration mechanisms and to identify factors that might positively influence repair processes such as wound healing or angiogenesis. The development of autologous injectable platelet‐rich fibrin (PRF), which can be generated from peripheral blood in a minimal invasive procedure, fulfils several requirements for clinically applicable cell‐based tissue‐engineering strategies. During this study, the established co‐culture system of OECs and pOBs was mixed with injectable PRF and was cultivated in vitro for 24 h or 7 days. The aim of this study was to analyse whether PRF might have a positive effect on wound healing processes and angiogenic activation of OECs in the co‐culture with regard to proinflammatory factors, adhesion molecules and proangiogenic growth factor expression. Histological cell detection revealed the formation of lumina and microvessel‐like structures in the PRF/co‐culture complexes after 7 days of complex cultivation. Interestingly, the angiogenic activation of OECs was accompanied by an upregulation of wound healing‐associated factors, as well as by a higher expression of the proangiogenic factor vascular endothelial growth factor, which was evaluated both on the mRNA level as well as on the protein level. Thus, PRF might positively influence wound healing processes, in particular angiogenesis, in the in vitro co‐culture, making autologous PRF‐based matrices a beneficial therapeutic tool for tissue‐engineering purposes by simply profiting from the PRF, which contains blood plasma, platelets and leukocytes.
机译:在用于组织工程目的的血管形成前策略的背景下,已建立了由内皮细胞(OEC)和原代成骨细胞(pOB)组成的共培养系统,作为研究再生机制和确定可能积极影响因素的有前途的体外工具。影响修复过程,例如伤口愈合或血管生成。自体可注射的富含血小板的纤维蛋白(PRF)的开发可以通过微创手术从外周血中产生,满足了临床上可应用的基于细胞的组织工程策略的若干要求。在这项研究中,将已建立的OEC和pOB的共培养系统与可注射的PRF混合,并在体外培养24小时或7天。这项研究的目的是分析PRF是否在促炎因子,粘附分子和促血管生成生长因子表达方面对共培养中的OECs的伤口愈合过程和血管生成活化具有积极作用。组织学细胞检测显示,复合培养7天后,PRF /共培养复合物中形成了管腔和微血管样结构。有趣的是,OECs的血管生成激活伴随着伤口愈合相关因子的上调,以及促血管生成因子血管内皮生长因子的更高表达,这在mRNA水平和蛋白质水平均得到了评估。 。因此,PRF可能会对体外共培养中的伤口愈合过程(尤其是血管生成)产生积极影响,通过简单地从包含血浆,血小板的PRF中获利,使基于PRF的自体基质成为组织工程目的的有益治疗工具。和白细胞。

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