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Freeze-Dried Platelet-Rich Plasma Induces Osteoblast Proliferation via Platelet-Derived Growth Factor Receptor-Mediated Signal Transduction

机译:通过血小板衍生的生长因子受体介导的信号转导凝固富含血小板富含血浆诱导成骨细胞增殖

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Study Design Controlled laboratory study. Purpose This study aimed to evaluate the in vitro pharmacological activity of growth factors (GFs) in freeze-dried platelet-rich plasma (FD-PRP) after storage for 4 weeks. Overview of Literature Freshly prepared PRP is a rich source of many GFs. We reported that FD-PRP stored for 8 weeks accelerated bone union in a rat posterolateral fusion model equally well as fresh-PRP. However, the pharmacological activity of FD-PRP after long-term storage has not been shown in vitro . Methods Immediately after preparation, as well as 4 weeks after freeze-dried storage, the platelet count was measured. Human osteoblasts were treated with fresh-PRP and FD-PRP, respectively. Western blotting was used to assess the phosphorylation of the platelet-derived growth factor (PDGF) receptor (PDGFR) and its downstream target, extracellular signal-regulated kinase (ERK). The proliferation rates of osteoblasts were investigated by immunocytochemistry and MTT cell viability assays. Furthermore, we used western blotting to evaluate the effect of PDGFR knockdown on the phosphorylation of ERK stimulated with fresh-PRP and FD-PRP. Results Platelet counts in both the fresh-PRP and FD-PRP samples were approximately 10-fold higher than in peripheral blood samples. The phosphorylation and activation of the PDGFR and ERK were evenly induced by fresh-PRP and FD-PRP stimulation. Both freshPRP and FD-PRP significantly induced osteoblast proliferation in MTT cell viability assays. Furthermore, osteoblast PDGFR knockdown attenuated the downstream ERK activation by fresh PRP and FD-PRP. Conclusions We demonstrated the pharmacological activity of PDGF in FD-PRP in vitro after 4 weeks of storage.
机译:研究设计受控实验室研究。目的本研究旨在在储存4周后评估冻干血小板富含血浆(FD-PRP)的生长因子(GFS)的体外药理活性。文学概述新建的PRP是许多GFS的丰富来源。我们认为FD-PRP储存8周的8周加速骨内联合在大鼠后侧融合模型中的骨内联合,同样如新鲜PRP。然而,在长期储存后FD-PRP的药理活性尚未在体外显示。方法在制备后立即进行制备,以及冷冻干燥储存后4周,测量血小板计数。人对骨细胞分别用新鲜PRP和FD-PRP处理。用于评估血小板衍生的生长因子(PDGF)受体(PDGFR)及其下游靶,细胞外信号调节激酶(ERK)的磷酸化。通过免疫细胞化学和MTT细胞活力测定研究了成骨细胞的增殖速率。此外,我们使用Western Blotting来评估PDGFR敲低对用新鲜PRP和FD-PRP刺激ERK磷酸化的影响。结果新鲜PRP和FD-PRP样品中的血小板计数比外周血样品高约10倍。通过新鲜PRP和FD-PRP刺激均匀诱导PDGFR和ERK的磷酸化和活化。 FreshPRP和FD-PRP均显着诱导MTT细胞活力测定中的成骨细胞增殖。此外,Osteoblast PDGFR敲低衰减新鲜PRP和FD-PRP的下游ERK活化。结论我们在储存4周后,我们证明了在FD-PRP中PDGF的药理活性。

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