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Evaluation of histological and pH changes in platelet-rich fibrin and platelet-rich fibrin matrix: A In vitro study

机译:富含血小板纤维蛋白和富含血小板纤维蛋白基质的组织学和pH变化的评价:体外研究

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Background: The autologous platelet concentrates (PCs), such as platelet-rich fibrin (PRF) and platelet-rich fibrin matrix (PRFM), are processed through different centrifugation protocols, which can affect their biological properties and in turn influence treatment outcome. The pH value can influence the process of wound healing directly or indirectly. Hence, a study was conducted to evaluate fibrin network pattern, initial pH of obtained matrix, and its changes during degradation matrix and to determine platelet and leukocyte count in PRF and PRFM. Materials and Methods: Blood from the volunteers was collected in blood vacutainers for processing PRF and PRFM. It was centrifuged as per the standard protocol. Serum from PRF and PRFM was subjected for analysis of platelet and leucocyte concentration using Hemo-Analyzer. The pH of PRF and PRFM were evaluated over 5 days using a pH meter. PRF and PRFM were subjected to histological and scanning electron microscopic analysis. Results: There was no significant variation in the platelet and leukocyte count between PRF and PRFM. A steady rise in the level of pH with respect to PRFM was observed, whereas there was a decrease in the pH levels in PRF. Fibrin network was denser in PRF compared to PRFM. Conclusion: The PCs undergo variation in pH upon degradation. Formation of fibrin matrix is influenced by the method of preparation. Fibrin pattern is crucial to facilitate adhesion of cells and transport of nutrients to enable proliferation and differentiation of mesenchymal cells and better wound healing.
机译:背景技术通过不同的离心方案加工自体血小板浓缩物(PCS),例如富含血小板的纤维蛋白(PRF)和富含血小板的纤维蛋白基质(PRFM),其可以影响其生物学性质并反过来影响治疗结果。 pH值可以直接或间接地影响伤口愈合的过程。因此,进行研究以评估纤维蛋白网络模式,获得基质的初始pH,其在降解基质期间的变化,并确定PRF和PRFM中的血小板和白细胞计数。材料和方法:来自志愿者的血液被收集在血液空腔中,用于加工PRF和PRFM。它根据标准协议离心。 PRF和PRFM的血清使用血管分析仪进行血小板和白细胞浓度的分析。使用pH米在5天内评估PRF和PRFM的pH。对PRF和PRFM进行组织学和扫描电子显微镜分析。结果:PRF和PRFM之间的血小板和白细胞计数没有显着变化。观察到pH的pH水平稳步上升,而PRF的pH水平降低。与PRFM相比,PRF的纤维蛋白网络是密集的。结论:PCS在降解后经历p​​H的变化。纤维蛋白基质的形成受制备方法的影响。纤维蛋白图案对于促进细胞和营养转运的粘附至关重要,以使间充质细胞和更好的伤口愈合能够增殖和分化。

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