Institute of Clinical Experimental Research, Semmelweis University, Budapest 1094, Hungary.
Department of Laboratory Medicine, Semmelweis University, Budapest 1089, Hungary.
Int J Mol Sci. 2019 Feb 8;20(3):721. doi: 10.3390/ijms20030721.
Autologous blood derived products, such as platelet-rich plasma (PRP) and platelet-rich fibrin (PRF) are widely applied in regenerative therapies, in contrast to the drawbacks in their application, mainly deriving from the preparation methods used. Eliminating the disadvantages of both PRP and PRF, hyperacute serum (HAS) opens a new path in autologous serum therapy showing similar or even improved regenerative potential at the same time. Despite the frequent experimental and clinical use of PRP and HAS, their protein composition has not been examined thoroughly yet. Thus, we investigated and compared the composition of HAS, serum, PRP and plasma products using citrate and EDTA by simple laboratory tests, and we compared the composition of HAS, serum, EDTA PRP and plasma by Proteome Profiler and ELISA assays. According to our results the natural ionic balance was upset in both EDTA and citrate PRP as well as in plasma. EDTA PRP contained significantly higher level of growth factors and cytokines, especially platelet derived angiogenic and inflammatory proteins, that can be explained by the significantly higher number of platelets in EDTA PRP. The composition analysis of blood derivatives revealed that although the preparation method of PRP and HAS were similar, the ionic and protein composition of HAS could be advantageous for cell function.
自体血液衍生产品,如富含血小板的血浆(PRP)和富含血小板纤维蛋白(PRF),广泛应用于再生疗法中,但它们的应用存在一些缺点,主要源于所使用的制备方法。超急性血清(HAS)消除了 PRP 和 PRF 的缺点,为自体血清治疗开辟了新途径,同时具有相似甚至更好的再生潜力。尽管 PRP 和 HAS 经常被用于实验和临床,但它们的蛋白质组成尚未被充分研究。因此,我们使用柠檬酸和 EDTA 通过简单的实验室检测,比较了 HAS、血清、PRP 和血浆产品的组成,并用 Proteome Profiler 和 ELISA 检测比较了 HAS、血清、EDTA-PRP 和血浆的组成。根据我们的结果,EDTA 和柠檬酸 PRP 以及血浆中的天然离子平衡都被打破了。EDTA-PRP 中生长因子和细胞因子的含量明显较高,尤其是血小板衍生的血管生成和炎症蛋白,这可以用 EDTA-PRP 中血小板数量明显增加来解释。血液衍生物的成分分析表明,尽管 PRP 和 HAS 的制备方法相似,但 HAS 的离子和蛋白质组成可能有利于细胞功能。