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Basic characteristics of plasma rich in growth factors (PRGF): blood cell components and biological effects

机译:血浆富含生长因子(PRGF)的基本特征:血细胞成分和生物学效应

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摘要

Platelet‐rich plasma (PRP) is widely used in regenerative medicine because of its high concentrations of various growth factors and platelets. However, the distribution of blood cell components has not been investigated in either PRP or other PRP derivatives. In this study, we focused on plasma rich in growth factors (PRGF), a PRP derivative, and analyzed the distributions of platelets and white blood cells (WBCs). Peripheral blood samples were collected from healthy volunteers (N = 14) and centrifuged to prepare PRGF and PRP. Blood cells were counted using an automated hematology analyzer. The effects of PRP and PRGF preparations on cell proliferation were determined using human periosteal cells. In the PRGF preparations, both red blood cells and WBCs were almost completely eliminated, and platelets were concentrated by 2.84‐fold, whereas in the PRP preparations, both platelets and WBCs were similarly concentrated by 8.79‐ and 5.51‐fold, respectively. Platelet counts in the PRGF preparations were positively correlated with platelet counts in the whole blood samples, while the platelet concentration rate was negatively correlated with red blood cell counts in the whole blood samples. In contrast, platelet counts and concentration rates in the PRP preparations were significantly influenced by WBC counts in whole blood samples. The PRP preparations, but not the PRGF preparations, significantly suppressed cell growth at higher doses in vitro. Therefore, these results suggest that PRGF preparations can clearly be distinguished from PRP preparations by both inclusion of WBCs and dose‐dependent stimulation of periosteal cell proliferation in vitro.
机译:富含血小板的血浆(PRP)由于其各种生长因子和血小板的高浓度而被广泛用于再生医学。但是,尚未在PRP或其他PRP衍生物中研究血细胞成分的分布。在这项研究中,我们集中于血浆富含PGF衍生物的生长因子(PRGF),并分析了血小板和白细胞(WBC)的分布。收集健康志愿者的外周血样本(N = 14)并离心以制备PRGF和PRP。使用自动血液分析仪对血细胞进行计数。使用人骨膜细胞确定了PRP和PRGF制剂对细胞增殖的影响。在PRGF制剂中,红细胞和WBC几乎都被清除,血小板浓缩了2.84倍,而在PRP制剂中,血小板和WBCs分别浓缩了8.79和5.51倍。 PRGF制剂中的血小板计数与全血样品中的血小板计数呈正相关,而血小板浓缩率与全血样品中的红细胞计数呈负相关。相反,PRP制剂中的血小板计数和浓缩率受全血样品中WBC计数的显着影响。在高剂量下,PRP制剂而非PRGF制剂在体外剂量下可显着抑制细胞生长。因此,这些结果表明PRGF制剂与WRP制剂可以明显区别于PRP制剂,包括在体外白细胞和剂量依赖性刺激骨膜细胞增殖。

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