Differences in injectable platelet-rich fibrin fraction of peripheral blood on the release of TGF-β1 and PDGF-AB

S. Suryono, Arifia Anindita Danastri
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Abstract

Injectable platelet-rich fibrin (i-PRF) refers to second-generation platelet concentrate. In this study, the results of i-PRF centrifugation were fractionated into three layers: yellow i-PRF, buffy coat, and red i-PRF. Injectable platelet-rich fibrin fractions used in this study were yellow i-PRF, red i-PRF, and a mix of both. This study aimed to examine the level of growth factor release of transforming growth factor beta 1 (TGF-β1) and platelet-derived growth factor (PDGF) in yellow i-PRF, red i-PRF, and a mix of yellow i-PRF and red i-PRF with the ratio of 1:1. A total of 10 ml of peripheral blood from healthy female donors was centrifuged (at 700 rpm in 3 minutes) to obtain i-PRF and fractionated into three layers. The upper yellow layer was taken as yellow i-PRF, while the bottom red layer was taken as red i-PRF and was taken together with the middle layer (buffy coat). The release of TGF-β1 and PDGF in each of i-PRF fractionation method, i.e. yellow i-PRF, red i-PRF, and a mix of yellow i-PRF and red i-PRF with a ratio of 1:1 was measured with ELISA. The measurement was observed for 24 hours, 3 days, 7 days, 10 days, and 14 days. Data analysis used the two-way ANOVA test with a significance level of 0.05 and a post hoc LSD analysis to establish group significance. The group of yellow + red i-PRF significantly released PDGF-AB (p < 0.05). TGF-β1 was the highest of all groups on day 14. All groups showed an increase in growth factor release from time to time. The fractionation method of injectable platelet-rich fibrin affected the release of growth factor of PDGF-AB and TGF-β1. The highest release of PDGF-AB and TGF-β1 was found in the yellow + red i-PRF group with a ratio of 1:1 in the 14-day group, which was significant with the other two groups (p < 0.05).
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注射外周血富血小板纤维蛋白组分对TGF-β1和PDGF-AB释放的影响
可注射富血小板纤维蛋白(i-PRF)是指第二代血小板浓缩物。在本研究中,将i-PRF离心分离的结果分为三层:黄色i-PRF、灰白色i-PRF和红色i-PRF。本研究中使用的可注射的富含血小板的纤维蛋白组分为黄色i-PRF、红色i-PRF以及两者的混合。本研究旨在检测黄色i-PRF、红色i-PRF以及黄色i-PRF与红色i-PRF按1:1比例混合后,转化生长因子β1 (TGF-β1)和血小板衍生生长因子(PDGF)的生长因子释放水平。将健康女性献血者的外周血共10 ml离心(转速700转/分,3分钟)获得i-PRF,并分成三层。取上部黄色层为黄色i-PRF,底部红色层为红色i-PRF,与中间层(灰褐色涂层)一起取。用ELISA法测定每种i-PRF分离方法(黄色i-PRF、红色i-PRF、黄色i-PRF与红色i-PRF按1:1比例混合)中TGF-β1和PDGF的释放量。测量时间分别为24小时、3天、7天、10天、14天。数据分析采用双因素方差分析,显著性水平为0.05,采用事后LSD分析确定组间显著性。黄+红i-PRF组显著释放PDGF-AB (p < 0.05)。TGF-β1在第14天以各组最高。各组生长因子释放不时增加。注射富血小板纤维蛋白的分离方法影响生长因子PDGF-AB和TGF-β1的释放。PDGF-AB和TGF-β1的释放以黄+红i-PRF组最高,在14天组中比例为1:1,与其他两组比较差异有统计学意义(p < 0.05)。
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