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首页> 外文期刊>Vox Sanguinis: International Journal of Blood Transfusion and Immunohaematology >The contribution of platelets in the production of cryoprecipitates for use in a fibrin glue.
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The contribution of platelets in the production of cryoprecipitates for use in a fibrin glue.

机译:血小板在用于纤维蛋白胶的冷沉淀生产中的作用。

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摘要

Background and Objectives Cryoprecipitate has a wide application for use as a fibrin glue. In some situations, platelets are added to the preparation in order to enhance the fibrin glue. Materials and Methods Fresh plasma was collected by apheresis from the same donor to produce 250 ml of platelet-rich plasma (PRP) or platelet-poor plasma (PPP) (n = 12 each). Cryoprecipitate was then produced following the standards of the American Association of Blood Banks and resuspended to a total volume of 8 ml, from which aliquots were removed and assayed. Clot formation was measured using the thromboelastogram. Results The protein content of the two preparations was identical for PRP and PPP. Results for fibrinogen (PPP 475 +/- 220 mg; PRP 399 +/- 215 mg), Factor VIII (PPP 186 +/- 67 IU; PRP 175 +/- 70 IU) and von Willebrand Factor (PPP 260 +/- 104 IU; PRP 221 +/- 88 IU) were not significantly different. The concentration of platelet-derived growth factor was markedly higher (a 100-fold increase at 3778 +/- 1036ng) when platelets were added to the plasma. There was a small, but not statistically significant, difference in the rate of clot formation (R = 2.3 for PPP and 3.8 for PRP) and clot strength (MA = 63.4 for PPP and 56.6 for PRP) between PPP and PRP cryoprecipitates when measured using the thromboelastogram. Conclusions Platelets do not significantly increase the concentration of the usual constituents of cryoprecipitate; however, the levels of platelet-derived growth factor are markedly enhanced. Therefore, there are advantages for using PRP to enhance the growth of new tissue.
机译:背景和目的冷冻沉淀法作为纤维蛋白胶具有广泛的用途。在某些情况下,将血小板加入制剂中以增强纤维蛋白胶。材料和方法通过单采采血从同一供体中收集新鲜血浆,以产生250 ml富血小板血浆(PRP)或贫血小板血浆(PPP)(每个n = 12)。然后,按照美国血库协会的标准生产冷冻沉淀物,并将其重新悬浮至总体积为8 ml,从其中取出等分试样并进行分析。使用血栓弹力图测量凝块形成。结果两种制剂的蛋白质含量在PRP和PPP上是相同的。纤维蛋白原(PPP 475 +/- 220 mg; PRP 399 +/- 215 mg),VIII因子(PPP 186 +/- 67 IU; PRP 175 +/- 70 IU)和von Willebrand因子(PPP 260 +/-)的结果104 IU; PRP 221 +/- 88 IU)没有显着差异。当将血小板添加到血浆中时,血小板衍生的生长因子的浓度明显更高(在3778 +/- 1036ng处增加了100倍)。使用以下方法测量时,PPP和PRP低温沉淀物之间的凝块形成速率(PPP为R = 2.3,PRP为3.8,凝块形成速率(R = 2.3,PRP为3.8,MA = 63.4,PRP为56.6),存在很小但无统计学意义的差异。血栓弹力图。结论血小板不会显着增加冷沉淀中常见成分的浓度。然而,血小板衍生的生长因子水平显着提高。因此,使用PRP增强新组织的生长具有优势。

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