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用于中和肝素的重组血小板因子4。

Recombinant platelet factor 4 for heparin neutralization.

作者信息

Mixon Timothy A, Dehmer Gregory J

机构信息

Department of Medicine, Scott and White Memorial Hospital and Clinic, Temple, Texas, USA.

出版信息

Semin Thromb Hemost. 2004 Jun;30(3):369-77. doi: 10.1055/s-2004-831050.

Abstract

Protamine sulfate has been used for many years to reverse the effects of unfractionated heparin, but it can cause hemodynamic changes and other serious side effects. Platelet factor 4 (PF4) is a naturally occurring protein synthesized in megakaryocytes and eventually stored in the alpha granules of platelets for later release. Although the complete physiologic role of PF4 is unknown, it is highly effective for the neutralization of heparin anticoagulation. Several preliminary animal studies and trials using blood obtained from cardiopulmonary bypass circuits suggested recombinant PF4 (rPF4) would be an effective alternative to protamine. In the first open-label, phase 1 human study, patients received rPF4 in doses of 0.5, 1.0, 2.5, or 5.0 mg/kg over 3 minutes to reverse heparin anticoagulation after diagnostic cardiac catheterization. There were no important hemodynamic changes and the rPF4 was highly effective in neutralizing heparin. Serial measurements of rPF4 levels showed a monophasic elimination pattern with a serum half-life of 25.5 +/- 13.5 minutes that was independent of dose administered. A randomized and blinded trial comparing rPF4 to protamine confirmed the safety and effectiveness of rPF4. Although rPF4 was initially being evaluated as a clinical alternative to protamine, it is not currently being developed for general clinical use.

摘要

硫酸鱼精蛋白多年来一直用于逆转普通肝素的作用,但它可引起血流动力学改变及其他严重副作用。血小板因子4(PF4)是一种在巨核细胞中合成并最终储存于血小板α颗粒中以供日后释放的天然蛋白质。尽管PF4的完整生理作用尚不清楚,但它在中和肝素抗凝作用方面非常有效。几项初步的动物研究以及使用体外循环回路采集的血液进行的试验表明,重组PF4(rPF4)将是鱼精蛋白的有效替代物。在第一项开放标签的1期人体研究中,患者在诊断性心导管检查后,于3分钟内接受了0.5、1.0、2.5或5.0mg/kg剂量的rPF4以逆转肝素抗凝作用。未出现重要的血流动力学改变,且rPF4在中和肝素方面非常有效。对rPF4水平的系列测量显示为单相消除模式,血清半衰期为25.5±13.5分钟,且与给药剂量无关。一项比较rPF4与鱼精蛋白的随机双盲试验证实了rPF4的安全性和有效性。尽管rPF4最初被评估为鱼精蛋白的临床替代物,但目前尚未开发用于一般临床应用。

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