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金属蛋白酶抑制剂可改善体外老化或受损小鼠血小板的恢复及止血功能。

Metalloproteinase inhibitors improve the recovery and hemostatic function of in vitro-aged or -injured mouse platelets.

作者信息

Bergmeier Wolfgang, Burger Peter C, Piffath Crystal L, Hoffmeister Karin M, Hartwig John H, Nieswandt Bernhard, Wagner Denisa D

机构信息

The CBR Institute for Biomedical Research, Inc., 800 Huntington Ave, Boston, MA 02115, USA.

出版信息

Blood. 2003 Dec 1;102(12):4229-35. doi: 10.1182/blood-2003-04-1305. Epub 2003 Aug 7.

Abstract

Platelet transfusions are a crucial component of support for patients with severe thrombocytopenia. Storage of platelet concentrates, however, is associated with a reduction in platelet posttransfusion recovery and hemostatic function. In this study, we established a model of mitochondrial injury that resembles platelet storage lesion. Mitochondrial injury, provoked by incubation of platelets with carbonyl cyanide m-chlorophenylhydrazone (CCCP), led to reduced posttransfusion recovery in mice, an effect that directly correlated with the duration of treatment. Damaged platelets were characterized by shape change, disruption of membrane asymmetry, surface expression of P-selectin, and profound proteolysis of GPIbalpha. Using our model, we identified a key role for endogenous metalloproteinase(s) in platelet clearance, as their inhibition markedly improved posttransfusion recovery of both the mitochondria-injured and in vitro-aged mouse platelets. Metalloproteinase inhibition also prevented proteolysis of GPIbalpha on damaged platelets, thereby improving the hemostatic function of these cells in vivo. We propose that inhibition of metalloproteinase activity during storage could significantly improve the effectiveness of platelet transfusions. Surface expression of GPIbalpha might be a powerful marker to determine the quality of platelet concentrates, because it reflects metalloproteinase activity in vitro.

摘要

血小板输注是重度血小板减少症患者支持治疗的关键组成部分。然而,血小板浓缩物的储存与血小板输注后回收率及止血功能的降低有关。在本研究中,我们建立了一种类似于血小板储存损伤的线粒体损伤模型。用羰基氰化物间氯苯腙(CCCP)孵育血小板引发的线粒体损伤,导致小鼠输注后回收率降低,这种效应与治疗持续时间直接相关。受损血小板的特征为形态改变、膜不对称性破坏、P-选择素的表面表达以及糖蛋白Ibα的深度蛋白水解。利用我们的模型,我们确定了内源性金属蛋白酶在血小板清除中的关键作用,因为抑制它们可显著提高线粒体损伤和体外老化小鼠血小板的输注后回收率。金属蛋白酶抑制还可防止受损血小板上糖蛋白Ibα的蛋白水解,从而改善这些细胞在体内的止血功能。我们提出,储存期间抑制金属蛋白酶活性可显著提高血小板输注的有效性。糖蛋白Ibα的表面表达可能是确定血小板浓缩物质量的有力标志物,因为它反映了体外的金属蛋白酶活性。

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