Watts S E, Tunbridge L J, Smith K, Lloyd J V
Thromb Res. 1986 Nov 1;44(3):365-76. doi: 10.1016/0049-3848(86)90011-3.
We have studied the effect of temperature on platelets during storage for tests of platelet function. Aliquots of PRP were stored at constant pH at 37 degrees C, room temperature and 4 degrees C. At intervals up to five hours, samples were taken for estimation of platelet shape, plasma levels of beta-thromboglobulin and 14C-serotonin, and assessment of platelet aggregation in response to a range of concentrations of ADP and collagen. When PRP was stored at 37 degrees C there was a gradual decrease in the aggregation response during the period of storage. At room temperature the decrease was slower but the response to ADP often increased dramatically before decreasing; at this temperature there was pronounced liberation of beta TG while there was none at 37 degrees C. Platelets stored at 37 degrees C were smooth and elliptical when examined by electron microscopy, but those stored at room temperature showed partial loss of discoid shape and formation of some pseudopodia. Storage at 4 degrees C was associated with total loss of discoid shape and formation of many large pseudopodia. Light transmission studies also showed loss of discoid shape at room temperature and 4 degrees C. We conclude that storage at 4 degrees C or at room temperature causes platelet activation. To avoid this PRP should be stored at 37 degrees C prior to tests of platelet function.
我们研究了在血小板功能测试的储存过程中温度对血小板的影响。将富血小板血浆(PRP)的等分试样在恒定pH值下分别储存于37℃、室温及4℃。在长达5小时的时间段内,定期采集样本,以评估血小板形态、β-血小板球蛋白和14C-血清素的血浆水平,并评估血小板对一系列浓度的二磷酸腺苷(ADP)和胶原蛋白的聚集反应。当PRP在37℃储存时,在储存期间聚集反应逐渐降低。在室温下,降低速度较慢,但对ADP的反应常在降低之前显著增加;在此温度下,β-血小板球蛋白(βTG)有明显释放,而在37℃时则没有。通过电子显微镜检查发现,在37℃储存的血小板光滑且呈椭圆形,但在室温下储存的血小板则显示出盘状形态部分丧失并形成一些伪足。在4℃储存与盘状形态完全丧失及形成许多大伪足有关。透光研究也显示在室温及4℃下血小板盘状形态丧失。我们得出结论,在4℃或室温下储存会导致血小板活化。为避免这种情况,在进行血小板功能测试之前,PRP应在37℃下储存。