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哪种抗凝剂最适合全血聚集血小板功能检测?六种抗凝剂和不同储存条件的比较。

Which is the best anticoagulant for whole blood aggregometry platelet function testing? Comparison of six anticoagulants and diverse storage conditions.

机构信息

Cardiovascular Center, Ruhr University Bochum, St. Josef Hospital, Gudrunstraße 56, Bochum, Germany.

出版信息

Platelets. 2012;23(5):359-67. doi: 10.3109/09537104.2011.624211. Epub 2011 Oct 14.

DOI:10.3109/09537104.2011.624211
PMID:21999185
Abstract

Major hindrances of impedance aggregometry are caused by limited storage time and the requirement of ex vivo anticoagulation. Data on the influence of different anticoagulants and storage conditions are rare and incomplete. This study has systematically examined the influence of six different anticoagulants (sodium and lithium heparin, 20 µg/mL and 45 µg/mL r-hirudin, benzylsulfonyl-D-Arg-Pro-4-amidinobenzylamide (BAPA), and citrate) on the results of Adenosine 5'-diphosphate (ADP) and arachidonic acid (AA) induced measurements using multiple-electrode impedance aggregometer (MEA). Measurements were carried out in a time frame of 0 min up to 48 h after blood withdrawal. In addition, the influence of storage temperatures of 4°C and 37°C was evaluated. Results of ADP-induced tests significantly varied within the first 30 min in all tested anticoagulants, in citrated blood even within the first 60 min. They remained stable up to 2 h in 20 µg/mL r-hirudin and BAPA, 4 h in citrate, 8 h in 45 µg/mL r-hirudin, and lithium heparin and up to a maximum of 12 h in sodium heparin anticoagulated blood. The analysis of AA-induced tests revealed no significantly different results up to 6 h when BAPA was used, 8 h in lithium heparin, 20 µg/mL r-hirudin and citrate, 12 h in 45 µg/mL r-hirudin, and even 24 h in sodium heparin-anticoagulated samples. A storage temperature of either 4°C or 37°C in contrast to room temperature had a negative influence on the stability of results. In conclusion, sodium heparin and 45 µg/mL r-hirudin as anticoagulants guarantee the longest storage time for impedance aggregometry.

摘要

主要的阻抗聚集测量障碍是由于储存时间有限和需要体外抗凝。关于不同抗凝剂和储存条件的影响的数据很少且不完整。本研究系统地检查了六种不同抗凝剂(钠和锂肝素、20µg/mL 和 45µg/mL 重组水蛭素、苯磺酰基-D-精氨酸-脯氨酸-4-酰胺基苯甲脒(BAPA)和柠檬酸盐)对使用多电极阻抗聚集仪(MEA)进行的腺苷 5'-二磷酸(ADP)和花生四烯酸(AA)诱导测量结果的影响。测量在采血后 0 分钟至 48 小时的时间范围内进行。此外,还评估了 4°C 和 37°C 的储存温度的影响。在所有测试的抗凝剂中,ADP 诱导测试的结果在最初 30 分钟内明显不同,在柠檬酸盐血液中甚至在最初 60 分钟内也如此。在 20µg/mL 重组水蛭素和 BAPA 中,它们在 2 小时内保持稳定,在 45µg/mL 重组水蛭素和锂肝素中,在 4 小时内保持稳定,在柠檬酸中,在 8 小时内保持稳定,在钠肝素抗凝血液中最多稳定 12 小时。AA 诱导测试的分析表明,当使用 BAPA 时,在 6 小时内没有明显不同的结果,在锂肝素中为 8 小时,在 20µg/mL 重组水蛭素和柠檬酸中为 12 小时,在 45µg/mL 重组水蛭素中为 12 小时,在钠肝素抗凝样本中甚至为 24 小时。与室温相比,4°C 或 37°C 的储存温度对结果的稳定性有负面影响。总之,钠肝素和 45µg/mL 重组水蛭素作为抗凝剂,保证了阻抗聚集测量最长的储存时间。

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