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本文引用的文献

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What is the maximum time that a unit of red blood cells can be safely left out of controlled temperature storage?红细胞单位在脱离控温储存的情况下,能够安全保存的最长时间是多少?
Transfus Med Rev. 2012 Jul;26(3):209-223.e3. doi: 10.1016/j.tmrv.2011.09.005. Epub 2011 Nov 25.
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Transitory interruption of recommended storage conditions does not cause significant changes in in vitro parameters of leucocyte-depleted red blood cells.推荐储存条件的短暂中断不会导致去白细胞红细胞的体外参数发生显著变化。
Vox Sang. 2011 Apr;100(3):272-8. doi: 10.1111/j.1423-0410.2010.01407.x. Epub 2010 Sep 22.
3
Estimation of supernatant hemoglobin in red cell units with and without temperature interruptions.有温度中断和无温度中断情况下红细胞单位中上清液血红蛋白的测定。
Indian J Pathol Microbiol. 2007 Apr;50(2):437-40.
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Temperature-sensitive labels for containers of RBCs.用于红细胞容器的热敏标签。
Am J Clin Pathol. 2006 Sep;126(3):406-10. doi: 10.1309/QD8H135A6D72Y22N.
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In vitro quality control of red blood cell concentrates outdated in clinical practice.临床实践中过期红细胞浓缩液的体外质量控制。
Transfus Clin Biol. 2003 Sep;10(4):275-83. doi: 10.1016/s1246-7820(03)00032-6.
6
The administration of blood and blood components and the management of transfused patients. British Committee for Standards in Haematology, Blood Transfusion Task Force. Royal College of Nursing and the Royal College of Surgeons of England.血液及血液成分的输注与输血患者的管理。英国血液学标准委员会,输血工作组。皇家护理学院和英格兰皇家外科医学院。
Transfus Med. 1999 Sep;9(3):227-38.

一种经济高效的模式,用于在医院环境中通过使用血液成分运输的温度敏感指标来合理管理红细胞单位并挽救未输注的红细胞单位。

A cost effective model for appropriate administration of red cell units and salvaging un-transfused red cell units by using temperature sensitive indicators for blood component transportation in a hospital setting.

作者信息

Tiwari Aseem K, Sharma Pooja, Pandey Prashant K, Rawat Ganesh S, Dixit Surbhi, Raina Vimarsh, Bhargava Richa

机构信息

Department of Transfusion Medicine, Medanta-The Medicity, Gurgaon, Haryana, India.

Medanta Institute of Education and Research, Medanta-The Medicity, Gurgaon, Haryana, India.

出版信息

Asian J Transfus Sci. 2015 Jan-Jun;9(1):36-40. doi: 10.4103/0973-6247.150948.

DOI:10.4103/0973-6247.150948
PMID:25722571
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4339929/
Abstract

BACKGROUND

A rule called "30-min rule" defines that red cell unit cannot be used if it has been out of blood bank refrigerator for over 30 min. This rule is useful to guide initiation of transfusion, but is inadequate for deciding whether to reuse or discard units received-back at blood transfusion services (BTS). A simple cost-effective temperature-sensitive indicator was evaluated to decide upon reuse (cold chain was uninterrupted) or discard (where cold chain was interrupted) in a simulation exercise.

MATERIALS AND METHODS

Temperature-sensitive indicators TH-F™ that irreversibly changed color from white to red demonstrated that heat excursion has occurred and the cumulative temperature has exceeded 10°C for over 30 min, were used in outdated red cells for simulating units, which are not used and received-back. These units were also tagged with a standard temperature monitoring device, which was a re-usable credit card sized device, which would log the actual time and temperature. In few units percent hemolysis was also calculated.

RESULTS

Statistically insignificant elevation in average temperature was noted in 102 simulated units at the time of return to BTS (Δ 0.04°C), despite the fact that these units were in the transport box for over 4 h. The average supernatant hemoglobin in these units was 0.24%, much below the prescribed threshold.

CONCLUSION

Transportation of blood in controlled conditions with temperature-sensitive indicator is a cost-effective model to save blood, a precious human resource.

摘要

背景

一项名为“30分钟规则”的规定指出,如果红细胞单位离开血库冰箱超过30分钟,则不能使用。该规则有助于指导输血的开始,但不足以决定在输血服务(BTS)中回收的单位是重新使用还是丢弃。在一项模拟实验中,对一种简单且经济高效的温度敏感指示器进行了评估,以决定是重新使用(冷链未中断)还是丢弃(冷链中断)。

材料与方法

使用温度敏感指示器TH-F™,其颜色会从白色不可逆地变为红色,表明发生了温度偏移且累积温度超过10°C达30分钟以上,将其用于过期红细胞以模拟未使用和回收的单位。这些单位还标记有一个标准温度监测设备,这是一个信用卡大小的可重复使用设备,它会记录实际时间和温度。在少数单位中还计算了溶血百分比。

结果

尽管这些单位在运输箱中放置了超过4小时,但在返回BTS时,102个模拟单位的平均温度出现了统计学上无显著意义的升高(Δ0.04°C)。这些单位中的平均上清液血红蛋白为0.24%,远低于规定阈值。

结论

在可控条件下使用温度敏感指示器运输血液是一种节约血液(一种宝贵的人力资源)的经济高效模式。