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首页> 外文期刊>Transplantation Proceedings >Risk analysis of hematopoietic stem cell transplant process: failure mode, effect, and criticality analysis and hazard analysis critical control point methods integration based on guidelines to good manufacturing practice for medicinal product ANNEX 20 (February 2008).
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Risk analysis of hematopoietic stem cell transplant process: failure mode, effect, and criticality analysis and hazard analysis critical control point methods integration based on guidelines to good manufacturing practice for medicinal product ANNEX 20 (February 2008).

机译:造血干细胞移植过程的风险分析:失效模式,作用,关键性分析和危害性分析关键控制点方法的集成基于药品ANAX 20的良好生产规范指南(2008年2月)。

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摘要

The collection and handling of hematopoietic stem cells (HSCs) must meet high quality requirements. An integrated Quality Risk Management can help to identify and contain potential risks related to HSC production. Risk analysis techniques allow one to "weigh" identified hazards, considering the seriousness of their effects, frequency, and detectability, seeking to prevent the most harmful hazards. The Hazard Analysis Critical Point, recognized as the most appropriate technique to identify risks associated with physical, chemical, and biological hazards for cellular products, consists of classifying finished product specifications and limits of acceptability, identifying all off-specifications, defining activities that can cause them, and finally establishing both a monitoring system for each Critical Control Point and corrective actions for deviations. The severity of possible effects on patients, as well as the occurrence and detectability of critical parameters, are measured on quantitative scales (Risk Priority Number [RPN]). Risk analysis was performed with this technique on manipulation process of HPC performed at our blood center. The data analysis showed that hazards with higher values of RPN with greater impact on the process are loss of dose and tracking; technical skills of operators and manual transcription of data were the most critical parameters. Problems related to operator skills are handled by defining targeted training programs, while other critical parameters can be mitigated with the use of continuous control systems. The blood center management software was completed by a labeling system with forms designed to be in compliance with standards in force and by starting implementation of a cryopreservation management module.
机译:造血干细胞(HSC)的收集和处理必须满足高质量要求。集成的质量风险管理可以帮助识别和控制与HSC生产相关的潜在风险。风险分析技术允许人们“权衡”已识别的危害,同时考虑其影响的严重性,频率和可检测性,以寻求预防最有害的危害。危害分析关键点被认为是识别与细胞产品的物理,化学和生物危害相关的风险的最合适技术,包括对成品规格和可接受性极限进行分类,识别所有不合格品,定义可能引起危害的活动。他们,最后建立每个关键控制点的监控系统和偏差的纠正措施。对患者可能产生的影响的严重性以及关键参数的发生和可检测性在定量尺度上进行衡量(风险优先级数字[RPN])。使用这种技术对在我们血液中心进行的HPC操纵过程进行了风险分析。数据分析表明,RPN值越高,对过程的影响越大的危害是剂量损失和跟踪。操作员的技术技能和数据的手动转录是最关键的参数。通过定义有针对性的培训计划可以解决与操作员技能有关的问题,而其他关键参数可以通过使用连续控制系统来缓解。血液中心管理软件是通过标签系统完成的,该标签系统具有设计为符合现行标准的表格并开始实施冷冻保存管理模块。

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