环氧乙烷灭菌的参数化过程控制:数据驱动释放。

Q4 Medicine
Biomedical Instrumentation and Technology Pub Date : 2025-01-01 Epub Date: 2025-04-18 DOI:10.2345/0899-8205-59.1.99
Brian McEvoy, Terri Guaschi Cooke, Ana Maksimovic, Daniel Howell
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引用次数: 0

摘要

在环氧乙烷(EO)灭菌工艺中,产品可以根据生物指示剂的生长反应进行释放,也可以采用依赖于工艺参数监测和控制的参数释放(PR)工艺。根据ISO 11135:2014,这两种方法都必须与过程数据结合使用。过程参数可分为控制、监视或两者兼而有之。控制参数可以直接改变,从而改变监控变量的读数,而监控变量本身不能直接控制。目前,ISO 11135:2014不允许基于EO浓度和湿度(通过压力增量计算)的控制参数进行PR。灭菌剂浓度和相对湿度(RH)只能使用气体分析仪探头(或类似探头)进行测量,尽管使用此类探头存在数据差异和范围、校准、冗余以及对偏差的灵敏度增加的挑战。本文试图通过实验确定统计过程控制的能力,以检测过程中的变化,作为超出规格结果的早期预警系统,并演示为PR目的使用更可靠的过程数据。来自100个常规循环的过程数据用于趋势室RH,温度和EO浓度的达到水平(由气体分析仪探针或类似设备测量)。并将工艺推导数据与气体分析仪探头提供的数据进行了比较。发现了常规运行的过程趋势可以预测工艺故障,并确定了通过压力增量计算EO/水浓度是气体分析仪探针测量的可行替代方法。此外,减少了关键参数的可变性,可以减少灭菌剂的使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parametric Process Control for Ethylene Oxide Sterilization: Data-Driven Release.

In ethylene oxide (EO) sterilization processing, products can be released based on the growth responses of biological indicators or by using a parametric release (PR) process that relies on the monitoring and control of process parameters. Both methods must be used in combination with process data, in accordance with ISO 11135:2014. Process parameters can be classified as control, monitor, or both. Control parameters can be altered directly to change the readings of monitoring variables, which can't be directly controlled themselves. Currently, ISO 11135:2014 does not allow PR based on control parameters for EO concentration and humidity (calculated via pressure increment). Sterilant concentration and relative humidity (RH) can only be measured using gas analyzer probes (or similar), despite the challenges of data variance and range, calibration, redundancy, and increased sensitivity to deviations involved with use of such probes. The current article sought to experimentally determine the capacity of statistical process control to detect changes in the process, to act as an early-warning system for an out-of-specification result, and to demonstrate the use of more reliable process data for the purpose of PR. Process data from 100 routine cycles were used to trend the achieved levels of chamber RH, temperature, and EO concentration (measured by gas analyzer probes or similar), and process derived data were compared with data provided by gas analyzer probes. Process trending of routine runs was found to predict process failures, and calculating EO/water concentration via pressure increment was determined to be a viable alternative to measurement by gas analyzer probe. Further, reduced variability in key parameters enables a reduction in sterilant use.

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来源期刊
Biomedical Instrumentation and Technology
Biomedical Instrumentation and Technology Computer Science-Computer Networks and Communications
CiteScore
1.10
自引率
0.00%
发文量
16
期刊介绍: AAMI publishes Biomedical Instrumentation & Technology (BI&T) a bi-monthly peer-reviewed journal dedicated to the developers, managers, and users of medical instrumentation and technology.
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