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环磷酰胺去污策略的评估

Evaluation of decontamination strategies for cyclophosphamide.

作者信息

Soubieux Annaelle, Palamini Marie, Tanguay Cynthia, Bussières Jean-François

机构信息

Unité de Recherche en Pratique Pharmaceutique, Département de pharmacie, CHU Sainte-Justine, Côte-Sainte-Catherine, Montréal, Canada.

Faculté de pharmacie, Université de Montréal, Montréal, Canada.

出版信息

J Oncol Pharm Pract. 2020 Mar;26(2):413-422. doi: 10.1177/1078155219865931. Epub 2019 Aug 1.

Abstract

PURPOSE

The main objective was to determine the efficacy of various types of cleaning equipment and products after deliberate contamination with cyclophosphamide. The secondary objective was to test various cleaning scenarios using these equipment and products.

METHODS

The study had two phases: testing of cleaning equipment (wipe : woven microfibers - Hygen®, two layers of non-woven microfibres and an inner layer of highly absorbent viscose fibres - MicronSolo®, two layers of non-woven microfibres and an inner layer of highly absorbent viscose fibres - MicroMix®, simili-tissu (low filament production) - Tork® and, mop : woven microfibers - Hygen®, microfibre and viscose - MicroOne®) and products (disinfectant : quaternary ammonium - DR100®, chlorine 0.1% - Zochlor® - Brutab® - PCS® NPH, sodium hypochlorite 2%, cleaner : detergent - Nu- Action 3®, cleaner and disinfectant: sodium hypochlorite 0.6% + detergent - Aliflex® and water) in phase 1 and testing of various cleaning procedures in phase 2. Specific areas of a room with a laminar flow hood (class II/type B2) were contaminated with 10 mcg of cyclophosphamide. Different types of surfaces were cleaned with various scenarios and the remaining cyclophosphamide was measured by the Institut national de santé publique du Québec. All tests were performed in triplicate.

RESULTS

A total of 189 samples were obtained: 42 negative controls and positive controls, 54 during phase 1 and 93 during phase 2. All products were more than 96.5% effective. The 0.1% chlorines were the most effective products. Cleaning procedures with two or three products had average cleaning efficacies of 99.94-99.99%. Efficacy increased with the number of successive cleanings. When two products were used, the average cleaning efficacy varied between 99.78% and 99.98%, depending on the surface.

CONCLUSION

All cleaning products tested reduced cyclophosphamide contamination by more than 96.58%. Cleaning efficacy increased with successive cleaning. No scenario was effective in removing 100% of traces. Additional studies with larger samples should be conducted to confirm these results.

摘要

目的

主要目标是确定故意用环磷酰胺污染后各类清洁设备和产品的功效。次要目标是使用这些设备和产品测试各种清洁方案。

方法

该研究分两个阶段:在第一阶段测试清洁设备(擦拭布:编织微纤维 - Hygen®、两层非织造微纤维和一层高吸水性粘胶纤维 - MicronSolo®、两层非织造微纤维和一层高吸水性粘胶纤维 - MicroMix®、类似织物(低纤维产量) - Tork®,以及拖把:编织微纤维 - Hygen®、微纤维和粘胶 - MicroOne®)和产品(消毒剂:季铵盐 - DR100®、0.1%氯 - Zochlor® - Brutab® - PCS® NPH、2%次氯酸钠,清洁剂:洗涤剂 - Nu - Action 3®,清洁消毒剂:0.6%次氯酸钠 + 洗涤剂 - Aliflex®和水),在第二阶段测试各种清洁程序。在带有层流罩(II级/B2型)的房间的特定区域用10微克环磷酰胺进行污染。用各种方案清洁不同类型表面,并由魁北克国家公共卫生研究所测量残留的环磷酰胺。所有测试均重复进行三次。

结果

共获得189个样本:42个阴性对照和阳性对照,第一阶段54个,第二阶段93个。所有产品的有效性均超过96.5%。0.1%氯类产品是最有效的。使用两种或三种产品的清洁程序平均清洁效果为99.94 - 99.99%。随着连续清洁次数的增加,效果增强。当使用两种产品时,平均清洁效果因表面而异,在99.78%至99.98%之间。

结论

所有测试的清洁产品将环磷酰胺污染降低了96.58%以上。清洁效果随着连续清洁而增强。没有一种方案能有效去除100%的痕迹。应进行更大样本量的进一步研究以证实这些结果。

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