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通过使细胞分选系统适应生物安全柜来提高细胞分选的生物安全性。

Improving the biosafety of cell sorting by adaptation of a cell sorting system to a biosafety cabinet.

作者信息

Lennartz Klaus, Lu Mengji, Flasshove Michael, Moritz Thomas, Kirstein Uwe

机构信息

Institute of Cell Biology (Cancer Research), West German Cancer Center Essen, University of Duisburg-Essen, Medical School, Essen, Germany.

出版信息

Cytometry A. 2005 Aug;66(2):119-27. doi: 10.1002/cyto.a.20157.

Abstract

BACKGROUND

The jet-in-air cell sorters currently available are not very suitable for sorting potentially biohazardous material under optimal conditions because they do not protect operators and samples as recommended in the guidelines for safe biotechnology. To solve this problem we have adapted a cell sorting system to a special biosafety cabinet that satisfies the requirements for class II cabinets. With aid of this unit, sorting can be performed in conformance with the recommendations for biosafety level 2.

METHODS

After integrating a modified fluorescence-activated cell sorter (FACS) Vantage into a special biosafety cabinet, we investigated the influence of the laminar air flow (LAF) inside the cabinet on side stream stability and the analytical precision of the cell sorter. In addition to the routine electronic counting of microparticles, we carried out tests on the containment of aerosols, using T4 bacteriophage as indicators, to demonstrate the efficiency of the biosafety cabinet for sorting experiments performed under biosafety level 2 conditions.

RESULTS

The experiments showed that LAF, which is necessary to build up sterile conditions in a biosafety cabinet, does not influence the conditions for side stream stability or the analytical precision of the FACS Vantage cell sorting system. In addition, tests performed to assess aerosol containment during operation of the special biosafety cabinet demonstrated that the cabinet-integrated FACS Vantage unit (CIF) satisfies the conditions for class II cabinets. In the context of gene transfer experiments, the CIF facility was used to sort hematopoietic progenitor cells under biosafety level 2 conditions.

CONCLUSIONS

The newly designed biosafety cabinet offers a practical modality for improving biosafety for operators and samples during cell sorting procedures. It can thus also be used for sorting experiments with genetically modified organisms in conformance with current biosafety regulations and guidelines.

摘要

背景

目前可用的空气喷射细胞分选仪不太适合在最佳条件下分选潜在的生物危害物质,因为它们无法按照安全生物技术指南的建议保护操作人员和样本。为了解决这个问题,我们对一个细胞分选系统进行了改造,使其适用于一个满足二级生物安全柜要求的特殊生物安全柜。借助该装置,可以按照生物安全2级的建议进行分选。

方法

将改良的荧光激活细胞分选仪(FACS)Vantage集成到一个特殊的生物安全柜中后,我们研究了柜内层流空气(LAF)对旁流稳定性和细胞分选仪分析精度的影响。除了对微粒进行常规电子计数外,我们还以T4噬菌体为指标进行了气溶胶 containment 测试,以证明该生物安全柜在生物安全2级条件下进行分选实验的效率。

结果

实验表明,在生物安全柜中建立无菌条件所必需的LAF不会影响旁流稳定性条件或FACS Vantage细胞分选系统的分析精度。此外,在特殊生物安全柜运行期间进行的评估气溶胶 containment 的测试表明,集成在柜内的FACS Vantage装置(CIF)满足二级生物安全柜的条件。在基因转移实验中,CIF设施用于在生物安全等级2的条件下分选造血祖细胞。

结论

新设计的生物安全柜为在细胞分选过程中提高操作人员和样本的生物安全性提供了一种实用的方式。因此,它也可用于按照现行生物安全法规和指南对转基因生物进行分选实验。

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